Skip to main content
Erschienen in: Brain Structure and Function 1/2014

01.01.2014 | Review

A systematic review of brain frontal lobe parcellation techniques in magnetic resonance imaging

Erschienen in: Brain Structure and Function | Ausgabe 1/2014

Einloggen, um Zugang zu erhalten

Abstract

Manual volumetric measurement of the brain’s frontal lobe and its subregions from magnetic resonance images (MRIs) is an established method for researching neural correlates of clinical disorders or cognitive functions. However, there is no consensus between methods used to identify relevant boundaries of a given region of interest (ROI) on MRIs, and those used may bear little relation to each other or the underlying structural, functional and connective architecture. This presents challenges for the analysis and synthesis of such results. We therefore performed a systematic literature review to highlight variations in the anatomical boundaries used to measure frontal regions, contextualised by up-to-date evidence from histology, hodology and neuropsychology. We searched EMBASE and MEDLINE for studies in English reporting three-dimensional boundaries for manually delineating the brain’s frontal lobe or sub-regional ROIs from MRIs. Exclusion criteria were: exclusive use of co-ordinate grid systems; insufficient detail to allow method replication; publication in grey literature only. Papers were assessed on quality criteria relating to bias, reproducibility and protocol rationale. There was a large degree of variability in the three-dimensional boundaries of all regions used by the 208 eligible papers. Half of the reports did not justify their rationale for boundary selection, and each paper met on average only three quarters of quality criteria. For the frontal lobe and each subregion (frontal pole, anterior cingulate, dorsolateral, inferior-lateral, and orbitofrontal) we identified reproducible methods for a biologically plausible target ROI. It is hoped that this synthesis will guide the design of future volumetric studies of cerebral structure.
Anhänge
Nur mit Berechtigung zugänglich
Fußnoten
1
The data compiled over the course of this review (and the available supplementary material) may provide the basis for further reviews explicitly dealing with the effects of boundary variability on reported results and inconsistencies on a syndrome-specific basis.
 
2
These studies too are examinations across a small number of brains and so may not have fully captured population-wide variability.
 
3
In addition to the difficulty in identifying the lateral boundary between the IFG and OFC, and the posterior and polar boundaries discussed above.
 
Literatur
Zurück zum Zitat Amunts K, Schleicher A, Burgel U, Mohlberg H, Uylings HBM, Zilles K (1999) Broca’s region revisited: cytoarchitecture and intersubject variability. J Comp Neurol 412:319–341PubMed Amunts K, Schleicher A, Burgel U, Mohlberg H, Uylings HBM, Zilles K (1999) Broca’s region revisited: cytoarchitecture and intersubject variability. J Comp Neurol 412:319–341PubMed
Zurück zum Zitat Aron AR, Robbins TW, Poldrack RA (2004) Inhibition and the right inferior frontal cortex. Trends in Cogn Sci 8(4):170–177 Aron AR, Robbins TW, Poldrack RA (2004) Inhibition and the right inferior frontal cortex. Trends in Cogn Sci 8(4):170–177
Zurück zum Zitat Asami T, Hayano F, Nakamura M, Yamasue H, Uehara K, Otsuka T, Roppongi T, Nihashi N, Inoue T, Hirayasu Y (2008) Anterior cingulate cortex volume reduction in patients with panic disorder. Psychiatry Clin Neurosci 62(3):322–330PubMed Asami T, Hayano F, Nakamura M, Yamasue H, Uehara K, Otsuka T, Roppongi T, Nihashi N, Inoue T, Hirayasu Y (2008) Anterior cingulate cortex volume reduction in patients with panic disorder. Psychiatry Clin Neurosci 62(3):322–330PubMed
Zurück zum Zitat Baaré WF, Hulshoff PHE, Hijman R, Mali WP, Viergever MA, Kahn RS (1999) Volumetric analysis of frontal lobe regions in schizophrenia: relation to cognitive function and symptomatology. Biol Psychiatry 45(12):1597–1605PubMed Baaré WF, Hulshoff PHE, Hijman R, Mali WP, Viergever MA, Kahn RS (1999) Volumetric analysis of frontal lobe regions in schizophrenia: relation to cognitive function and symptomatology. Biol Psychiatry 45(12):1597–1605PubMed
Zurück zum Zitat Bäckman L, Robins-Wahlin TB, Lundin A, Ginovart N, Farde L (1997) Cognitive deficits in Huntington’s disease are predicted by dopaminergic PET markers and brain volumes. Brain 120(12):2207–2217PubMed Bäckman L, Robins-Wahlin TB, Lundin A, Ginovart N, Farde L (1997) Cognitive deficits in Huntington’s disease are predicted by dopaminergic PET markers and brain volumes. Brain 120(12):2207–2217PubMed
Zurück zum Zitat Ballmaier M, Toga A, Blanton R, Sowell ER, Lavretsky H, Peterson BS, Pham D, Kumar A (2004) Anterior cingulate, gyrus rectus, and orbitofrontal abnormalities in elderly depressed patients: an MRI-based parcellation of the prefrontal cortex. Am J Psychiatry 161:99–108PubMed Ballmaier M, Toga A, Blanton R, Sowell ER, Lavretsky H, Peterson BS, Pham D, Kumar A (2004) Anterior cingulate, gyrus rectus, and orbitofrontal abnormalities in elderly depressed patients: an MRI-based parcellation of the prefrontal cortex. Am J Psychiatry 161:99–108PubMed
Zurück zum Zitat Bartzokis G, Mintz J, Marx P, Osborn D, Gutkind D, Chiang F, Phelan CK, Marder SR (1993) Reliability of in vivo volume measures of hippocampus and other brain structures using MRI. Magn Reson Imaging 11:993–1006PubMed Bartzokis G, Mintz J, Marx P, Osborn D, Gutkind D, Chiang F, Phelan CK, Marder SR (1993) Reliability of in vivo volume measures of hippocampus and other brain structures using MRI. Magn Reson Imaging 11:993–1006PubMed
Zurück zum Zitat Beck E (1949) A cytoarchitectural investigation into the boundaries of cortical areas 13 and 14 in the human brain. J Anat 83:147–157 Beck E (1949) A cytoarchitectural investigation into the boundaries of cortical areas 13 and 14 in the human brain. J Anat 83:147–157
Zurück zum Zitat Beckmann M, Johansen-Berg H, Rushworth MFS (2009) Connectivity-based parcellation of human cingulate cortex and its relation to functional specialization. J Neurosci 29(4):1175–1190PubMed Beckmann M, Johansen-Berg H, Rushworth MFS (2009) Connectivity-based parcellation of human cingulate cortex and its relation to functional specialization. J Neurosci 29(4):1175–1190PubMed
Zurück zum Zitat Benoit RG, Gilbert SJ, Volle E, Burgess PW (2010) When I think about me and simulate you: medial rostral prefrontal cortex and self-referential processes. NeuroImage 50(3):1340–1349PubMed Benoit RG, Gilbert SJ, Volle E, Burgess PW (2010) When I think about me and simulate you: medial rostral prefrontal cortex and self-referential processes. NeuroImage 50(3):1340–1349PubMed
Zurück zum Zitat Berryhill P, Lilly MA, Levin HS, Hillman GR, Mendelsohn D, Brunder DG, Fletcher JM, Kufera J, Kent TA, Yeakley J, Bruce D, Eisenberg HM (1995) Frontal lobe changes after severe diffuse closed head injury in children: a volumetric study of magnetic resonance imaging. Neurosurg 37(3):392–400 Berryhill P, Lilly MA, Levin HS, Hillman GR, Mendelsohn D, Brunder DG, Fletcher JM, Kufera J, Kent TA, Yeakley J, Bruce D, Eisenberg HM (1995) Frontal lobe changes after severe diffuse closed head injury in children: a volumetric study of magnetic resonance imaging. Neurosurg 37(3):392–400
Zurück zum Zitat Beyer JL, Kuchibhatla M, Payne ME, Macfall J, Cassidy F, Krishnan KRR (2009) Gray and white matter brain volumes in older adults with bipolar disorder. Int J Geriatr Psychiatry 24:1445–1452PubMed Beyer JL, Kuchibhatla M, Payne ME, Macfall J, Cassidy F, Krishnan KRR (2009) Gray and white matter brain volumes in older adults with bipolar disorder. Int J Geriatr Psychiatry 24:1445–1452PubMed
Zurück zum Zitat Bjork JM, Momenan R, Hommer DW (2009) Delay discounting correlates with proportional lateral frontal cortex volumes. Biol Psychiatry 65(8):710–713PubMed Bjork JM, Momenan R, Hommer DW (2009) Delay discounting correlates with proportional lateral frontal cortex volumes. Biol Psychiatry 65(8):710–713PubMed
Zurück zum Zitat Blatter DD, Bigler ED, Gale SD, Johnson SC, Anderson C, Burnett BM, Parker N, Kurth S, Horn S (1995) Quantitative volumetric analysis of brain MRI: normative database spanning five decades of life. Am J Neuroradiol 16:241–245PubMed Blatter DD, Bigler ED, Gale SD, Johnson SC, Anderson C, Burnett BM, Parker N, Kurth S, Horn S (1995) Quantitative volumetric analysis of brain MRI: normative database spanning five decades of life. Am J Neuroradiol 16:241–245PubMed
Zurück zum Zitat Blumberg HP, Stern E, Ricketts S, Martinez D, de Asis J, White T, Epstein J, Isenberg N, McBride PA, Kemperman I, Emmerich S, Dhawan V, Eidelberg D, Kocsis J, Silbersweig D (1999) Rostral and orbital prefrontal dysfunction in the manic state of bipolar disorder. Am J Psychiatry 156:1986–1988PubMed Blumberg HP, Stern E, Ricketts S, Martinez D, de Asis J, White T, Epstein J, Isenberg N, McBride PA, Kemperman I, Emmerich S, Dhawan V, Eidelberg D, Kocsis J, Silbersweig D (1999) Rostral and orbital prefrontal dysfunction in the manic state of bipolar disorder. Am J Psychiatry 156:1986–1988PubMed
Zurück zum Zitat Bohland JW, Bokil H, Allen CB, Mitra PP (2009) The brain atlas concordance problem: quantitative comparison of anatomical parcellations. PLoS ONE 4(9):e7200PubMedCentralPubMed Bohland JW, Bokil H, Allen CB, Mitra PP (2009) The brain atlas concordance problem: quantitative comparison of anatomical parcellations. PLoS ONE 4(9):e7200PubMedCentralPubMed
Zurück zum Zitat Bookheimer S (2002) Functional MRI of language: new approaches to understanding the cortical organization of semantic processing. Ann Rev Neurosci 25:151–188PubMed Bookheimer S (2002) Functional MRI of language: new approaches to understanding the cortical organization of semantic processing. Ann Rev Neurosci 25:151–188PubMed
Zurück zum Zitat Botteron KN, Raichle ME, Drevets WC, Heath AC, Todd RD (2002) Volumetric reduction in left subgenual prefrontal cortex in early onset depression. Biol Psychiatry 51(4):342–344PubMed Botteron KN, Raichle ME, Drevets WC, Heath AC, Todd RD (2002) Volumetric reduction in left subgenual prefrontal cortex in early onset depression. Biol Psychiatry 51(4):342–344PubMed
Zurück zum Zitat Brambilla P, Nicoletti MA, Harenski K, Sassi RB, Mallinger AG, Frank E, Kupfer DJ, Keshavan MS, Soares JC (2002) Anatomical MRI study of subgenual prefrontal cortex in bipolar and unipolar subjects. Neuropsychopharmacology 27(5):792–799PubMed Brambilla P, Nicoletti MA, Harenski K, Sassi RB, Mallinger AG, Frank E, Kupfer DJ, Keshavan MS, Soares JC (2002) Anatomical MRI study of subgenual prefrontal cortex in bipolar and unipolar subjects. Neuropsychopharmacology 27(5):792–799PubMed
Zurück zum Zitat Bremner JD, Bronen RA, Erasquin GD, Vermetten E, Staib LH, Ng CK, Soufer R, Charney DS, Innis RB (1998) Development and reliability of a method for using magnetic resonance imaging for the definition of regions of interest for positron emission tomography. Clin Positron Imaging 1(3):145–159PubMed Bremner JD, Bronen RA, Erasquin GD, Vermetten E, Staib LH, Ng CK, Soufer R, Charney DS, Innis RB (1998) Development and reliability of a method for using magnetic resonance imaging for the definition of regions of interest for positron emission tomography. Clin Positron Imaging 1(3):145–159PubMed
Zurück zum Zitat Bremner JD, Narayan M, Anderson ER, Staib LH, Miller HL, Charney DS (2000) Hippocampal volume reduction in major depression. Am J Psychiatry 157:115–117PubMed Bremner JD, Narayan M, Anderson ER, Staib LH, Miller HL, Charney DS (2000) Hippocampal volume reduction in major depression. Am J Psychiatry 157:115–117PubMed
Zurück zum Zitat Bremner JD, Vythilingam M, Vermetten E, Nazeer A, Adil J, Khan S, Staib LH, Charney DS (2002) Reduced volume of orbitofrontal cortex in major depression. Biol Psychiatry 51(4):273–279PubMed Bremner JD, Vythilingam M, Vermetten E, Nazeer A, Adil J, Khan S, Staib LH, Charney DS (2002) Reduced volume of orbitofrontal cortex in major depression. Biol Psychiatry 51(4):273–279PubMed
Zurück zum Zitat Brodmann K (1909) Vergleichende Lokalisationslehre der Großhirnrinde in ihren Prinzipien dargestellt auf Grund des Zellenbaues. Barth, Leipzig. (English translation available in Garey LJ (1994) Brodmann’s localization in the cerebral cortex. Smith Gordon, London) Brodmann K (1909) Vergleichende Lokalisationslehre der Großhirnrinde in ihren Prinzipien dargestellt auf Grund des Zellenbaues. Barth, Leipzig. (English translation available in Garey LJ (1994) Brodmann’s localization in the cerebral cortex. Smith Gordon, London)
Zurück zum Zitat Burgess PW, Simons JS, Dumontheil I, Gilbert SJ (2006) The gateway hypothesis of rostral prefrontal cortex (area 10) function. In: Duncan J, Phillips LH, McLeod P (eds) Measuring the mind: speed, control and age, vol 3. Oxford University Press, Oxford, pp 217–248 Burgess PW, Simons JS, Dumontheil I, Gilbert SJ (2006) The gateway hypothesis of rostral prefrontal cortex (area 10) function. In: Duncan J, Phillips LH, McLeod P (eds) Measuring the mind: speed, control and age, vol 3. Oxford University Press, Oxford, pp 217–248
Zurück zum Zitat Bush G, Luu P, Posner M (2000) Cognitive and emotional influences in anterior cingulate cortex. Trends Cogn Sci 4(6):215–222PubMed Bush G, Luu P, Posner M (2000) Cognitive and emotional influences in anterior cingulate cortex. Trends Cogn Sci 4(6):215–222PubMed
Zurück zum Zitat Cabeza R, Nyberg L (2000) Imaging cognition II: an empirical review of 275 PET and fMRI studies. J Cogn Neurosci 12(1):1–47PubMed Cabeza R, Nyberg L (2000) Imaging cognition II: an empirical review of 275 PET and fMRI studies. J Cogn Neurosci 12(1):1–47PubMed
Zurück zum Zitat Campbell AW (1905) Histological studies on the localisation of cerebral function. Cambridge University Press, Cambridge Campbell AW (1905) Histological studies on the localisation of cerebral function. Cambridge University Press, Cambridge
Zurück zum Zitat Carper RA, Courchesne E (2005) Localized enlargement of the frontal cortex in early autism. Biol Psychiatry 57(2):126–133PubMed Carper RA, Courchesne E (2005) Localized enlargement of the frontal cortex in early autism. Biol Psychiatry 57(2):126–133PubMed
Zurück zum Zitat Caviness VS, Meyer J, Makris N, Kennedy DN (1996) MRI-based topographic parcellation of human neocortex: an anatomically specified method with estimate of reliability. J Cogn Neurosci 8(6):566–587PubMed Caviness VS, Meyer J, Makris N, Kennedy DN (1996) MRI-based topographic parcellation of human neocortex: an anatomically specified method with estimate of reliability. J Cogn Neurosci 8(6):566–587PubMed
Zurück zum Zitat Chi JG, Dooling EC, Gilles FH (1977) Gyral development of the human brain. Ann Neurol 11:86–93 Chi JG, Dooling EC, Gilles FH (1977) Gyral development of the human brain. Ann Neurol 11:86–93
Zurück zum Zitat Chiavaras MM, Petrides M (2000) Orbitofrontal sulci of the human and macaque monkey brain. J Comp Neurol 422(1):35–54PubMed Chiavaras MM, Petrides M (2000) Orbitofrontal sulci of the human and macaque monkey brain. J Comp Neurol 422(1):35–54PubMed
Zurück zum Zitat Chiavaras MM, LeGoualher G, Evans A, Petrides M (2001) Three-dimensional probabilistic atlas of the human orbitofrontal sulci in standardized stereotaxic space. NeuroImage 13(3):479–496PubMed Chiavaras MM, LeGoualher G, Evans A, Petrides M (2001) Three-dimensional probabilistic atlas of the human orbitofrontal sulci in standardized stereotaxic space. NeuroImage 13(3):479–496PubMed
Zurück zum Zitat Coffey CE, Weiner RD, Djang W, Figiel G, Soady S, Patterson L, Holt PD, Spritzer CE, Wilkinson WE (1991) Brain anatomic effects of electroconvulsive therapy. Arch Gen Psychiatry 48:1013–1021PubMed Coffey CE, Weiner RD, Djang W, Figiel G, Soady S, Patterson L, Holt PD, Spritzer CE, Wilkinson WE (1991) Brain anatomic effects of electroconvulsive therapy. Arch Gen Psychiatry 48:1013–1021PubMed
Zurück zum Zitat Coffey CE, Lucke JF, Saxton JA, Ratcliff G, Unitas LJ, Billig B, Bryan RN (1998) Sex differences in brain aging: a quantitative magnetic resonance imaging study. Arch Neurol 55(2):169–179PubMed Coffey CE, Lucke JF, Saxton JA, Ratcliff G, Unitas LJ, Billig B, Bryan RN (1998) Sex differences in brain aging: a quantitative magnetic resonance imaging study. Arch Neurol 55(2):169–179PubMed
Zurück zum Zitat Convit A, Wolf OT, de Leon MJ, Patalinjug M, Kandil E, Caraos C, Scherer A, Saint Louis LA, Cancro R (2001) Volumetric analysis of the pre-frontal regions: findings in aging and schizophrenia. Psychiatry Res Neuroimaging 107(2):61–73 Convit A, Wolf OT, de Leon MJ, Patalinjug M, Kandil E, Caraos C, Scherer A, Saint Louis LA, Cancro R (2001) Volumetric analysis of the pre-frontal regions: findings in aging and schizophrenia. Psychiatry Res Neuroimaging 107(2):61–73
Zurück zum Zitat Coryell W, Nopoulos P, Drevets W, Wilson T, Andreasen NC (2005) Subgenual prefrontal cortex volumes in major depressive disorder and schizophrenia: diagnostic specificity and prognostic implications. Am J Psychiatry 162(9):1706–1712PubMed Coryell W, Nopoulos P, Drevets W, Wilson T, Andreasen NC (2005) Subgenual prefrontal cortex volumes in major depressive disorder and schizophrenia: diagnostic specificity and prognostic implications. Am J Psychiatry 162(9):1706–1712PubMed
Zurück zum Zitat Costafreda SG, Fu CHY, Lee L, Everitt B, Brammer MJ, David AS (2006) A systematic review and quantitative appraisal of fMRI studies of verbal fluency: role of the left inferior frontal gyrus. Hum Brain Mapp 27(10):799–810PubMed Costafreda SG, Fu CHY, Lee L, Everitt B, Brammer MJ, David AS (2006) A systematic review and quantitative appraisal of fMRI studies of verbal fluency: role of the left inferior frontal gyrus. Hum Brain Mapp 27(10):799–810PubMed
Zurück zum Zitat Cotter D, Hudson L, Landau S (2005) Evidence for orbitofrontal pathology in bipolar disorder and major depression, but not in schizophrenia. Bipolar Disord 7:358–369PubMed Cotter D, Hudson L, Landau S (2005) Evidence for orbitofrontal pathology in bipolar disorder and major depression, but not in schizophrenia. Bipolar Disord 7:358–369PubMed
Zurück zum Zitat Cowell PE, Turetsky BI, Gur RC, Grossman RI, Shtasel DL, Gur RE (1994) Sex differences in aging of the human frontal and temporal lobes. J Neurosci 14(8):4748–4755PubMed Cowell PE, Turetsky BI, Gur RC, Grossman RI, Shtasel DL, Gur RE (1994) Sex differences in aging of the human frontal and temporal lobes. J Neurosci 14(8):4748–4755PubMed
Zurück zum Zitat Crespo-Facorro B, Kim JJ, Andreasen NC, O’Leary DS, Wiser AK, Bailey JM, Harris G, Magnotta VA (1999) Human frontal cortex: an MRI-based parcellation method. NeuroImage 10(5):500–519PubMed Crespo-Facorro B, Kim JJ, Andreasen NC, O’Leary DS, Wiser AK, Bailey JM, Harris G, Magnotta VA (1999) Human frontal cortex: an MRI-based parcellation method. NeuroImage 10(5):500–519PubMed
Zurück zum Zitat Croxson PL, Johansen-Berg H, Behrens TEJ, Robson MD, Pinsk MA, Gross CG, Richter W, Kastner S, Rushworth MFS (2005) Quantitative investigation of connections of the prefrontal cortex in the human and macaque using probabilistic diffusion tractography. J Neurosci 25(39):8854–8866PubMed Croxson PL, Johansen-Berg H, Behrens TEJ, Robson MD, Pinsk MA, Gross CG, Richter W, Kastner S, Rushworth MFS (2005) Quantitative investigation of connections of the prefrontal cortex in the human and macaque using probabilistic diffusion tractography. J Neurosci 25(39):8854–8866PubMed
Zurück zum Zitat Deary IJ, Penke L, Johnson W (2010) The neuroscience of human intelligence differences. Nat Rev Neurosci 11(3):201–211PubMed Deary IJ, Penke L, Johnson W (2010) The neuroscience of human intelligence differences. Nat Rev Neurosci 11(3):201–211PubMed
Zurück zum Zitat Desikan RS, Ségonne F, Fischl B, Quinn BT, Dickerson BC, Blacker D, Buckner RL, Dale AM, Maguire RP, Hyman BT, Albert MS, Killiany RJ (2006) An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest. NeuroImage 31(3):968–980PubMed Desikan RS, Ségonne F, Fischl B, Quinn BT, Dickerson BC, Blacker D, Buckner RL, Dale AM, Maguire RP, Hyman BT, Albert MS, Killiany RJ (2006) An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest. NeuroImage 31(3):968–980PubMed
Zurück zum Zitat Devinsky O, Morrell MJ, Vogt BA (1995) Contributions of anterior cingulate cortex to behaviour. Brain 118:279–306PubMed Devinsky O, Morrell MJ, Vogt BA (1995) Contributions of anterior cingulate cortex to behaviour. Brain 118:279–306PubMed
Zurück zum Zitat Devlin JT, Poldrack RA (2007) In praise of tedious anatomy. NeuroImage 37(4):1033–1041 (discussion 1050–1058) Devlin JT, Poldrack RA (2007) In praise of tedious anatomy. NeuroImage 37(4):1033–1041 (discussion 1050–1058)
Zurück zum Zitat Drevets WC, Price J, Simpson J, Todd R (1997) Subgenual prefrontal cortex abnormalities in mood disorders. Nature 386:824–827PubMed Drevets WC, Price J, Simpson J, Todd R (1997) Subgenual prefrontal cortex abnormalities in mood disorders. Nature 386:824–827PubMed
Zurück zum Zitat Dumontheil I, Burgess PW, Blakemore S-J (2008) Development of rostral prefrontal cortex and cognitive and behavioural disorders. Dev Med Child Neurol 50(3):168–181PubMedCentralPubMed Dumontheil I, Burgess PW, Blakemore S-J (2008) Development of rostral prefrontal cortex and cognitive and behavioural disorders. Dev Med Child Neurol 50(3):168–181PubMedCentralPubMed
Zurück zum Zitat Dumontheil I, Gilbert SJ, Frith CD, Burgess PW (2010) Recruitment of lateral rostral prefrontal cortex in spontaneous and task-related thoughts. Q J Exp Psychol 63(9):1740–1756 Dumontheil I, Gilbert SJ, Frith CD, Burgess PW (2010) Recruitment of lateral rostral prefrontal cortex in spontaneous and task-related thoughts. Q J Exp Psychol 63(9):1740–1756
Zurück zum Zitat Duvernoy HM (1999) The human brain: surface, blood supply, and three-dimensional sectional anatomy, 2nd edn. Springer, Wien Duvernoy HM (1999) The human brain: surface, blood supply, and three-dimensional sectional anatomy, 2nd edn. Springer, Wien
Zurück zum Zitat Filipek PA, Semrud-Clikeman M, Steingard RJ, Renshaw PF, Kennedy DN, Biederman J (1997) Volumetric MRI analysis comparing subjects having attention-deficit hyperactivity disorder with normal controls. Neurology 48(3):589–601PubMed Filipek PA, Semrud-Clikeman M, Steingard RJ, Renshaw PF, Kennedy DN, Biederman J (1997) Volumetric MRI analysis comparing subjects having attention-deficit hyperactivity disorder with normal controls. Neurology 48(3):589–601PubMed
Zurück zum Zitat Fischl B, Rajendran N, Busa E, Augustinack J, Hinds O, Yeo BTT, Mohlberg H, Amunts K, Zilles K (2008) Cortical folding patterns and predicting cytoarchitecture. Cereb Cortex 18(8):1973–1980PubMed Fischl B, Rajendran N, Busa E, Augustinack J, Hinds O, Yeo BTT, Mohlberg H, Amunts K, Zilles K (2008) Cortical folding patterns and predicting cytoarchitecture. Cereb Cortex 18(8):1973–1980PubMed
Zurück zum Zitat Flashman LA, McAllister TW, Johnson SC, Rick JH, Green RL, Saykin AJ (2001) Specific frontal lobe subregions correlated with unawareness of illness in schizophrenia: a preliminary study. J Neuropsychiatry Clin Neurosci 13(2):255–257 Flashman LA, McAllister TW, Johnson SC, Rick JH, Green RL, Saykin AJ (2001) Specific frontal lobe subregions correlated with unawareness of illness in schizophrenia: a preliminary study. J Neuropsychiatry Clin Neurosci 13(2):255–257
Zurück zum Zitat Fornito A, Yucel M, Wood S, Stuart GW, Buchanan J-A, Proffitt T, Anderson V, Velakoulis D, Pantelis C (2004) Individual differences in anterior cingulate/paracingulate morphology are related to executive functions in healthy males. Cereb Cortex 14(4):424–431PubMed Fornito A, Yucel M, Wood S, Stuart GW, Buchanan J-A, Proffitt T, Anderson V, Velakoulis D, Pantelis C (2004) Individual differences in anterior cingulate/paracingulate morphology are related to executive functions in healthy males. Cereb Cortex 14(4):424–431PubMed
Zurück zum Zitat Fornito A, Whittle S, Wood SJ, Velakoulis D, Pantelis C, Yücel M (2006) The influence of sulcal variability on morphometry of the human anterior cingulate and paracingulate cortex. NeuroImage 33(3):843–854PubMed Fornito A, Whittle S, Wood SJ, Velakoulis D, Pantelis C, Yücel M (2006) The influence of sulcal variability on morphometry of the human anterior cingulate and paracingulate cortex. NeuroImage 33(3):843–854PubMed
Zurück zum Zitat Foundas AL, Weisberg A, Browning CA, Weinberger DR (2001) Morphology of the frontal operculum: a volumetric magnetic resonance imaging study of the pars triangularis. J Neuroimaging 11:153–159PubMed Foundas AL, Weisberg A, Browning CA, Weinberger DR (2001) Morphology of the frontal operculum: a volumetric magnetic resonance imaging study of the pars triangularis. J Neuroimaging 11:153–159PubMed
Zurück zum Zitat Frost MA, Goebel R (2012) Measuring structural-functional correspondence: spatial variability of specialised brain regions after macro-anatomical alignment. NeuroImage 59(2):1369–1381PubMed Frost MA, Goebel R (2012) Measuring structural-functional correspondence: spatial variability of specialised brain regions after macro-anatomical alignment. NeuroImage 59(2):1369–1381PubMed
Zurück zum Zitat Gansler DA, McLaughlin NCR, Iguchi L, Jerram M, Moore DW, Bhadelia R, Fulwiler C (2009) A multivariate approach to aggression and the orbital frontal cortex in psychiatric patients. Psychiatry Res 171(3):145–154PubMed Gansler DA, McLaughlin NCR, Iguchi L, Jerram M, Moore DW, Bhadelia R, Fulwiler C (2009) A multivariate approach to aggression and the orbital frontal cortex in psychiatric patients. Psychiatry Res 171(3):145–154PubMed
Zurück zum Zitat Geyer S, Weiss M, Reimann K, Lohmann G, Turner R (2011) Microstructural parcellation of the human cerebral cortex—from Brodmann’s post-mortem map to in vivo mapping with high-field magnetic resonance imaging. Front Hum Neurosci 5:1–7 Geyer S, Weiss M, Reimann K, Lohmann G, Turner R (2011) Microstructural parcellation of the human cerebral cortex—from Brodmann’s post-mortem map to in vivo mapping with high-field magnetic resonance imaging. Front Hum Neurosci 5:1–7
Zurück zum Zitat Gilbert AR (2001) Thalamic volumes in patients with first-episode schizophrenia. Am J Psychiatry 158(4):618–624PubMed Gilbert AR (2001) Thalamic volumes in patients with first-episode schizophrenia. Am J Psychiatry 158(4):618–624PubMed
Zurück zum Zitat Gilbert SJ, Spengler S, Simons JS, Steele JD, Lawrie SM, Frith CD, Burgess PW (2006) Functional specialization within rostral prefrontal cortex (area 10): a meta-analysis. J Cogn Neurosci 18(6):932–948PubMed Gilbert SJ, Spengler S, Simons JS, Steele JD, Lawrie SM, Frith CD, Burgess PW (2006) Functional specialization within rostral prefrontal cortex (area 10): a meta-analysis. J Cogn Neurosci 18(6):932–948PubMed
Zurück zum Zitat Ginovart N, Lundin A, Farde L, Halldin C, Backman L, Swahn CG, Pauli S, Sedvall G (1997) PET study of the pre- and post-synaptic dopaminergic markers for the neurodegenerative process in Huntington’s disease. Brain 120:503–514PubMed Ginovart N, Lundin A, Farde L, Halldin C, Backman L, Swahn CG, Pauli S, Sedvall G (1997) PET study of the pre- and post-synaptic dopaminergic markers for the neurodegenerative process in Huntington’s disease. Brain 120:503–514PubMed
Zurück zum Zitat Gläscher J, Rudrauf D, Colom R, Paul LK, Tranel D, Damasio H, Adolphs R (2010) Distributed neural system for general intelligence revealed by lesion mapping. Proc Natl Acad Sci USA 107(10):4705–4709PubMed Gläscher J, Rudrauf D, Colom R, Paul LK, Tranel D, Damasio H, Adolphs R (2010) Distributed neural system for general intelligence revealed by lesion mapping. Proc Natl Acad Sci USA 107(10):4705–4709PubMed
Zurück zum Zitat Glasser MF, Van Essen DC (2011) Mapping human cortical areas in vivo based on myelin content as revealed by T1- and T2-weighted MRI. J Neurosci 31(32):11597–11616PubMedCentralPubMed Glasser MF, Van Essen DC (2011) Mapping human cortical areas in vivo based on myelin content as revealed by T1- and T2-weighted MRI. J Neurosci 31(32):11597–11616PubMedCentralPubMed
Zurück zum Zitat Gold SM, Dziobek I, Rogers K, Bayoumy A, McHugh PF, Convit A (2005) Hypertension and hypothalamo-pituitary-adrenal axis hyperactivity affect frontal lobe integrity. J Clin Endocrinol Metab 90(6):3262–3267PubMed Gold SM, Dziobek I, Rogers K, Bayoumy A, McHugh PF, Convit A (2005) Hypertension and hypothalamo-pituitary-adrenal axis hyperactivity affect frontal lobe integrity. J Clin Endocrinol Metab 90(6):3262–3267PubMed
Zurück zum Zitat Goulas A, Uylings HBM, Stiers P (2012) Unravelling the intrinsic functional organization of the human lateral frontal cortex: a parcellation scheme based on resting state fMRI. J Neurosci 32(30):10238–10252PubMed Goulas A, Uylings HBM, Stiers P (2012) Unravelling the intrinsic functional organization of the human lateral frontal cortex: a parcellation scheme based on resting state fMRI. J Neurosci 32(30):10238–10252PubMed
Zurück zum Zitat Gronenschild HBM, Burgmans S, Smeets F, Vuurman EFPM, Uylings HBM, Jolles J (2010) A time-saving and facilitating approach for segmentation of anatomically defined cortical regions: MRI volumetry. Psychiatry Res Neuroimaging 181:211–218 Gronenschild HBM, Burgmans S, Smeets F, Vuurman EFPM, Uylings HBM, Jolles J (2010) A time-saving and facilitating approach for segmentation of anatomically defined cortical regions: MRI volumetry. Psychiatry Res Neuroimaging 181:211–218
Zurück zum Zitat Gur RE, Cowell PE, Latshaw A, Turetsky BI, Grossman RI, Arnold SE, Bilker WB, Gur RC (2000) Reduced dorsal and orbital prefrontal gray matter volumes in schizophrenia. Arch Gen Psychiatry 57(8):761–768PubMed Gur RE, Cowell PE, Latshaw A, Turetsky BI, Grossman RI, Arnold SE, Bilker WB, Gur RC (2000) Reduced dorsal and orbital prefrontal gray matter volumes in schizophrenia. Arch Gen Psychiatry 57(8):761–768PubMed
Zurück zum Zitat Harris GJ, Barta PE, Peng LW, Lee S, Brettschneider PD, Shah A, Henderer JD, Schlaepfer TE, Pearlson GD (1994) MR gray and white matter segmentation using manual thresholding: dependence on image brightness. Am J Neuroradiol 15(225–230):1994 Harris GJ, Barta PE, Peng LW, Lee S, Brettschneider PD, Shah A, Henderer JD, Schlaepfer TE, Pearlson GD (1994) MR gray and white matter segmentation using manual thresholding: dependence on image brightness. Am J Neuroradiol 15(225–230):1994
Zurück zum Zitat Hastings RS, Parsey RV, Oquendo MA, Arango V, Mann JJ (2004) Volumetric analysis of the prefrontal cortex, amygdala, and hippocampus in major depression. Neuropsychopharmacology 29(5):952–959PubMed Hastings RS, Parsey RV, Oquendo MA, Arango V, Mann JJ (2004) Volumetric analysis of the prefrontal cortex, amygdala, and hippocampus in major depression. Neuropsychopharmacology 29(5):952–959PubMed
Zurück zum Zitat Haznedar MM, Buchsbaum MS, Metzer M, Solimando A, Spiegel-Cohen J, Hollander E (1997) Anterior cingulate gyrus volume and glucose metabolism in autistic disorder. Am J Psychiatry 154:1047–1050PubMed Haznedar MM, Buchsbaum MS, Metzer M, Solimando A, Spiegel-Cohen J, Hollander E (1997) Anterior cingulate gyrus volume and glucose metabolism in autistic disorder. Am J Psychiatry 154:1047–1050PubMed
Zurück zum Zitat Head D, Raz N, Gunning-Dixon F, Williamson A, Acker JD (2002) Age-related differences in the course of cognitive skill acquisition: the role of regional cortical shrinkage and cognitive resources. Psychol Aging 17(1):72–84PubMed Head D, Raz N, Gunning-Dixon F, Williamson A, Acker JD (2002) Age-related differences in the course of cognitive skill acquisition: the role of regional cortical shrinkage and cognitive resources. Psychol Aging 17(1):72–84PubMed
Zurück zum Zitat Hill DE, Yeo RA, Campbell RA, Hart B, Vigil J, Brooks W (2003) Magnetic resonance imaging correlates of attention-deficit/hyperactivity disorder in children. Neuropsychology 17(3):496–506PubMed Hill DE, Yeo RA, Campbell RA, Hart B, Vigil J, Brooks W (2003) Magnetic resonance imaging correlates of attention-deficit/hyperactivity disorder in children. Neuropsychology 17(3):496–506PubMed
Zurück zum Zitat Hirayasu Y, Shenton ME, Salisbury DF, Kwon JS, Wible CG, Fischer IA, Yurgelun-Todd D, Zarate C, Kikinis R, Jolesz FA, McCarley RW (1999) Subgenual cingulate cortex volume in first-episode psychosis. Am J Psychiatry 156:1091–1093PubMedCentralPubMed Hirayasu Y, Shenton ME, Salisbury DF, Kwon JS, Wible CG, Fischer IA, Yurgelun-Todd D, Zarate C, Kikinis R, Jolesz FA, McCarley RW (1999) Subgenual cingulate cortex volume in first-episode psychosis. Am J Psychiatry 156:1091–1093PubMedCentralPubMed
Zurück zum Zitat Hof PR, Mufson EJ, Morrison JH (1995) Human orbitofrontal cortex: cytoarchitecture and quantitative immunohistochemical parcellation. J Comp Neurol 359(1):48–68PubMed Hof PR, Mufson EJ, Morrison JH (1995) Human orbitofrontal cortex: cytoarchitecture and quantitative immunohistochemical parcellation. J Comp Neurol 359(1):48–68PubMed
Zurück zum Zitat Iordanova B, Rosenbaum D, Norman D, Weiner M, Studholme C (2006) MR imaging anatomy in neurodegeneration: a robust volumetric parcellations method of frontal lobe gyri with quantitative validation in patients with dementia. Am J Neuroradiol 27:1747–1754PubMedCentralPubMed Iordanova B, Rosenbaum D, Norman D, Weiner M, Studholme C (2006) MR imaging anatomy in neurodegeneration: a robust volumetric parcellations method of frontal lobe gyri with quantitative validation in patients with dementia. Am J Neuroradiol 27:1747–1754PubMedCentralPubMed
Zurück zum Zitat Jernigan TL, Archibald SL, Berhow MT, Sowell ER, Foster DS, Hesselink JR (1991) Cerebral structure on MRI, part1: localization of age-related changes. Biol Psychiatry 29:55–67PubMed Jernigan TL, Archibald SL, Berhow MT, Sowell ER, Foster DS, Hesselink JR (1991) Cerebral structure on MRI, part1: localization of age-related changes. Biol Psychiatry 29:55–67PubMed
Zurück zum Zitat Johansen-Berg H, Gutman DA, Behrens TEJ, Matthews PM, Rushworth MFS, Katz E, Lozano AM, Mayberg HS (2008) Anatomical connectivity of the subgenual cingulate regions targeted with deep brain stimulation for treatment-resistant depression. Cereb Cortex 18:1374–1383 Johansen-Berg H, Gutman DA, Behrens TEJ, Matthews PM, Rushworth MFS, Katz E, Lozano AM, Mayberg HS (2008) Anatomical connectivity of the subgenual cingulate regions targeted with deep brain stimulation for treatment-resistant depression. Cereb Cortex 18:1374–1383
Zurück zum Zitat John JP, Wang L, Moffitt AJ, Singh HK, Gado MH, Csernansky JG (2006) Inter-rater reliability of manual segmentation of the superior, inferior and middle frontal gyri. Psychiatry Res 148(2–3):151–163PubMed John JP, Wang L, Moffitt AJ, Singh HK, Gado MH, Csernansky JG (2006) Inter-rater reliability of manual segmentation of the superior, inferior and middle frontal gyri. Psychiatry Res 148(2–3):151–163PubMed
Zurück zum Zitat John JP, Yashavantha BS, Gado M, Veena R, Jain S, Ravishankar, Csernansky JG (2007) A proposal for MRI-based parcellations of the frontal pole. Brain Struct Funct 212:245–253 John JP, Yashavantha BS, Gado M, Veena R, Jain S, Ravishankar, Csernansky JG (2007) A proposal for MRI-based parcellations of the frontal pole. Brain Struct Funct 212:245–253
Zurück zum Zitat Jones BF, Barnes J, Uylings HBM, Fox NC, Frost C, Witter MP, Scheltens P (2006) Differential regional atrophy of the cingulate gyrus in Alzheimer disease: a volumetric MRI study. Cereb Cortex 16(12):1701–1708PubMed Jones BF, Barnes J, Uylings HBM, Fox NC, Frost C, Witter MP, Scheltens P (2006) Differential regional atrophy of the cingulate gyrus in Alzheimer disease: a volumetric MRI study. Cereb Cortex 16(12):1701–1708PubMed
Zurück zum Zitat Jung RE, Haier RJ (2007) The parieto-frontal integration theory (P-FIT) of intelligence: converging neuroimaging evidence. Behav Brain Sci 30(2):135–154PubMed Jung RE, Haier RJ (2007) The parieto-frontal integration theory (P-FIT) of intelligence: converging neuroimaging evidence. Behav Brain Sci 30(2):135–154PubMed
Zurück zum Zitat Kahnt T, Chang LJ, Park SQ, Heinzle J, Haynes J-D (2012) Connectivity-based parcellation of the human orbitofrontal cortex. J Neurosci 32(18):6240–6250PubMed Kahnt T, Chang LJ, Park SQ, Heinzle J, Haynes J-D (2012) Connectivity-based parcellation of the human orbitofrontal cortex. J Neurosci 32(18):6240–6250PubMed
Zurück zum Zitat Kates WR, Frederikse M, Mostofsky SH, Folley BS, Cooper K, Mazur-Hopkins P, Kofman O, Singer HS, Denckla MB, Pearlson GD, Kaufmann WE (2002) MRI parcellation of the frontal lobe in boys with attention deficit hyperactivity disorder or Tourette syndrome. Psychiatry Res Neuroimaging 116(1–2):63–81 Kates WR, Frederikse M, Mostofsky SH, Folley BS, Cooper K, Mazur-Hopkins P, Kofman O, Singer HS, Denckla MB, Pearlson GD, Kaufmann WE (2002) MRI parcellation of the frontal lobe in boys with attention deficit hyperactivity disorder or Tourette syndrome. Psychiatry Res Neuroimaging 116(1–2):63–81
Zurück zum Zitat Kaur S, Sassi RB, Axelson D, Nicoletti M, Brambilla P, Monkul ES, Hatch JP, Keshevan MS, Ryan N, Birmaher B, Soares JC (2005) Cingulate cortex anatomical abnormalities in children and adolescents with bipolar disorder. Am J Psychiatry 162(9):1637–1643PubMed Kaur S, Sassi RB, Axelson D, Nicoletti M, Brambilla P, Monkul ES, Hatch JP, Keshevan MS, Ryan N, Birmaher B, Soares JC (2005) Cingulate cortex anatomical abnormalities in children and adolescents with bipolar disorder. Am J Psychiatry 162(9):1637–1643PubMed
Zurück zum Zitat Kegeles LS, Malone KM, Slifstein M, Ellis SP, Xanthopoulos E, Keilp JG, Campbell C, Oquendo M, van Heertum RL, Mann JJ (2003) Response of cortical metabolic deficits to serotonergic challenge in familial mood disorders. Psychiatry Interpers Biol Process 160(1):76–82 Kegeles LS, Malone KM, Slifstein M, Ellis SP, Xanthopoulos E, Keilp JG, Campbell C, Oquendo M, van Heertum RL, Mann JJ (2003) Response of cortical metabolic deficits to serotonergic challenge in familial mood disorders. Psychiatry Interpers Biol Process 160(1):76–82
Zurück zum Zitat Keller SS, Highley JR, Garcia-Finana M, Sluming V, Rezaie R, Roberts N (2007) Sulcal variability, stereological measurement and asymmetry of Broca's area on MR images. J Anat 211:534–555 Keller SS, Highley JR, Garcia-Finana M, Sluming V, Rezaie R, Roberts N (2007) Sulcal variability, stereological measurement and asymmetry of Broca's area on MR images. J Anat 211:534–555
Zurück zum Zitat Keller SS, Crow T, Foundas A, Amunts K, Roberts N (2009) Broca’s area: nomenclature, anatomy, typology and asymmetry. Brain Lang 109:29–48PubMed Keller SS, Crow T, Foundas A, Amunts K, Roberts N (2009) Broca’s area: nomenclature, anatomy, typology and asymmetry. Brain Lang 109:29–48PubMed
Zurück zum Zitat Kikinis R, Shenton ME, Iosifescu DV, McCarley RW, Saiviroonporn P, Hokama HH, Robatino A, Metcalf D, Wible CG, Portas CM, Donnino RM, Jolesz FA (1996) A digital brain atlas for surgical planning, model-driven segmentation, and teaching. IEEE Trans Vis Comp Graphics 2(3):232–241 Kikinis R, Shenton ME, Iosifescu DV, McCarley RW, Saiviroonporn P, Hokama HH, Robatino A, Metcalf D, Wible CG, Portas CM, Donnino RM, Jolesz FA (1996) A digital brain atlas for surgical planning, model-driven segmentation, and teaching. IEEE Trans Vis Comp Graphics 2(3):232–241
Zurück zum Zitat Knaus TA, Bollich AM, Corey DM, Lemen LC, Foundas AL (2006) Variability in perisylvian brain anatomy in healthy adults. Brain Lang 97:219–232PubMed Knaus TA, Bollich AM, Corey DM, Lemen LC, Foundas AL (2006) Variability in perisylvian brain anatomy in healthy adults. Brain Lang 97:219–232PubMed
Zurück zum Zitat Kringelbach ML, Rolls ET (2004) The functional neuroanatomy of the human orbitofrontal cortex: evidence from neuroimaging and neuropsychology. Prog Neurobiol 72(5):341–372PubMed Kringelbach ML, Rolls ET (2004) The functional neuroanatomy of the human orbitofrontal cortex: evidence from neuroimaging and neuropsychology. Prog Neurobiol 72(5):341–372PubMed
Zurück zum Zitat Lacerda AL, Hardan AY, Yorbik O, Keshavan MS (2003) Measurement of the orbitofrontal cortex: a validation study of a new method. NeuroImage 19(3):665–673PubMed Lacerda AL, Hardan AY, Yorbik O, Keshavan MS (2003) Measurement of the orbitofrontal cortex: a validation study of a new method. NeuroImage 19(3):665–673PubMed
Zurück zum Zitat Lai TJ, Payne ME, Byrum CE, Steffens DC, Krishnan KRR (2000) Reduction of orbital frontal cortex volume in geriatric depression. Biol Psychiatry 48(10):971–975 Lai TJ, Payne ME, Byrum CE, Steffens DC, Krishnan KRR (2000) Reduction of orbital frontal cortex volume in geriatric depression. Biol Psychiatry 48(10):971–975
Zurück zum Zitat Liberati A, Altman DG, Tetzlaff J, Mulrow C, Gotzsche PC, Ionnadis JPA, Clarke M, Devereaux PJ, Kleijnen J, Moher D (2009) The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate healthcare interventions: explanation and elaboration. BMJ 339:b2700PubMedCentralPubMed Liberati A, Altman DG, Tetzlaff J, Mulrow C, Gotzsche PC, Ionnadis JPA, Clarke M, Devereaux PJ, Kleijnen J, Moher D (2009) The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate healthcare interventions: explanation and elaboration. BMJ 339:b2700PubMedCentralPubMed
Zurück zum Zitat Lindberg O, Ostberg P, Zandbelt BB, Oberg J, Zhang Y, Andersen C, Looi JCL, Bogdanovic, Wahlund L-O (2009) Cortical morphometric subclassification of frontotemporal lobar degeneration. Am J Neuroradiol 30(6):1233–1239 Lindberg O, Ostberg P, Zandbelt BB, Oberg J, Zhang Y, Andersen C, Looi JCL, Bogdanovic, Wahlund L-O (2009) Cortical morphometric subclassification of frontotemporal lobar degeneration. Am J Neuroradiol 30(6):1233–1239
Zurück zum Zitat Lyoo IK, Han MH, Cho DY (1998) A brain MRI study in subjects with borderline personality disorder. J Affect Disord 50(2–3):235–243PubMed Lyoo IK, Han MH, Cho DY (1998) A brain MRI study in subjects with borderline personality disorder. J Affect Disord 50(2–3):235–243PubMed
Zurück zum Zitat Mackey S, Petrides M (2009) Architectonic mapping of the medial region of the human orbitofrontal cortex by density profiles. Neurosci 159:1089–1107 Mackey S, Petrides M (2009) Architectonic mapping of the medial region of the human orbitofrontal cortex by density profiles. Neurosci 159:1089–1107
Zurück zum Zitat MacLullich AMJ, Ferguson KJ, Wardlaw JM, Starr JM, Deary IJ, Seckl JR (2006) Smaller left anterior cingulate cortex volumes are associated with impaired hypothalamic–pituitary–adrenal axis regulation in healthy elderly men. J Clin Endocrinol Metab 91(4):1591–1594PubMed MacLullich AMJ, Ferguson KJ, Wardlaw JM, Starr JM, Deary IJ, Seckl JR (2006) Smaller left anterior cingulate cortex volumes are associated with impaired hypothalamic–pituitary–adrenal axis regulation in healthy elderly men. J Clin Endocrinol Metab 91(4):1591–1594PubMed
Zurück zum Zitat Mansouri FA, Tanaka K, Buckley MJ (2009) Conflict-induced behavioural adjustment: a clue to the executive functions of the prefrontal cortex. Nat Rev Neurosci 10:141–152PubMed Mansouri FA, Tanaka K, Buckley MJ (2009) Conflict-induced behavioural adjustment: a clue to the executive functions of the prefrontal cortex. Nat Rev Neurosci 10:141–152PubMed
Zurück zum Zitat McCormick LM, Ziebell S, Nopoulos P, Cassell M, Andreasen NC, Brumm M (2006) Anterior cingulate cortex: an MRI-based parcellation method. NeuroImage 32(3):1167–1175PubMed McCormick LM, Ziebell S, Nopoulos P, Cassell M, Andreasen NC, Brumm M (2006) Anterior cingulate cortex: an MRI-based parcellation method. NeuroImage 32(3):1167–1175PubMed
Zurück zum Zitat McLaughlin NCR, Moore DW, Fulwiler C, Bhadelia R, Gansler DA (2009) Differential contributions of lateral prefrontal cortex regions to visual memory processes. Brain Imaging Behav 3(2):202–211 McLaughlin NCR, Moore DW, Fulwiler C, Bhadelia R, Gansler DA (2009) Differential contributions of lateral prefrontal cortex regions to visual memory processes. Brain Imaging Behav 3(2):202–211
Zurück zum Zitat Medina KL, McQueeny T, Nagel BJ, Hanson KL, Schweinsburg AD, Tapert SF (2008) Prefrontal cortex volumes in adolescents with alcohol use disorders: unique gender effects. Alcoholism Clin Exp Res 32(3):386–394 Medina KL, McQueeny T, Nagel BJ, Hanson KL, Schweinsburg AD, Tapert SF (2008) Prefrontal cortex volumes in adolescents with alcohol use disorders: unique gender effects. Alcoholism Clin Exp Res 32(3):386–394
Zurück zum Zitat Middleton FA, Strick PL (2001) Cerebellar projections to the prefrontal cortex of the primate. J Neurosci 21(2):700–712PubMed Middleton FA, Strick PL (2001) Cerebellar projections to the prefrontal cortex of the primate. J Neurosci 21(2):700–712PubMed
Zurück zum Zitat Moberg PJ, Doty RL, Turetsky BI, Arnold SE, Mahr RN, Gur RC, Bilker W, Gur RE (1997) Olfactory identification deficits in schizophrenia: correlation with duration of illness. Am J Psychiatry 154(7):1016–1018PubMed Moberg PJ, Doty RL, Turetsky BI, Arnold SE, Mahr RN, Gur RC, Bilker W, Gur RE (1997) Olfactory identification deficits in schizophrenia: correlation with duration of illness. Am J Psychiatry 154(7):1016–1018PubMed
Zurück zum Zitat Moher D, Liberati A, Tetzlaff J, Altman DG, The PRISMA Group (2009) Preferred reporting items for systematic reviews and meta-analyses: the PRISMA Statement. PLoS Med 6(6):e1000097. doi:10.1371/journal.pmed1000097 Moher D, Liberati A, Tetzlaff J, Altman DG, The PRISMA Group (2009) Preferred reporting items for systematic reviews and meta-analyses: the PRISMA Statement. PLoS Med 6(6):e1000097. doi:10.​1371/​journal.​pmed1000097
Zurück zum Zitat Monkul ES, Hatch JP, Nicoletti MA, Spence S, Brambilla P, Lacerda ALT, Sassi RB, Mallinger AG, Keshevan MS, Soares JC (2007) Fronto-limbic brain structures in suicidal and non-suicidal female patients with major depressive disorder. Mol Psychiatry 12(4):360–366PubMed Monkul ES, Hatch JP, Nicoletti MA, Spence S, Brambilla P, Lacerda ALT, Sassi RB, Mallinger AG, Keshevan MS, Soares JC (2007) Fronto-limbic brain structures in suicidal and non-suicidal female patients with major depressive disorder. Mol Psychiatry 12(4):360–366PubMed
Zurück zum Zitat Nagel B, Medina K, Yoshii J, Schweinsburg AD, Moadab I, Tapert SF (2006) Age-related changes in prefrontal white matter volume across adolescense. NeuroReport 17(13):1427–1431PubMedCentralPubMed Nagel B, Medina K, Yoshii J, Schweinsburg AD, Moadab I, Tapert SF (2006) Age-related changes in prefrontal white matter volume across adolescense. NeuroReport 17(13):1427–1431PubMedCentralPubMed
Zurück zum Zitat Najt P, Nicoletti M, Chen HH, Hatch JP, Caetano SC, Sassi RB, Axelson D, Brmabilla P, Keshevan MS, Ryan ND, Birmaher B, Soares JC (2007). Anatomical measurements of the orbitofrontal cortex in child and adolescent patients with bipolar disorder. Neurosci 413(3):183–186 Najt P, Nicoletti M, Chen HH, Hatch JP, Caetano SC, Sassi RB, Axelson D, Brmabilla P, Keshevan MS, Ryan ND, Birmaher B, Soares JC (2007). Anatomical measurements of the orbitofrontal cortex in child and adolescent patients with bipolar disorder. Neurosci 413(3):183–186
Zurück zum Zitat Nakamura M, Nestor PG, Levitt JJ, Cohen AS, Kawashima T, Shenton ME, McCarley RW (2008) Orbitofrontal volume deficit in schizophrenia and thought disorder. Brain 131(1):180–195PubMedCentralPubMed Nakamura M, Nestor PG, Levitt JJ, Cohen AS, Kawashima T, Shenton ME, McCarley RW (2008) Orbitofrontal volume deficit in schizophrenia and thought disorder. Brain 131(1):180–195PubMedCentralPubMed
Zurück zum Zitat Nifosì F, Toffanin T, Follador H, Zonta F, Padovan G, Pigato G, Carollo C, Ermani M, Amista P, Perini GI (2010) Reduced right posterior hippocampal volume in women with recurrent familial pure depressive disorder. Psychiatry Res 184(1):23–28PubMed Nifosì F, Toffanin T, Follador H, Zonta F, Padovan G, Pigato G, Carollo C, Ermani M, Amista P, Perini GI (2010) Reduced right posterior hippocampal volume in women with recurrent familial pure depressive disorder. Psychiatry Res 184(1):23–28PubMed
Zurück zum Zitat Nishitani N, Schurman M, Amunts K, Hari R (2005) Broca’s region: from action to language. Physiol 20:60–69 Nishitani N, Schurman M, Amunts K, Hari R (2005) Broca’s region: from action to language. Physiol 20:60–69
Zurück zum Zitat Noga JT, Aylward E, Barta PE, Pearlson GD (1995) Cingulate gyrus in schizophrenic patients and normal volunteers. Psychiatry Res 61(4):201–208PubMed Noga JT, Aylward E, Barta PE, Pearlson GD (1995) Cingulate gyrus in schizophrenic patients and normal volunteers. Psychiatry Res 61(4):201–208PubMed
Zurück zum Zitat Ongür D, Ferry AT, Price JL (2003) Architectonic subdivision of the human orbital and medial prefrontal cortex. J Comp Neurol 460(3):425–449PubMed Ongür D, Ferry AT, Price JL (2003) Architectonic subdivision of the human orbital and medial prefrontal cortex. J Comp Neurol 460(3):425–449PubMed
Zurück zum Zitat Ono M, Kubik S, Abernathey CC (1990) Atlas of the cerebral sulci. Thieme Verlag, Stuggart Ono M, Kubik S, Abernathey CC (1990) Atlas of the cerebral sulci. Thieme Verlag, Stuggart
Zurück zum Zitat Palomero-Gallagher N, Vogt BA, Schleicher A, Mayberg HS, Zilles K (2009) Receptor architecture of human cingulate cortex: evaluation of the four-region neurobiological model. Hum Brain Mapp 30(8):2336–2355PubMed Palomero-Gallagher N, Vogt BA, Schleicher A, Mayberg HS, Zilles K (2009) Receptor architecture of human cingulate cortex: evaluation of the four-region neurobiological model. Hum Brain Mapp 30(8):2336–2355PubMed
Zurück zum Zitat Pantazis D, Joshi A, Jiang J, Shattuck D, Bernstein LE, Damasio H, Leahy RM (2010) Comparison of landmark-based and automatic methods for cortical surface registration. Neuroimage 49(3):2479–2493PubMedCentralPubMed Pantazis D, Joshi A, Jiang J, Shattuck D, Bernstein LE, Damasio H, Leahy RM (2010) Comparison of landmark-based and automatic methods for cortical surface registration. Neuroimage 49(3):2479–2493PubMedCentralPubMed
Zurück zum Zitat Pantel J, Schroder J, Essig M, Popp D, Dech H, Knopp MV, Schad LR, Eysenbach K, Backenstrass M, Friedlinger M (1997) Quantitative magnetic resonance imaging in geriatric depression and primary degenerative dementia. J Affect Disord 42(1):69–83PubMed Pantel J, Schroder J, Essig M, Popp D, Dech H, Knopp MV, Schad LR, Eysenbach K, Backenstrass M, Friedlinger M (1997) Quantitative magnetic resonance imaging in geriatric depression and primary degenerative dementia. J Affect Disord 42(1):69–83PubMed
Zurück zum Zitat Paus T, Otaky N, Caramanos Z, MacDonald D, Zijdenbos A, D’Avirro D, Gutmans D, Holmes C, Tomiauolo F, Evans AC (1996) In vivo morphometry of the intrasulcal gray matter in the human cingulate, paracingulate, and superior-rostral sulci: hemispheric asymmetries, gender differences and probability maps. J Comp Neurol 376(4):664–673PubMed Paus T, Otaky N, Caramanos Z, MacDonald D, Zijdenbos A, D’Avirro D, Gutmans D, Holmes C, Tomiauolo F, Evans AC (1996) In vivo morphometry of the intrasulcal gray matter in the human cingulate, paracingulate, and superior-rostral sulci: hemispheric asymmetries, gender differences and probability maps. J Comp Neurol 376(4):664–673PubMed
Zurück zum Zitat Petrides M (2000) The role of the mid-dorsolateral prefrontal cortex in working memory. Exp Brain Res 133(1):44–54PubMed Petrides M (2000) The role of the mid-dorsolateral prefrontal cortex in working memory. Exp Brain Res 133(1):44–54PubMed
Zurück zum Zitat Petrides M, Pandya DN (1994) Comparative architectonic analysis of the human and the macaque frontal cortex. In: Boller F, Grafman J (eds) Handbook of neuropsychology, vol 9th. Elsevier, Amsterdam, pp 17–58 Petrides M, Pandya DN (1994) Comparative architectonic analysis of the human and the macaque frontal cortex. In: Boller F, Grafman J (eds) Handbook of neuropsychology, vol 9th. Elsevier, Amsterdam, pp 17–58
Zurück zum Zitat Petrides M, Tomiauolo F, Yeterian EH, Pandya DN (2012) The prefrontal cortex: comparative architectonic organization in the human and the macaque monkey brains. Cortex 48(1):46–57 Petrides M, Tomiauolo F, Yeterian EH, Pandya DN (2012) The prefrontal cortex: comparative architectonic organization in the human and the macaque monkey brains. Cortex 48(1):46–57
Zurück zum Zitat Prasad KMR, Sahni SD, Rohm BR, Keshavan MS (2005) Dorsolateral prefrontal cortex morphology and short-term outcome in first-episode schizophrenia. Psychiatry Res 140(2):147–155PubMed Prasad KMR, Sahni SD, Rohm BR, Keshavan MS (2005) Dorsolateral prefrontal cortex morphology and short-term outcome in first-episode schizophrenia. Psychiatry Res 140(2):147–155PubMed
Zurück zum Zitat Rademacher J, Galaburda AM, Kennedy DN, Filipek PA, Caviness VS (1992) Human cerebral cortex: localization, parcellation, and morphometry with magnetic resonance imaging. J Cogn Neurosci 4(4):352–374PubMed Rademacher J, Galaburda AM, Kennedy DN, Filipek PA, Caviness VS (1992) Human cerebral cortex: localization, parcellation, and morphometry with magnetic resonance imaging. J Cogn Neurosci 4(4):352–374PubMed
Zurück zum Zitat Rademacher J, Caviness VS, Steinmetz H, Galaburda AM (1993) Topographical variation of the human primary cortices: implications for neuroimaging, brain mapping, and neurobiology. Cereb Cortex 3(4):313–329PubMed Rademacher J, Caviness VS, Steinmetz H, Galaburda AM (1993) Topographical variation of the human primary cortices: implications for neuroimaging, brain mapping, and neurobiology. Cereb Cortex 3(4):313–329PubMed
Zurück zum Zitat Rajkowska G, Goldman-Rakic PS (1995) Cytoarchitectonic definition of prefrontal areas in the normal human cortex: II. Variability in locations of areas 9 and 46 and relationship to the Talairach Coordinate System. Cereb Cortex 5(4):323–337PubMed Rajkowska G, Goldman-Rakic PS (1995) Cytoarchitectonic definition of prefrontal areas in the normal human cortex: II. Variability in locations of areas 9 and 46 and relationship to the Talairach Coordinate System. Cereb Cortex 5(4):323–337PubMed
Zurück zum Zitat Rajkowska G, Miguel-Hidalgo JJ, Dubey P, Stockmeier CA, Krishnan RR (2005) Prominent reduction in pyramidal neuron density in the orbitofrontal cortex of elderly depressed patients. Biol Psychiatry 58:297–306PubMedCentralPubMed Rajkowska G, Miguel-Hidalgo JJ, Dubey P, Stockmeier CA, Krishnan RR (2005) Prominent reduction in pyramidal neuron density in the orbitofrontal cortex of elderly depressed patients. Biol Psychiatry 58:297–306PubMedCentralPubMed
Zurück zum Zitat Rankin KP, Rosen HJ, Kramer JH, Chaier GF, Weiner MW, Schuff N, Miller BL (2004) Right and left medial orbitofrontal volumes shown an opposite relationship to agreeableness if FTD. Dementia Geriatr Cogn Disord 17(4):328–332 Rankin KP, Rosen HJ, Kramer JH, Chaier GF, Weiner MW, Schuff N, Miller BL (2004) Right and left medial orbitofrontal volumes shown an opposite relationship to agreeableness if FTD. Dementia Geriatr Cogn Disord 17(4):328–332
Zurück zum Zitat Ranta ME, Crocetti D, Clauss JA, Kraut MA, Mostofsky SH, Kaufmann WE (2009) Manual MRI parcellation of the frontal lobe. Psychiatry Res 172(2):147–154PubMed Ranta ME, Crocetti D, Clauss JA, Kraut MA, Mostofsky SH, Kaufmann WE (2009) Manual MRI parcellation of the frontal lobe. Psychiatry Res 172(2):147–154PubMed
Zurück zum Zitat Ratnanather JT, Botteron KN, Nishino T, Massie AB, Lal RM, Patel SG, Peddi S, Todd RD, Miller MI (2001) Validating cortical surface analysis of medial prefrontal cortex. NeuroImage 14(5):1058–1069PubMed Ratnanather JT, Botteron KN, Nishino T, Massie AB, Lal RM, Patel SG, Peddi S, Todd RD, Miller MI (2001) Validating cortical surface analysis of medial prefrontal cortex. NeuroImage 14(5):1058–1069PubMed
Zurück zum Zitat Rauch SL, Shin LM, Segal E, Pitman RK, Carson MA, McMullin K, Whalen PJ, Makris N (2003) Selectively reduced regional cortical volumes in post-traumatic stress disorder. NeuroReport 14(7):913–916PubMed Rauch SL, Shin LM, Segal E, Pitman RK, Carson MA, McMullin K, Whalen PJ, Makris N (2003) Selectively reduced regional cortical volumes in post-traumatic stress disorder. NeuroReport 14(7):913–916PubMed
Zurück zum Zitat Raz N, Torres IJ, Briggs SD, Spencer WD, Thornton AE, Loken WJ, Gunning FM, McQuain JD, Driesen NR, Acker JD (1995) Selective neuroanatomic abnormalities in Down’s syndrome and their cognitive correlates: evidence from MRI morphometry. Neurology 45:356–366PubMed Raz N, Torres IJ, Briggs SD, Spencer WD, Thornton AE, Loken WJ, Gunning FM, McQuain JD, Driesen NR, Acker JD (1995) Selective neuroanatomic abnormalities in Down’s syndrome and their cognitive correlates: evidence from MRI morphometry. Neurology 45:356–366PubMed
Zurück zum Zitat Reignes MHT, Krings T, Nguyen H–H, Kuker W, Spetzger U, Rhode V, Hutter BO, Thron A, Gilsbach JM (2000) Virtual pointer projection of the central sulcus to the outside of the skull using frameless neuronavigation—accuracy and applications. Acta Neurochir 142:1385–1390 Reignes MHT, Krings T, Nguyen H–H, Kuker W, Spetzger U, Rhode V, Hutter BO, Thron A, Gilsbach JM (2000) Virtual pointer projection of the central sulcus to the outside of the skull using frameless neuronavigation—accuracy and applications. Acta Neurochir 142:1385–1390
Zurück zum Zitat Riffkin J, Yücel M, Maruff P, Wood SJ, Soulsby B, Olver J, Kyrios M, Velakoulis D, Pantelis C (2005) A manual and automated MRI study of anterior cingulate and orbito-frontal cortices, and caudate nucleus in obsessive–compulsive disorder: comparison with healthy controls and patients with schizophrenia. Psychiatry Res 138(2):99–113PubMed Riffkin J, Yücel M, Maruff P, Wood SJ, Soulsby B, Olver J, Kyrios M, Velakoulis D, Pantelis C (2005) A manual and automated MRI study of anterior cingulate and orbito-frontal cortices, and caudate nucleus in obsessive–compulsive disorder: comparison with healthy controls and patients with schizophrenia. Psychiatry Res 138(2):99–113PubMed
Zurück zum Zitat Rolls ET, Grabenhorst F (2008) The orbitofrontal cortex and beyond: from affect to decision-making. Prog Neurobiol 86(3):216–244PubMed Rolls ET, Grabenhorst F (2008) The orbitofrontal cortex and beyond: from affect to decision-making. Prog Neurobiol 86(3):216–244PubMed
Zurück zum Zitat Rosen HJ, Perry RJ, Murphy J, Kramer JH, Mychack P, Schuff N, Weiner M, Levenson RW, Miller BL (2002) Emotion comprehension in the temporal variant of frontotemporal dementia. Brain 125:2286–2295PubMed Rosen HJ, Perry RJ, Murphy J, Kramer JH, Mychack P, Schuff N, Weiner M, Levenson RW, Miller BL (2002) Emotion comprehension in the temporal variant of frontotemporal dementia. Brain 125:2286–2295PubMed
Zurück zum Zitat Rosso IM, Makris N, Thermenos HW, Hodge SM, Brown A, Kennedy D, Caviness VS, Faraone SV, Tsuang MT, Seiman LJ (2010) Regional prefrontal cortex gray matter volumes in youth at familial risk for schizophrenia from the Harvard Adolescent High Risk Study. Schizophrenia Res 123(1):15–21 Rosso IM, Makris N, Thermenos HW, Hodge SM, Brown A, Kennedy D, Caviness VS, Faraone SV, Tsuang MT, Seiman LJ (2010) Regional prefrontal cortex gray matter volumes in youth at familial risk for schizophrenia from the Harvard Adolescent High Risk Study. Schizophrenia Res 123(1):15–21
Zurück zum Zitat Rupp CI, Fleischhacker WW, Kemmler G, Oberbauer H, Scholtz AW, Wanko C, Hinterhuber H (2005) Various bilateral olfactory deficits in male patients with schizophrenia. Schizophr Bull 31(1):155–165PubMed Rupp CI, Fleischhacker WW, Kemmler G, Oberbauer H, Scholtz AW, Wanko C, Hinterhuber H (2005) Various bilateral olfactory deficits in male patients with schizophrenia. Schizophr Bull 31(1):155–165PubMed
Zurück zum Zitat Sabb FW, Bilder RM, Chou M, Bookheimer SY (2007) Working memory effects on semantic processing: priming differences in pars orbitalis. NeuroImage 37(1):311–322PubMed Sabb FW, Bilder RM, Chou M, Bookheimer SY (2007) Working memory effects on semantic processing: priming differences in pars orbitalis. NeuroImage 37(1):311–322PubMed
Zurück zum Zitat Salat DH, Kaye JA, Janowsky JS (2001) Selective preservation and degeneration within the prefrontal cortex in aging and Alzheimer disease. Arch Neurol 58(9):1403–1408PubMed Salat DH, Kaye JA, Janowsky JS (2001) Selective preservation and degeneration within the prefrontal cortex in aging and Alzheimer disease. Arch Neurol 58(9):1403–1408PubMed
Zurück zum Zitat Sanches M, Caetano S, Nicoletti M, Monkul ES, Chen HH, Hatch JP, Yeh P-H, Mullis RL, Keshevan MS, Rajkowska G, Soares JC (2009) An MRI-based approach for the measurement of the dorsolateral prefrontal cortex in humans. Psychiatry Res 173(2):150–154PubMedCentralPubMed Sanches M, Caetano S, Nicoletti M, Monkul ES, Chen HH, Hatch JP, Yeh P-H, Mullis RL, Keshevan MS, Rajkowska G, Soares JC (2009) An MRI-based approach for the measurement of the dorsolateral prefrontal cortex in humans. Psychiatry Res 173(2):150–154PubMedCentralPubMed
Zurück zum Zitat Sanfilipo M, Lafargue T, Rusinek H, Arena L, Loneragan C, Lautin A, Feiner D, Rotrosen J, Wolkin A (2000) Volumetric measure of the frontal and temporal lobe regions in schizophrenia: relationship to negative symptoms. Arch Gen Psychiatry 57(5):471–480PubMed Sanfilipo M, Lafargue T, Rusinek H, Arena L, Loneragan C, Lautin A, Feiner D, Rotrosen J, Wolkin A (2000) Volumetric measure of the frontal and temporal lobe regions in schizophrenia: relationship to negative symptoms. Arch Gen Psychiatry 57(5):471–480PubMed
Zurück zum Zitat Sarkisov SA, Filimonoff IN, Preobrashenskaya NS (1949) Cytoarchitecture of the human cortex cerebri. Medgiz, Moscow Sarkisov SA, Filimonoff IN, Preobrashenskaya NS (1949) Cytoarchitecture of the human cortex cerebri. Medgiz, Moscow
Zurück zum Zitat Schenker NM, Desgouttes A-M, Semendeferi K (2005) Neural connectivity and cortical substrates of cognition in hominoids. J Hum Evol 49(5):547–569PubMed Schenker NM, Desgouttes A-M, Semendeferi K (2005) Neural connectivity and cortical substrates of cognition in hominoids. J Hum Evol 49(5):547–569PubMed
Zurück zum Zitat Schlaepfer TE, Harris GJ, Tien AY, Peng LW, Lee S, Federman EB, Chase GA, Barta PE, Pearlson GD (1994) Decreased regional cortical gray matter volume in schizophrenia. Am J Psychiatry 151:842–848PubMed Schlaepfer TE, Harris GJ, Tien AY, Peng LW, Lee S, Federman EB, Chase GA, Barta PE, Pearlson GD (1994) Decreased regional cortical gray matter volume in schizophrenia. Am J Psychiatry 151:842–848PubMed
Zurück zum Zitat Seidman LJ, Yurgelun-Todd D, Kremen WS, Woods BT, Goldstein JM, Faraone SV, Tsuang MT (1994) Relationship of prefrontal and temporal lobe MRI measures to neuropsychological performance in chronic schizophrenia. Biol Psychiatry 35(4):235–246PubMed Seidman LJ, Yurgelun-Todd D, Kremen WS, Woods BT, Goldstein JM, Faraone SV, Tsuang MT (1994) Relationship of prefrontal and temporal lobe MRI measures to neuropsychological performance in chronic schizophrenia. Biol Psychiatry 35(4):235–246PubMed
Zurück zum Zitat Seidman LJ, Valera EM, Makris N, Monuteaux MC, Boriel DL, Kelkar K, Kennedy DN, Caviness VS, Bush G, Aleardi M, Faraone SV, Biederman J (2006) Dorsolateral prefrontal and anterior cingulate cortex volumetric abnormalities in adults with attention-deficit/hyperactivity disorder identified by magnetic resonance imaging. Biol Psychiatry 60(10):1071–1080PubMed Seidman LJ, Valera EM, Makris N, Monuteaux MC, Boriel DL, Kelkar K, Kennedy DN, Caviness VS, Bush G, Aleardi M, Faraone SV, Biederman J (2006) Dorsolateral prefrontal and anterior cingulate cortex volumetric abnormalities in adults with attention-deficit/hyperactivity disorder identified by magnetic resonance imaging. Biol Psychiatry 60(10):1071–1080PubMed
Zurück zum Zitat Semendeferi K, Damasio H, Frank R, Van Hoesen GW (1997) The evolution of the frontal lobes: a volumetric analysis based on three-dimensional reconstructions of magnetic resonance scans of human and ape brains. J Hum Evol 32(4):375–388PubMed Semendeferi K, Damasio H, Frank R, Van Hoesen GW (1997) The evolution of the frontal lobes: a volumetric analysis based on three-dimensional reconstructions of magnetic resonance scans of human and ape brains. J Hum Evol 32(4):375–388PubMed
Zurück zum Zitat Semendeferi K, Armstrong E, Schleicher A, Zilles K, Van Hoesen GW (2001) Prefrontal cortex in humans and apes: a comparative study of area 10. Am J Phys Anthropol 114(3):224–241PubMed Semendeferi K, Armstrong E, Schleicher A, Zilles K, Van Hoesen GW (2001) Prefrontal cortex in humans and apes: a comparative study of area 10. Am J Phys Anthropol 114(3):224–241PubMed
Zurück zum Zitat Shallice T, Stuss DT, Picton TW, Alexander MP, Gillingham S (2008) Mapping task switching in frontal cortex through neuropsychological group studies. Front Neurosci 2(1):79–85PubMedCentralPubMed Shallice T, Stuss DT, Picton TW, Alexander MP, Gillingham S (2008) Mapping task switching in frontal cortex through neuropsychological group studies. Front Neurosci 2(1):79–85PubMedCentralPubMed
Zurück zum Zitat Smith GE (1907) A new topographical survey of the human cerebral cortex, being an account of the distribution of the anatomically distinct cortical areas and their relationship to the cerebral sulci. J Anat Physiol 41(4):237–254PubMedCentralPubMed Smith GE (1907) A new topographical survey of the human cerebral cortex, being an account of the distribution of the anatomically distinct cortical areas and their relationship to the cerebral sulci. J Anat Physiol 41(4):237–254PubMedCentralPubMed
Zurück zum Zitat Sowell ER, Trauner DA, Gamst A, Jernigan TL (2002) Development of cortical and subcortical brain structures in childhood and adolescence: a structural MRI study. Develop Med Child Neurol 44(1):4–16PubMed Sowell ER, Trauner DA, Gamst A, Jernigan TL (2002) Development of cortical and subcortical brain structures in childhood and adolescence: a structural MRI study. Develop Med Child Neurol 44(1):4–16PubMed
Zurück zum Zitat Suga M, Yamasue H, Abe O, Yamasaki S, Yamada H, Inoue H, Takei K, Aoki S, Kasai K (2010) Reduced gray matter volume of Brodmann’s area 45 is associated with severe psychotic symptoms in patients with schizophrenia. Eur Arch Psychiatry Clin Neurosci 260:465–473PubMed Suga M, Yamasue H, Abe O, Yamasaki S, Yamada H, Inoue H, Takei K, Aoki S, Kasai K (2010) Reduced gray matter volume of Brodmann’s area 45 is associated with severe psychotic symptoms in patients with schizophrenia. Eur Arch Psychiatry Clin Neurosci 260:465–473PubMed
Zurück zum Zitat Suzuki M, Zhou S-Y, Takahashi T, Hagino H, Kawasaki Y, Niu L, Matsui M, Seto H, Kurachi M (2005) Differential contributions of prefrontal and temporolimbic pathology to mechanisms of psychosis. Brain 128(9):2109–2122PubMed Suzuki M, Zhou S-Y, Takahashi T, Hagino H, Kawasaki Y, Niu L, Matsui M, Seto H, Kurachi M (2005) Differential contributions of prefrontal and temporolimbic pathology to mechanisms of psychosis. Brain 128(9):2109–2122PubMed
Zurück zum Zitat Szeszko PR, Bilder RM, Lencz T, Pollack S, Alvir JM, Ashtari M, Wu H, Lieberman JA (1999a) Investigation of frontal lobe subregions in first-episode schizophrenia. Psychiatry Res 90(1):1–15PubMed Szeszko PR, Bilder RM, Lencz T, Pollack S, Alvir JM, Ashtari M, Wu H, Lieberman JA (1999a) Investigation of frontal lobe subregions in first-episode schizophrenia. Psychiatry Res 90(1):1–15PubMed
Zurück zum Zitat Szeszko PR, Robinson D, Alvir JM, Bilder RM, Lencz T, Ashtari M, Wu H, Bogerts B (1999b) Orbital frontal and amygdala volume reductions in obsessive–compulsive disorder. Arch Gen Psychiatry 56(10):913–919PubMed Szeszko PR, Robinson D, Alvir JM, Bilder RM, Lencz T, Ashtari M, Wu H, Bogerts B (1999b) Orbital frontal and amygdala volume reductions in obsessive–compulsive disorder. Arch Gen Psychiatry 56(10):913–919PubMed
Zurück zum Zitat Takahashi T, Kawasaki Y, Kurokawa K, Hagino H, Nohara S, Yamashita I, Nakamura K, Murata M, Matsui M, Suzuki M, Seto H, Kurachi M (2002) Lack of normal structural asymmetry of the anterior cingulate gyrus in female patients with schizophrenia: a volumetric magnetic resonance imaging study. Schizophr Res 55(1–2):69–81PubMed Takahashi T, Kawasaki Y, Kurokawa K, Hagino H, Nohara S, Yamashita I, Nakamura K, Murata M, Matsui M, Suzuki M, Seto H, Kurachi M (2002) Lack of normal structural asymmetry of the anterior cingulate gyrus in female patients with schizophrenia: a volumetric magnetic resonance imaging study. Schizophr Res 55(1–2):69–81PubMed
Zurück zum Zitat Takahashi T, Suzuki M, Kawasaki Y, Hagino H, Yamashita I, Nohara S, Nakamura K, Seto H, Kurachi M (2003) Perigenual cingulate gyrus volume in patients with schizophrenia: a Magnetic Resonance Imaging Study. Biol Psychiatry 53:593–600PubMed Takahashi T, Suzuki M, Kawasaki Y, Hagino H, Yamashita I, Nohara S, Nakamura K, Seto H, Kurachi M (2003) Perigenual cingulate gyrus volume in patients with schizophrenia: a Magnetic Resonance Imaging Study. Biol Psychiatry 53:593–600PubMed
Zurück zum Zitat Tisserand DJ, Pruessner JC, Arigita EJS, Boxtel MPJV, Evans AC, Jolles J, Uylings HBM (2002) Regional frontal cortical volumes decrease differentially in aging: an MRI study to compare volumetric approaches and voxel-based morphometry. NeuroImage 17:657–669PubMed Tisserand DJ, Pruessner JC, Arigita EJS, Boxtel MPJV, Evans AC, Jolles J, Uylings HBM (2002) Regional frontal cortical volumes decrease differentially in aging: an MRI study to compare volumetric approaches and voxel-based morphometry. NeuroImage 17:657–669PubMed
Zurück zum Zitat Tomaiuolo F, MacDonald JD, Caramanos Z, Posner G, Chiavaras M, Evans AC, Petrides M (1999) Morphology morphometry and probability mapping of the pars opercularis of the inferior frontal gyrus: an in vivo MRI analysis. Eur J Neurosci 11:3033–3046PubMed Tomaiuolo F, MacDonald JD, Caramanos Z, Posner G, Chiavaras M, Evans AC, Petrides M (1999) Morphology morphometry and probability mapping of the pars opercularis of the inferior frontal gyrus: an in vivo MRI analysis. Eur J Neurosci 11:3033–3046PubMed
Zurück zum Zitat Torralva T, Kipps CM, Hodges JR, Clark L, Bekinschtein T, Roca M, Calcagno ML, Manes F (2007) The relationship between affective decision-making and theory of mind in the frontal variant of fronto-temporal dementia. Neuropsychologia 45(2):342–349PubMed Torralva T, Kipps CM, Hodges JR, Clark L, Bekinschtein T, Roca M, Calcagno ML, Manes F (2007) The relationship between affective decision-making and theory of mind in the frontal variant of fronto-temporal dementia. Neuropsychologia 45(2):342–349PubMed
Zurück zum Zitat Tzourio N, Petit L, Mellet E, Orssaud C, Crivello F, Benali K, Salamon G, Mazoyer B (1997) Use of anatomical parcellation to catalog and study structure–function relationships in the human brain. Hum Brain Mapp 5(4):228–232PubMed Tzourio N, Petit L, Mellet E, Orssaud C, Crivello F, Benali K, Salamon G, Mazoyer B (1997) Use of anatomical parcellation to catalog and study structure–function relationships in the human brain. Hum Brain Mapp 5(4):228–232PubMed
Zurück zum Zitat Tzourio-Mazoyer N, Landeau B, Papathanassiou D, Crivello F, Etard O, Delcroix N, Mazoyer B, Joliot M (2002) Automated anatomical labeling of activations in SPM using a macroscopic anatomical parcellation of the MNI MRI single-subject brain. NeuroImage 15(1):273–289PubMed Tzourio-Mazoyer N, Landeau B, Papathanassiou D, Crivello F, Etard O, Delcroix N, Mazoyer B, Joliot M (2002) Automated anatomical labeling of activations in SPM using a macroscopic anatomical parcellation of the MNI MRI single-subject brain. NeuroImage 15(1):273–289PubMed
Zurück zum Zitat Unterrainer JM, Owen AM (2006) Planning and problem solving: from neuropsychology to functional neuroimaging. J Physiol 99(4–6):308–317 Unterrainer JM, Owen AM (2006) Planning and problem solving: from neuropsychology to functional neuroimaging. J Physiol 99(4–6):308–317
Zurück zum Zitat Uylings HBM, Rajkowska G, Sanz-Arigita E, Amunts K, Zilles K (2005) Consequences of large interindividual variability for human brain atlases: converging macroscopical imaging and microscopical neuroanatomy. Anat Embryol 210(5–6):423–431PubMed Uylings HBM, Rajkowska G, Sanz-Arigita E, Amunts K, Zilles K (2005) Consequences of large interindividual variability for human brain atlases: converging macroscopical imaging and microscopical neuroanatomy. Anat Embryol 210(5–6):423–431PubMed
Zurück zum Zitat Uylings HBM, Sanz-Arigita EJ, de Vos K, Pool CW, Evers P, Rajkowska G (2010) 3-D cytoarchitectonic parcellation of human orbitofrontal cortex correlation with postmortem MRI. Psychiatry Res 183(1):1–20PubMedCentralPubMed Uylings HBM, Sanz-Arigita EJ, de Vos K, Pool CW, Evers P, Rajkowska G (2010) 3-D cytoarchitectonic parcellation of human orbitofrontal cortex correlation with postmortem MRI. Psychiatry Res 183(1):1–20PubMedCentralPubMed
Zurück zum Zitat van Elst LTV, Hesslinger B, Thiel T, Geiger E, Haegele K, Lemieux L, Lieb K, Bohus M, Hennig J, Ebert D (2003) Frontolimbic brain abnormalities in patients with boderline personality disorder: a volumetric magnetic resonance imaging study. Biol Psychiatry 54(2):163–171 van Elst LTV, Hesslinger B, Thiel T, Geiger E, Haegele K, Lemieux L, Lieb K, Bohus M, Hennig J, Ebert D (2003) Frontolimbic brain abnormalities in patients with boderline personality disorder: a volumetric magnetic resonance imaging study. Biol Psychiatry 54(2):163–171
Zurück zum Zitat Van Petten C, Plante E, Davidson PSR, Kuo TY, Bajuscak L, Glisky EL (2004) Memory and executive function in older adults: relationships with temporal and prefrontal gray matter volumes and white matter hyperintensities. Neuropsycholgia 42:1313–1335 Van Petten C, Plante E, Davidson PSR, Kuo TY, Bajuscak L, Glisky EL (2004) Memory and executive function in older adults: relationships with temporal and prefrontal gray matter volumes and white matter hyperintensities. Neuropsycholgia 42:1313–1335
Zurück zum Zitat Vogt BA (2008) Architecture, cytology and comparative organization of primate cingulate cortex. In: Vogt B (ed) Cingulate neurobiology and disease. Oxford University Press, Oxford Vogt BA (2008) Architecture, cytology and comparative organization of primate cingulate cortex. In: Vogt B (ed) Cingulate neurobiology and disease. Oxford University Press, Oxford
Zurück zum Zitat Vogt BA, Nimchinksy EA, Vogt LJ, Hof PR (1995) Human cingulate cortex: surface features, flat maps, and cytoarchitecture. J Comp Neurol 359:490–506PubMed Vogt BA, Nimchinksy EA, Vogt LJ, Hof PR (1995) Human cingulate cortex: surface features, flat maps, and cytoarchitecture. J Comp Neurol 359:490–506PubMed
Zurück zum Zitat Volle E, Gilbert SJ, Benoit RG, Burgess PW (2010) Specialization of the rostral prefrontal cortex for distinct analogy processes. Cereb Cortex 20(11):2647–2659PubMed Volle E, Gilbert SJ, Benoit RG, Burgess PW (2010) Specialization of the rostral prefrontal cortex for distinct analogy processes. Cereb Cortex 20(11):2647–2659PubMed
Zurück zum Zitat von Economo C, Koskinas GN (1925) Die Cytoarchitektonik der Hirnrinde des erwachsenen Menschen. Springer, Berlin von Economo C, Koskinas GN (1925) Die Cytoarchitektonik der Hirnrinde des erwachsenen Menschen. Springer, Berlin
Zurück zum Zitat Walker AE (1940) A cytoarchitectural study of the prefrontal area in the macaque monkey. J Comp Neurol 73(1):59–86 Walker AE (1940) A cytoarchitectural study of the prefrontal area in the macaque monkey. J Comp Neurol 73(1):59–86
Zurück zum Zitat Whiting P, Rutjes AWS, Reitsma JB, Bossuyt PMM, Kleijnen J (2003) The development of QUADAS: a tool for the quality assessment of studies of diagnostic accuracy included in systematic reviews. BMC Med Res Methodol 3:25PubMedCentralPubMed Whiting P, Rutjes AWS, Reitsma JB, Bossuyt PMM, Kleijnen J (2003) The development of QUADAS: a tool for the quality assessment of studies of diagnostic accuracy included in systematic reviews. BMC Med Res Methodol 3:25PubMedCentralPubMed
Zurück zum Zitat Wible CG, Shenton ME, Hokama H, Kikinis R, Jolesz FA, Metcalf D, Mccarley RW (1995) Prefrontal cortex and schizophrenia. Arch Gen Psychiatry 52:279–288PubMed Wible CG, Shenton ME, Hokama H, Kikinis R, Jolesz FA, Metcalf D, Mccarley RW (1995) Prefrontal cortex and schizophrenia. Arch Gen Psychiatry 52:279–288PubMed
Zurück zum Zitat Wible CG, Shenton ME, Fischer IA, Allard JE, Kikinis R, Jolesz FA, Iosifescu DV, McCarley RW (1997) Parcellation of the human prefrontal cortex using MRI. Psychiatry Res Neuroimaging 76:29–40 Wible CG, Shenton ME, Fischer IA, Allard JE, Kikinis R, Jolesz FA, Iosifescu DV, McCarley RW (1997) Parcellation of the human prefrontal cortex using MRI. Psychiatry Res Neuroimaging 76:29–40
Zurück zum Zitat Wilde EAA, Hunter JV, Newsome MR, Schiebel RS, Bigler ED, Johnson JL, Fearing MA, Cleavinger HB, Li X, Swank PR, Pedroza C, Roberson GS, Bachevalier J, Levin HS (2005) Frontal and temporal morphometric findings on MRI in children after moderate to severe traumatic brain injury. J Neurotrauma 22(3):333–344PubMed Wilde EAA, Hunter JV, Newsome MR, Schiebel RS, Bigler ED, Johnson JL, Fearing MA, Cleavinger HB, Li X, Swank PR, Pedroza C, Roberson GS, Bachevalier J, Levin HS (2005) Frontal and temporal morphometric findings on MRI in children after moderate to severe traumatic brain injury. J Neurotrauma 22(3):333–344PubMed
Zurück zum Zitat Woodward SH, Kaloupek DG, Streeter CC, Martinez C, Schaer M, Eliez S (2006) Decreased anterior cingulate volume in combat-related PTSD. Biol Psychiatry 59(7):582–587PubMed Woodward SH, Kaloupek DG, Streeter CC, Martinez C, Schaer M, Eliez S (2006) Decreased anterior cingulate volume in combat-related PTSD. Biol Psychiatry 59(7):582–587PubMed
Zurück zum Zitat Yamasaki S, Yamasue H, Abe O, Suga M, Yamada H, Inoue H, Kuwabara H, Kawakubo Y, Yahata N, Aoki S, Kano Y, Kato N, Kasai K (2010) Reduced gray matter volume of pars opercularis is associated with impaired social communication in high-functioning autism spectrum disorders. Biol Psychiatry 68(12):1141–1147PubMed Yamasaki S, Yamasue H, Abe O, Suga M, Yamada H, Inoue H, Kuwabara H, Kawakubo Y, Yahata N, Aoki S, Kano Y, Kato N, Kasai K (2010) Reduced gray matter volume of pars opercularis is associated with impaired social communication in high-functioning autism spectrum disorders. Biol Psychiatry 68(12):1141–1147PubMed
Zurück zum Zitat Yamasue H, Iwanami A, Hirayasu Y, Yamada H, Abe O, Kuroki N, Fukuda R, Tsujii K, Aoki S, Ohtomo K, Kato N, Kasai K (2004) Localized volume reduction in prefrontal, temporolimbic, and paralimbic regions in schizophrenia: an MRI parcellation study. Psychiatry Res 131(3):195–207PubMed Yamasue H, Iwanami A, Hirayasu Y, Yamada H, Abe O, Kuroki N, Fukuda R, Tsujii K, Aoki S, Ohtomo K, Kato N, Kasai K (2004) Localized volume reduction in prefrontal, temporolimbic, and paralimbic regions in schizophrenia: an MRI parcellation study. Psychiatry Res 131(3):195–207PubMed
Zurück zum Zitat Yücel M, Stuart GW, Maruff P, Velakoulis D, Crowe SF, Savage G, Pantelis C (2001) Hemispheric and gender-related differences in the gross morphology of the anterior cingulate/paracingulate cortex in normal volunteers: an MRI morphometric study. Cereb Cortex 11(1):17–25PubMed Yücel M, Stuart GW, Maruff P, Velakoulis D, Crowe SF, Savage G, Pantelis C (2001) Hemispheric and gender-related differences in the gross morphology of the anterior cingulate/paracingulate cortex in normal volunteers: an MRI morphometric study. Cereb Cortex 11(1):17–25PubMed
Zurück zum Zitat Yücel M, McKinnon MC, Chahal R, Taylor VH, Macdonald K, Joffe R, MacQuenn GM (2008) Anterior cingulate volumes in never-treated patients with major depressive disorder. Neuropsychopharmacology 33:3157–3163PubMed Yücel M, McKinnon MC, Chahal R, Taylor VH, Macdonald K, Joffe R, MacQuenn GM (2008) Anterior cingulate volumes in never-treated patients with major depressive disorder. Neuropsychopharmacology 33:3157–3163PubMed
Zurück zum Zitat Zald DH (2007) Orbital versus dorsolateral prefrontal cortex: anatomical insights into content versus process differentiation models of the prefrontal cortex. Ann N Y Acad Sci 1121:395–406PubMed Zald DH (2007) Orbital versus dorsolateral prefrontal cortex: anatomical insights into content versus process differentiation models of the prefrontal cortex. Ann N Y Acad Sci 1121:395–406PubMed
Zurück zum Zitat Zhou S-Y, Suzuki M, Hagino H, Takahashi T, Kawasaki Y, Matsui M, Seto H, Kurachi M (2005) Volumetric analysis of sulci/gyri defined in vivo frontal lobe regions in schizophrenia: precentral gyrus, cingulate gyrus, and prefrontal region. Psychiatry Res Neuroimaging 139:127–139 Zhou S-Y, Suzuki M, Hagino H, Takahashi T, Kawasaki Y, Matsui M, Seto H, Kurachi M (2005) Volumetric analysis of sulci/gyri defined in vivo frontal lobe regions in schizophrenia: precentral gyrus, cingulate gyrus, and prefrontal region. Psychiatry Res Neuroimaging 139:127–139
Zurück zum Zitat Zilles K, Amunts K (2010) Centenary of Brodmann’s map—conception and fate. Nat Rev Neurosci 11(2):139–145PubMed Zilles K, Amunts K (2010) Centenary of Brodmann’s map—conception and fate. Nat Rev Neurosci 11(2):139–145PubMed
Zurück zum Zitat Zuffante P, Leonard CM, Kuldau JM, Bauer RM, Doty EG, Bilder RM (2001) Working memory deficits in schizophrenia are not necessarily specific of associated with MRI-based estimates of area 46 volumes. Psychiatry Res Neuroimaging 108:187–209 Zuffante P, Leonard CM, Kuldau JM, Bauer RM, Doty EG, Bilder RM (2001) Working memory deficits in schizophrenia are not necessarily specific of associated with MRI-based estimates of area 46 volumes. Psychiatry Res Neuroimaging 108:187–209
Metadaten
Titel
A systematic review of brain frontal lobe parcellation techniques in magnetic resonance imaging
Publikationsdatum
01.01.2014
Erschienen in
Brain Structure and Function / Ausgabe 1/2014
Print ISSN: 1863-2653
Elektronische ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-013-0527-5

Weitere Artikel der Ausgabe 1/2014

Brain Structure and Function 1/2014 Zur Ausgabe

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Neurologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.