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Erschienen in: Brain Structure and Function 4/2017

31.08.2016 | Original Article

Revisiting the human uncinate fasciculus, its subcomponents and asymmetries with stem-based tractography and microdissection validation

verfasst von: Janice Hau, Silvio Sarubbo, Jean Christophe Houde, Francesco Corsini, Gabriel Girard, Charles Deledalle, Fabrice Crivello, Laure Zago, Emmanuel Mellet, Gaël Jobard, Marc Joliot, Bernard Mazoyer, Nathalie Tzourio-Mazoyer, Maxime Descoteaux, Laurent Petit

Erschienen in: Brain Structure and Function | Ausgabe 4/2017

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Abstract

Despite its significant functional and clinical interest, the anatomy of the uncinate fasciculus (UF) has received little attention. It is known as a ‘hook-shaped’ fascicle connecting the frontal and anterior temporal lobes and is believed to consist of multiple subcomponents. However, the knowledge of its precise connectional anatomy in humans is lacking, and its subcomponent divisions are unclear. In the present study, we evaluate the anatomy of the UF and provide its detailed normative description in 30 healthy subjects with advanced particle-filtering tractography with anatomical priors and robustness to crossing fibers with constrained spherical deconvolution. We extracted the UF by defining its stem encompassing all streamlines that converge into a compact bundle, which consisted not only of the classic hook-shaped fibers, but also of straight horizontally oriented. We applied an automatic-clustering method to subdivide the UF bundle and revealed five subcomponents in each hemisphere with distinct connectivity profiles, including different asymmetries. A layer-by-layer microdissection of the ventral part of the external and extreme capsules using Klingler’s preparation also demonstrated five types of uncinate fibers that, according to their pattern, depth, and cortical terminations, were consistent with the diffusion-based UF subcomponents. The present results shed new light on the UF cortical terminations and its multicomponent internal organization with extended cortical connections within the frontal and temporal cortices. The different lateralization patterns we report within the UF subcomponents reconcile the conflicting asymmetry findings of the literature. Such results clarifying the UF structural anatomy lay the groundwork for more targeted investigations of its functional role, especially in semantic language processing.
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Literatur
Zurück zum Zitat Axer H, Klingner CM, Prescher A (2013) Fiber anatomy of dorsal and ventral language streams. Brain Lang 127:192–204CrossRefPubMed Axer H, Klingner CM, Prescher A (2013) Fiber anatomy of dorsal and ventral language streams. Brain Lang 127:192–204CrossRefPubMed
Zurück zum Zitat Bajada CJ, Lambon Ralph MA, Cloutman LL (2015) Transport for language south of the Sylvian fissure: the routes and history of the main tracts and stations in the ventral language network. Cortex 69:141–151CrossRefPubMed Bajada CJ, Lambon Ralph MA, Cloutman LL (2015) Transport for language south of the Sylvian fissure: the routes and history of the main tracts and stations in the ventral language network. Cortex 69:141–151CrossRefPubMed
Zurück zum Zitat Binney RJ, Parker GJ, Lambon Ralph MA (2012) Convergent connectivity and graded specialization in the rostral human temporal lobe as revealed by diffusion-weighted imaging probabilistic tractography. J Cogn Neurosci 24:1998–2014CrossRefPubMed Binney RJ, Parker GJ, Lambon Ralph MA (2012) Convergent connectivity and graded specialization in the rostral human temporal lobe as revealed by diffusion-weighted imaging probabilistic tractography. J Cogn Neurosci 24:1998–2014CrossRefPubMed
Zurück zum Zitat Catani M, Howard RJ, Pajevic S, Jones DK (2002) Virtual in vivo interactive dissection of white matter fasciculi in the human brain. Neuroimage 17:77–94CrossRefPubMed Catani M, Howard RJ, Pajevic S, Jones DK (2002) Virtual in vivo interactive dissection of white matter fasciculi in the human brain. Neuroimage 17:77–94CrossRefPubMed
Zurück zum Zitat Catani M, Jones DK, Ffytche DH (2005) Perisylvian language networks of the human brain. Ann Neurol 57:8–16CrossRefPubMed Catani M, Jones DK, Ffytche DH (2005) Perisylvian language networks of the human brain. Ann Neurol 57:8–16CrossRefPubMed
Zurück zum Zitat Côté M-A, Garyfallidis E, Larochelle H, Descoteaux M (2015) Cleaning up the mess: tractography outlier removal using hierarchical QuickBundles clustering. In: 23rd ISMRM annual meeting. Toronto, Canada Côté M-A, Garyfallidis E, Larochelle H, Descoteaux M (2015) Cleaning up the mess: tractography outlier removal using hierarchical QuickBundles clustering. In: 23rd ISMRM annual meeting. Toronto, Canada
Zurück zum Zitat Craig MC, Catani M, Deeley Q, Latham R, Daly E, Kanaan R, Picchioni M, McGuire PK, Fahy T, Murphy DG (2009) Altered connections on the road to psychopathy. Mol Psychiatry 14(946–953):907CrossRef Craig MC, Catani M, Deeley Q, Latham R, Daly E, Kanaan R, Picchioni M, McGuire PK, Fahy T, Murphy DG (2009) Altered connections on the road to psychopathy. Mol Psychiatry 14(946–953):907CrossRef
Zurück zum Zitat Curran EJ (1909) A new association fiber tract in the cerebrum with remarks on the fiber tract dissection method of studying the brain. J Comp Neurol Psychol 19:645–656CrossRef Curran EJ (1909) A new association fiber tract in the cerebrum with remarks on the fiber tract dissection method of studying the brain. J Comp Neurol Psychol 19:645–656CrossRef
Zurück zum Zitat De Benedictis A, Duffau H, Paradiso B, Grandi E, Balbi S, Granieri E, Colarusso E, Chioffi F, Marras CE, Sarubbo S (2014) Anatomo-functional study of the temporo-parieto-occipital region: dissection, tractographic and brain mapping evidence from a neurosurgical perspective. J Anat 225:132–151CrossRefPubMedPubMedCentral De Benedictis A, Duffau H, Paradiso B, Grandi E, Balbi S, Granieri E, Colarusso E, Chioffi F, Marras CE, Sarubbo S (2014) Anatomo-functional study of the temporo-parieto-occipital region: dissection, tractographic and brain mapping evidence from a neurosurgical perspective. J Anat 225:132–151CrossRefPubMedPubMedCentral
Zurück zum Zitat De Benedictis A, Petit L, Descoteaux M, Marras CE, Barbareschi M, Corsini F, Dallabona M, Chioffi F, Sarubbo S (2016) New insights in the homotopic and heterotopic connectivity of the frontal portion of the human corpus callosum revealed by microdissection and diffusion tractography. Hum Brain Mapp. doi:10.1002/hbm.23339 De Benedictis A, Petit L, Descoteaux M, Marras CE, Barbareschi M, Corsini F, Dallabona M, Chioffi F, Sarubbo S (2016) New insights in the homotopic and heterotopic connectivity of the frontal portion of the human corpus callosum revealed by microdissection and diffusion tractography. Hum Brain Mapp. doi:10.​1002/​hbm.​23339
Zurück zum Zitat Dejerine J, Dejerine-Klumpke A (1895) Anatomie des centres nerveux. Tome 1. Paris: Rueff et Cie Dejerine J, Dejerine-Klumpke A (1895) Anatomie des centres nerveux. Tome 1. Paris: Rueff et Cie
Zurück zum Zitat Dempster AP, Laird NM, Rubin DB (1976) Maximum likelihood from incomplete data via the EM algorithm. J Royal Stat Soc Ser B (Methodological) 39:1–38 Dempster AP, Laird NM, Rubin DB (1976) Maximum likelihood from incomplete data via the EM algorithm. J Royal Stat Soc Ser B (Methodological) 39:1–38
Zurück zum Zitat Descoteaux M, Deriche R, Knosche TR, Anwander A (2009) Deterministic and probabilistic tractography based on complex fibre orientation distributions. IEEE Trans Med Imaging 28:269–286CrossRefPubMed Descoteaux M, Deriche R, Knosche TR, Anwander A (2009) Deterministic and probabilistic tractography based on complex fibre orientation distributions. IEEE Trans Med Imaging 28:269–286CrossRefPubMed
Zurück zum Zitat Duffau H, Gatignol P, Mandonnet E, Peruzzi P, Tzourio-Mazoyer N, Capelle L (2005) New insights into the anatomo-functional connectivity of the semantic system: a study using cortico-subcortical electrostimulations. Brain 128:797–810CrossRefPubMed Duffau H, Gatignol P, Mandonnet E, Peruzzi P, Tzourio-Mazoyer N, Capelle L (2005) New insights into the anatomo-functional connectivity of the semantic system: a study using cortico-subcortical electrostimulations. Brain 128:797–810CrossRefPubMed
Zurück zum Zitat Duffau H, Gatignol P, Moritz-Gasser S, Mandonnet E (2009) Is the left uncinate fasciculus essential for language? A cerebral stimulation study. J Neurol 256:382–389CrossRefPubMed Duffau H, Gatignol P, Moritz-Gasser S, Mandonnet E (2009) Is the left uncinate fasciculus essential for language? A cerebral stimulation study. J Neurol 256:382–389CrossRefPubMed
Zurück zum Zitat Ebeling U, von Cramon D (1992) Topography of the uncinate fascicle and adjacent temporal fiber tracts. Acta Neurochir (Wien) 115:143–148CrossRef Ebeling U, von Cramon D (1992) Topography of the uncinate fascicle and adjacent temporal fiber tracts. Acta Neurochir (Wien) 115:143–148CrossRef
Zurück zum Zitat Fernandez-Miranda JC, Rhoton AL, Kakizawa Y, Choi C, Alvarez-Linera J (2008) The claustrum and its projection system in the human brain: a microsurgical and tractographic anatomical study. J Neurosurg 108:764–774CrossRefPubMed Fernandez-Miranda JC, Rhoton AL, Kakizawa Y, Choi C, Alvarez-Linera J (2008) The claustrum and its projection system in the human brain: a microsurgical and tractographic anatomical study. J Neurosurg 108:764–774CrossRefPubMed
Zurück zum Zitat Fernandez-Miranda JC, Pathak S, Engh J, Jarbo K, Verstynen T, Yeh FC, Wang Y, Mintz A, Boada F, Schneider W, Friedlander R (2012) High-definition fiber tractography of the human brain: neuroanatomical validation and neurosurgical applications. Neurosurgery 71:430–453CrossRefPubMed Fernandez-Miranda JC, Pathak S, Engh J, Jarbo K, Verstynen T, Yeh FC, Wang Y, Mintz A, Boada F, Schneider W, Friedlander R (2012) High-definition fiber tractography of the human brain: neuroanatomical validation and neurosurgical applications. Neurosurgery 71:430–453CrossRefPubMed
Zurück zum Zitat Fernández-Miranda J, Wang Y, Pathak S, Stefaneau L, Verstynen T, Yeh F-C (2015) Asymmetry, connectivity, and segmentation of the arcuate fascicle in the human brain. Brain Struct Funct 220:1665–1680CrossRefPubMed Fernández-Miranda J, Wang Y, Pathak S, Stefaneau L, Verstynen T, Yeh F-C (2015) Asymmetry, connectivity, and segmentation of the arcuate fascicle in the human brain. Brain Struct Funct 220:1665–1680CrossRefPubMed
Zurück zum Zitat Forkel SJ, Thiebaut de Schotten M, Kawadler JM, Dell’Acqua F, Danek A, Catani M (2014) The anatomy of fronto-occipital connections from early blunt dissections to contemporary tractography. Cortex 56:73–84CrossRefPubMed Forkel SJ, Thiebaut de Schotten M, Kawadler JM, Dell’Acqua F, Danek A, Catani M (2014) The anatomy of fronto-occipital connections from early blunt dissections to contemporary tractography. Cortex 56:73–84CrossRefPubMed
Zurück zum Zitat Garyfallidis E, Brett M, Correia MM, Williams GB, Nimmo-Smith I (2012) QuickBundles, a method for tractography simplification. Front Neurosci 6:175CrossRefPubMedPubMedCentral Garyfallidis E, Brett M, Correia MM, Williams GB, Nimmo-Smith I (2012) QuickBundles, a method for tractography simplification. Front Neurosci 6:175CrossRefPubMedPubMedCentral
Zurück zum Zitat Gierhan SME (2013) Connections for auditory language in the human brain. Brain Lang 127:205–221CrossRefPubMed Gierhan SME (2013) Connections for auditory language in the human brain. Brain Lang 127:205–221CrossRefPubMed
Zurück zum Zitat Girard G, Whittingstall K, Deriche R, Descoteaux M (2014) Towars quantitative connectivity analysis: reducing tractography biaises. NeuroImage 98:266–278CrossRefPubMed Girard G, Whittingstall K, Deriche R, Descoteaux M (2014) Towars quantitative connectivity analysis: reducing tractography biaises. NeuroImage 98:266–278CrossRefPubMed
Zurück zum Zitat Gordinier HC (1899) The gross and minute anatomy of the central nervous system. Blakiston’s Son & Co, Philadelphia (USA) Gordinier HC (1899) The gross and minute anatomy of the central nervous system. Blakiston’s Son & Co, Philadelphia (USA)
Zurück zum Zitat Hasan KM, Iftikhar A, Kamali A, Kramer LA, Ashtari M, Cirino PT, Papanicolaou AC, Fletcher JM, Ewing-Cobbs L (2009) Development and aging of the healthy human brain uncinate fasciculus across the lifespan using diffusion tensor tractography. Brain Res 1276:67–76CrossRefPubMedPubMedCentral Hasan KM, Iftikhar A, Kamali A, Kramer LA, Ashtari M, Cirino PT, Papanicolaou AC, Fletcher JM, Ewing-Cobbs L (2009) Development and aging of the healthy human brain uncinate fasciculus across the lifespan using diffusion tensor tractography. Brain Res 1276:67–76CrossRefPubMedPubMedCentral
Zurück zum Zitat Hau J, Sarubbo S, Perchey G, Crivello F, Zago L, Mellet E, Jobard G, Joliot M, Mazoyer B, Tzourio-Mazoyer N, Petit L (2016) Cortical terminations of the inferior fronto-occipital and uncinate fasciculi: stem-based anatomical virtual dissection. Front Neuroanat 10:58CrossRefPubMedPubMedCentral Hau J, Sarubbo S, Perchey G, Crivello F, Zago L, Mellet E, Jobard G, Joliot M, Mazoyer B, Tzourio-Mazoyer N, Petit L (2016) Cortical terminations of the inferior fronto-occipital and uncinate fasciculi: stem-based anatomical virtual dissection. Front Neuroanat 10:58CrossRefPubMedPubMedCentral
Zurück zum Zitat Hernando KA, Szaflarski JP, Ver Hoef LW, Lee S, Allendorfer JB (2015) Uncinate fasciculus connectivity in patients with psychogenic nonepileptic seizures: a preliminary diffusion tensor tractography study. Epilepsy Behav 45:68–73CrossRefPubMed Hernando KA, Szaflarski JP, Ver Hoef LW, Lee S, Allendorfer JB (2015) Uncinate fasciculus connectivity in patients with psychogenic nonepileptic seizures: a preliminary diffusion tensor tractography study. Epilepsy Behav 45:68–73CrossRefPubMed
Zurück zum Zitat Highley JR, Walker MA, Esiri MM, Crow TJ, Harrison PJ (2002) Asymmetry of the uncinate fasciculus: a post-mortem study of normal subjects and patients with schizophrenia. Cereb Cortex 12:1218–1224CrossRefPubMed Highley JR, Walker MA, Esiri MM, Crow TJ, Harrison PJ (2002) Asymmetry of the uncinate fasciculus: a post-mortem study of normal subjects and patients with schizophrenia. Cereb Cortex 12:1218–1224CrossRefPubMed
Zurück zum Zitat Innocenti GM, Dyrby TB, Andersen KW, Rouiller EM, Caminiti R (2016) The crossed projection to the striatum in two species of monkey and in humans: behavioral and evolutionary significance. Cereb Cortex. doi:10.1093/cercor/bhw161 PubMed Innocenti GM, Dyrby TB, Andersen KW, Rouiller EM, Caminiti R (2016) The crossed projection to the striatum in two species of monkey and in humans: behavioral and evolutionary significance. Cereb Cortex. doi:10.​1093/​cercor/​bhw161 PubMed
Zurück zum Zitat Jbabdi S, Sotiropoulos SN, Haber SN, Van Essen DC, Behrens TE (2015) Measuring macroscopic brain connections in vivo. Nat Neurosci 18:1546–1555CrossRefPubMed Jbabdi S, Sotiropoulos SN, Haber SN, Van Essen DC, Behrens TE (2015) Measuring macroscopic brain connections in vivo. Nat Neurosci 18:1546–1555CrossRefPubMed
Zurück zum Zitat Jones DK (2008) Studying connections in the living human brain with diffusion MRI. Cortex 44:936–952CrossRefPubMed Jones DK (2008) Studying connections in the living human brain with diffusion MRI. Cortex 44:936–952CrossRefPubMed
Zurück zum Zitat Jones DK, Knosche TR, Turner R (2013) White matter integrity, fiber count, and other fallacies: the do’s and don’ts of diffusion MRI. Neuroimage 73:239–254CrossRefPubMed Jones DK, Knosche TR, Turner R (2013) White matter integrity, fiber count, and other fallacies: the do’s and don’ts of diffusion MRI. Neuroimage 73:239–254CrossRefPubMed
Zurück zum Zitat Kier EL, Staib LH, Davis LM, Bronen RA (2004) MR imaging of the temporal stem: anatomic dissection tractography of the uncinate fasciculus, inferior occipitofrontal fasciculus, and Meyer’s loop of the optic radiation. Am J Neuroradiol 25:677–691PubMed Kier EL, Staib LH, Davis LM, Bronen RA (2004) MR imaging of the temporal stem: anatomic dissection tractography of the uncinate fasciculus, inferior occipitofrontal fasciculus, and Meyer’s loop of the optic radiation. Am J Neuroradiol 25:677–691PubMed
Zurück zum Zitat Kubicki M, Westin CF, Maier SE, Frumin M, Nestor PG, Salisbury DF, Kikinis R, Jolesz FA, McCarley RW, Shenton ME (2002) Uncinate fasciculus findings in schizophrenia: a magnetic resonance diffusion tensor imaging study. Am J Psychiatry 159:813–820CrossRefPubMedPubMedCentral Kubicki M, Westin CF, Maier SE, Frumin M, Nestor PG, Salisbury DF, Kikinis R, Jolesz FA, McCarley RW, Shenton ME (2002) Uncinate fasciculus findings in schizophrenia: a magnetic resonance diffusion tensor imaging study. Am J Psychiatry 159:813–820CrossRefPubMedPubMedCentral
Zurück zum Zitat Lebel C, Gee M, Camicioli R, Wieler M, Martin W, Beaulieu C (2012) Diffusion tensor imaging of white matter tract evolution over the lifespan. NeuroImage 60:340–352CrossRefPubMed Lebel C, Gee M, Camicioli R, Wieler M, Martin W, Beaulieu C (2012) Diffusion tensor imaging of white matter tract evolution over the lifespan. NeuroImage 60:340–352CrossRefPubMed
Zurück zum Zitat Leng B, Han S, Bao Y, Zhang H, Wang Y, Wu Y, Wang Y (2016) The uncinate fasciculus as observed using diffusion spectrum imaging in the human brain. Neuroradiology 58:595–606CrossRefPubMed Leng B, Han S, Bao Y, Zhang H, Wang Y, Wu Y, Wang Y (2016) The uncinate fasciculus as observed using diffusion spectrum imaging in the human brain. Neuroradiology 58:595–606CrossRefPubMed
Zurück zum Zitat Makris N, Pandya D (2009) The extreme capsule in humans and rethinking of the language circuitry. Brain Struct Funct 213:343–358CrossRefPubMed Makris N, Pandya D (2009) The extreme capsule in humans and rethinking of the language circuitry. Brain Struct Funct 213:343–358CrossRefPubMed
Zurück zum Zitat Makris N, Kennedy DN, McInerney S, Sorensen AG, Wang R, Caviness VS, Pandya DN (2005) Segmentation of subcomponents within the superior longitudinal fascicle in humans: a quantitative, in vivo, DT-MRI study. Cereb Cortex 15:854–869CrossRefPubMed Makris N, Kennedy DN, McInerney S, Sorensen AG, Wang R, Caviness VS, Pandya DN (2005) Segmentation of subcomponents within the superior longitudinal fascicle in humans: a quantitative, in vivo, DT-MRI study. Cereb Cortex 15:854–869CrossRefPubMed
Zurück zum Zitat Mars RB, Foxley S, Verhagen L, Jbabdi S, Sallet J, Noonan MP, Neubert FX, Andersson JL, Croxson PL, Dunbar RI, Khrapitchev AA, Sibson NR, Miller KL, Rushworth MF (2015) The extreme capsule fiber complex in humans and macaque monkeys: a comparative diffusion MRI tractography study. Brain Struct Funct. doi:10.1007/s00429-015-1146-0 PubMedPubMedCentral Mars RB, Foxley S, Verhagen L, Jbabdi S, Sallet J, Noonan MP, Neubert FX, Andersson JL, Croxson PL, Dunbar RI, Khrapitchev AA, Sibson NR, Miller KL, Rushworth MF (2015) The extreme capsule fiber complex in humans and macaque monkeys: a comparative diffusion MRI tractography study. Brain Struct Funct. doi:10.​1007/​s00429-015-1146-0 PubMedPubMedCentral
Zurück zum Zitat Martino J, Vergani F, Robles SG, Duffau H (2010) New insights into the anatomic dissection of the temporal stem with special emphasis on the inferior fronto-occipital fasciculus: implications in surgical approach to left mesiotemporal and temporoinsular structures. Neurosurgery 66:4–12PubMed Martino J, Vergani F, Robles SG, Duffau H (2010) New insights into the anatomic dissection of the temporal stem with special emphasis on the inferior fronto-occipital fasciculus: implications in surgical approach to left mesiotemporal and temporoinsular structures. Neurosurgery 66:4–12PubMed
Zurück zum Zitat Martino J, De Witt Hamer PC, Vergani F, Brogna C, de Lucas EM, Vázquez-Barquero A, García-Porrero JA, Duffau H (2011) Cortex-sparing fiber dissection: an improved method for the study of white matter anatomy in the human brain. J Anat 219:531–541CrossRefPubMedPubMedCentral Martino J, De Witt Hamer PC, Vergani F, Brogna C, de Lucas EM, Vázquez-Barquero A, García-Porrero JA, Duffau H (2011) Cortex-sparing fiber dissection: an improved method for the study of white matter anatomy in the human brain. J Anat 219:531–541CrossRefPubMedPubMedCentral
Zurück zum Zitat Mazoyer B, Mellet E, Perchey G, Zago L, Crivello F, Jobard G, Delcroix N, Vigneau M, Leroux G, Petit L, Joliot M, Tzourio-Mazoyer N (2016) BIL&GIN: A neuroimaging, cognitive, behavioral, and genetic database for the study of human brain lateralization. Neuroimage 124 Part B:1225–1231CrossRef Mazoyer B, Mellet E, Perchey G, Zago L, Crivello F, Jobard G, Delcroix N, Vigneau M, Leroux G, Petit L, Joliot M, Tzourio-Mazoyer N (2016) BIL&GIN: A neuroimaging, cognitive, behavioral, and genetic database for the study of human brain lateralization. Neuroimage 124 Part B:1225–1231CrossRef
Zurück zum Zitat Meola A, Comert A, Yeh FC, Stefaneanu L, Fernandez-Miranda JC (2015) The controversial existence of the human superior fronto-occipital fasciculus: connectome-based tractographic study with microdissection validation. Hum Brain Mapp 36:4964–4971CrossRefPubMedPubMedCentral Meola A, Comert A, Yeh FC, Stefaneanu L, Fernandez-Miranda JC (2015) The controversial existence of the human superior fronto-occipital fasciculus: connectome-based tractographic study with microdissection validation. Hum Brain Mapp 36:4964–4971CrossRefPubMedPubMedCentral
Zurück zum Zitat Meynert T (1885) Psychiatry: Clinical Treatise on the Diseases of the Fore-Brain, trans. B. Sachs. GP Putnam, New York, London Meynert T (1885) Psychiatry: Clinical Treatise on the Diseases of the Fore-Brain, trans. B. Sachs. GP Putnam, New York, London
Zurück zum Zitat Oishi K, Faria A, Jiang H, Li X, Akhter K, Zhang J, Hsu JT, Miller MI, van Zijl PCM, Albert M, Lyketsos CG, Woods R, Toga AW, Pike GB, Rosa-Neto P, Evans A, Mazziotta J, Mori S (2009) Atlas-based whole brain white matter analysis using large deformation diffeomorphic metric mapping: application to normal elderly and Alzheimer’s disease participants. NeuroImage 46:486–499CrossRefPubMedPubMedCentral Oishi K, Faria A, Jiang H, Li X, Akhter K, Zhang J, Hsu JT, Miller MI, van Zijl PCM, Albert M, Lyketsos CG, Woods R, Toga AW, Pike GB, Rosa-Neto P, Evans A, Mazziotta J, Mori S (2009) Atlas-based whole brain white matter analysis using large deformation diffeomorphic metric mapping: application to normal elderly and Alzheimer’s disease participants. NeuroImage 46:486–499CrossRefPubMedPubMedCentral
Zurück zum Zitat Oishi K, Faria AV, Hsu J, Tippett D, Mori S, Hillis AE (2015) Critical role of the right uncinate fasciculus in emotional empathy. Ann Neurol 77:68–74CrossRefPubMed Oishi K, Faria AV, Hsu J, Tippett D, Mori S, Hillis AE (2015) Critical role of the right uncinate fasciculus in emotional empathy. Ann Neurol 77:68–74CrossRefPubMed
Zurück zum Zitat Papagno C, Miracapillo C, Casarotti A, Romero Lauro LJ, Castellano A, Falini A, Casaceli G, Fava E, Bello L (2011) What is the role of the uncinate fasciculus? Surgical removal and proper name retrieval. Brain 134:405–414CrossRefPubMed Papagno C, Miracapillo C, Casarotti A, Romero Lauro LJ, Castellano A, Falini A, Casaceli G, Fava E, Bello L (2011) What is the role of the uncinate fasciculus? Surgical removal and proper name retrieval. Brain 134:405–414CrossRefPubMed
Zurück zum Zitat Park H-J, Westin C-F, Kubicki M, Maier SE, Niznikiewicz M, Baer A, Frumin M, Kikinis R, Jolesz FA, McCarley RW, Shenton ME (2004) White matter hemisphere asymmetries in healthy subjects and in schizophrenia: a diffusion tensor MRI study. NeuroImage 23:213–223CrossRefPubMedPubMedCentral Park H-J, Westin C-F, Kubicki M, Maier SE, Niznikiewicz M, Baer A, Frumin M, Kikinis R, Jolesz FA, McCarley RW, Shenton ME (2004) White matter hemisphere asymmetries in healthy subjects and in schizophrenia: a diffusion tensor MRI study. NeuroImage 23:213–223CrossRefPubMedPubMedCentral
Zurück zum Zitat Parker GJM, Luzzi S, Alexander DC, Wheeler-Kingshott CAM, Ciccarelli O, Lambon Ralph MA (2005) Lateralization of ventral and dorsal auditory-language pathways in the human brain. NeuroImage 24:656–666CrossRefPubMed Parker GJM, Luzzi S, Alexander DC, Wheeler-Kingshott CAM, Ciccarelli O, Lambon Ralph MA (2005) Lateralization of ventral and dorsal auditory-language pathways in the human brain. NeuroImage 24:656–666CrossRefPubMed
Zurück zum Zitat Phan KL, Orlichenko A, Boyd E, Angstadt M, Coccaro EF, Liberzon I, Arfanakis K (2009) Preliminary evidence of white matter abnormality in the uncinate fasciculus in generalized social anxiety disorder. Biol Psychiatry 66:691–694CrossRefPubMedPubMedCentral Phan KL, Orlichenko A, Boyd E, Angstadt M, Coccaro EF, Liberzon I, Arfanakis K (2009) Preliminary evidence of white matter abnormality in the uncinate fasciculus in generalized social anxiety disorder. Biol Psychiatry 66:691–694CrossRefPubMedPubMedCentral
Zurück zum Zitat Price G, Cercignani M, Parker GJ, Altmann DR, Barnes TR, Barker GJ, Joyce EM, Ron MA (2008) White matter tracts in first-episode psychosis: a DTI tractography study of the uncinate fasciculus. Neuroimage 39:949–955CrossRefPubMedPubMedCentral Price G, Cercignani M, Parker GJ, Altmann DR, Barnes TR, Barker GJ, Joyce EM, Ron MA (2008) White matter tracts in first-episode psychosis: a DTI tractography study of the uncinate fasciculus. Neuroimage 39:949–955CrossRefPubMedPubMedCentral
Zurück zum Zitat Rodrigo S, Oppenheim C, Chassoux F, Golestani N, Cointepas Y, Poupon C, Semah F, Mangin JF, Le Bihan D, Meder JF (2007) Uncinate fasciculus fiber tracking in mesial temporal lobe epilepsy. Initial findings. Eur Radiol 17:1663–1668CrossRefPubMed Rodrigo S, Oppenheim C, Chassoux F, Golestani N, Cointepas Y, Poupon C, Semah F, Mangin JF, Le Bihan D, Meder JF (2007) Uncinate fasciculus fiber tracking in mesial temporal lobe epilepsy. Initial findings. Eur Radiol 17:1663–1668CrossRefPubMed
Zurück zum Zitat Sarubbo S, De Benedictis A, Maldonado IL, Basso G, Duffau H (2013) Frontal terminations for the inferior fronto-occipital fascicle: anatomical dissection, DTI study and functional considerations on a multi-component bundle. Brain Struct Funct 218:21–37CrossRefPubMed Sarubbo S, De Benedictis A, Maldonado IL, Basso G, Duffau H (2013) Frontal terminations for the inferior fronto-occipital fascicle: anatomical dissection, DTI study and functional considerations on a multi-component bundle. Brain Struct Funct 218:21–37CrossRefPubMed
Zurück zum Zitat Sarubbo S, De Benedictis A, Milani P, Paradiso B, Barbareschi M, Rozzanigo U, Colarusso E, Tugnoli V, Farneti M, Granieri E, Duffau H, Chioffi F (2015) The course and the anatomo-functional relationships of the optic radiation: a combined study with ‘post mortem’ dissections and ‘in vivo’ direct electrical mapping. J Anat 226:47–59CrossRefPubMed Sarubbo S, De Benedictis A, Milani P, Paradiso B, Barbareschi M, Rozzanigo U, Colarusso E, Tugnoli V, Farneti M, Granieri E, Duffau H, Chioffi F (2015) The course and the anatomo-functional relationships of the optic radiation: a combined study with ‘post mortem’ dissections and ‘in vivo’ direct electrical mapping. J Anat 226:47–59CrossRefPubMed
Zurück zum Zitat Sarubbo S, De Benedictis A, Merler S, Mandonnet E, Barbareschi M, Dallabona M, Chioffi F, Duffau H (2016) Structural and functional integration between dorsal and ventral language streams as revealed by blunt dissection and direct electrical stimulation. Hum Brain Mapp. doi:10.1002/hbm.23281 Sarubbo S, De Benedictis A, Merler S, Mandonnet E, Barbareschi M, Dallabona M, Chioffi F, Duffau H (2016) Structural and functional integration between dorsal and ventral language streams as revealed by blunt dissection and direct electrical stimulation. Hum Brain Mapp. doi:10.​1002/​hbm.​23281
Zurück zum Zitat Saur D, Kreher BW, Schnell S, Kummerer D, Kellmeyer P, Vry MS, Umarova R, Musso M, Glauche V, Abel S, Huber W, Rijntjes M, Hennig J, Weiller C (2008) Ventral and dorsal pathways for language. Proc Natl Acad Sci USA 105:18035–18040CrossRefPubMedPubMedCentral Saur D, Kreher BW, Schnell S, Kummerer D, Kellmeyer P, Vry MS, Umarova R, Musso M, Glauche V, Abel S, Huber W, Rijntjes M, Hennig J, Weiller C (2008) Ventral and dorsal pathways for language. Proc Natl Acad Sci USA 105:18035–18040CrossRefPubMedPubMedCentral
Zurück zum Zitat Schmahmann JD, Pandya DN (2006) Fiber pathways of the brain. Oxford University Press, New YorkCrossRef Schmahmann JD, Pandya DN (2006) Fiber pathways of the brain. Oxford University Press, New YorkCrossRef
Zurück zum Zitat Schwartz G (1978) Estimating the dimension of a model. Ann Stat 6:461–464CrossRef Schwartz G (1978) Estimating the dimension of a model. Ann Stat 6:461–464CrossRef
Zurück zum Zitat Sobhani M, Baker L, Martins B, Tuvblad C, Aziz-Zadeh L (2015) Psychopathic traits modulate microstructural integrity of right uncinate fasciculus in a community population. Neuroimage Clin 8:32–38CrossRefPubMedPubMedCentral Sobhani M, Baker L, Martins B, Tuvblad C, Aziz-Zadeh L (2015) Psychopathic traits modulate microstructural integrity of right uncinate fasciculus in a community population. Neuroimage Clin 8:32–38CrossRefPubMedPubMedCentral
Zurück zum Zitat Steffens DC, Taylor WD, Denny KL, Bergman SR, Wang L (2011) Structural integrity of the uncinate fasciculus and resting state functional connectivity of the ventral prefrontal cortex in late life depression. PLoS One 6:e22697CrossRefPubMedPubMedCentral Steffens DC, Taylor WD, Denny KL, Bergman SR, Wang L (2011) Structural integrity of the uncinate fasciculus and resting state functional connectivity of the ventral prefrontal cortex in late life depression. PLoS One 6:e22697CrossRefPubMedPubMedCentral
Zurück zum Zitat Taoka T, Morikawa M, Akashi T, Miyasaka T, Nakagawa H, Kiuchi K, Kishimoto T, Kichikawa K (2009) Fractional anisotropy–threshold dependence in tract-based diffusion tensor analysis: evaluation of the uncinate fasciculus in Alzheimer disease. AJNR Am J Neuroradiol 30:1700–1703CrossRefPubMed Taoka T, Morikawa M, Akashi T, Miyasaka T, Nakagawa H, Kiuchi K, Kishimoto T, Kichikawa K (2009) Fractional anisotropy–threshold dependence in tract-based diffusion tensor analysis: evaluation of the uncinate fasciculus in Alzheimer disease. AJNR Am J Neuroradiol 30:1700–1703CrossRefPubMed
Zurück zum Zitat Testut L (1900) Traité d’anatomie humaine. Tome 2. Octave Doin, Paris Testut L (1900) Traité d’anatomie humaine. Tome 2. Octave Doin, Paris
Zurück zum Zitat Thiebaut de Schotten M, Dell’Acqua F, Forkel SJ, Simmons A, Vergani F, Murphy DGM, Catani M (2011a) A lateralized brain network for visuospatial attention. Nat Neurosci 14:1245–1246CrossRefPubMed Thiebaut de Schotten M, Dell’Acqua F, Forkel SJ, Simmons A, Vergani F, Murphy DGM, Catani M (2011a) A lateralized brain network for visuospatial attention. Nat Neurosci 14:1245–1246CrossRefPubMed
Zurück zum Zitat Thiebaut de Schotten M, Ffytche D, Bizzi A, Dell’acqua F, Allin M, Walshe M, Murray R, Williams S, Murphy DGM, Catani M (2011b) Atlasing location, asymmetry and inter-subject variability of white matter tracts in the human brain with MR diffusion tractography. NeuroImage 54:49–59CrossRefPubMed Thiebaut de Schotten M, Ffytche D, Bizzi A, Dell’acqua F, Allin M, Walshe M, Murray R, Williams S, Murphy DGM, Catani M (2011b) Atlasing location, asymmetry and inter-subject variability of white matter tracts in the human brain with MR diffusion tractography. NeuroImage 54:49–59CrossRefPubMed
Zurück zum Zitat Thiebaut de Schotten M, Dell’Acqua F, Valabregue R, Catani M (2012) Monkey to human comparative anatomy of the frontal lobe association tracts. Cortex 48:82–96CrossRefPubMed Thiebaut de Schotten M, Dell’Acqua F, Valabregue R, Catani M (2012) Monkey to human comparative anatomy of the frontal lobe association tracts. Cortex 48:82–96CrossRefPubMed
Zurück zum Zitat Thomas C, Avram A, Pierpaoli C, Baker C (2015) Diffusion MRI properties of the human uncinate fasciculus correlate with the ability to learn visual associations. Cortex 72:65–78CrossRefPubMed Thomas C, Avram A, Pierpaoli C, Baker C (2015) Diffusion MRI properties of the human uncinate fasciculus correlate with the ability to learn visual associations. Cortex 72:65–78CrossRefPubMed
Zurück zum Zitat Tournier JD, Calamante F, Connelly A (2007) Robust determination of the fibre orientation distribution in diffusion MRI: non-negativity constrained super-resolved spherical deconvolution. NeuroImage 35:1459–1472CrossRefPubMed Tournier JD, Calamante F, Connelly A (2007) Robust determination of the fibre orientation distribution in diffusion MRI: non-negativity constrained super-resolved spherical deconvolution. NeuroImage 35:1459–1472CrossRefPubMed
Zurück zum Zitat Tournier J-D, Calamante F, Connelly A, Tournier J-D, Calamante F, Connelly A (2012) MRtrix: diffusion tractography in crossing fiber regions. Int J Imaging Syst Technol 22:53–66CrossRef Tournier J-D, Calamante F, Connelly A, Tournier J-D, Calamante F, Connelly A (2012) MRtrix: diffusion tractography in crossing fiber regions. Int J Imaging Syst Technol 22:53–66CrossRef
Zurück zum Zitat Travers N (2008) L’étude micro-anatomique des fibres du faisceau unciné et ses implications dans la chirurgie fronto-temporo-insulaire. Académie Nationale de Chirurgie 7:31–41 Travers N (2008) L’étude micro-anatomique des fibres du faisceau unciné et ses implications dans la chirurgie fronto-temporo-insulaire. Académie Nationale de Chirurgie 7:31–41
Zurück zum Zitat Ture U, Yasargil MG, Friedman AH, Al-Mefty O (2000) Fiber dissection technique: lateral aspect of the brain. Neurosurgery 47:417–427CrossRefPubMed Ture U, Yasargil MG, Friedman AH, Al-Mefty O (2000) Fiber dissection technique: lateral aspect of the brain. Neurosurgery 47:417–427CrossRefPubMed
Zurück zum Zitat Von Der Heide RJ, Skipper LM, Klobusicky E, Olson IR (2013) Dissecting the uncinate fasciculus: disorders, controversies and a hypothesis. Brain 136:1692–1707CrossRef Von Der Heide RJ, Skipper LM, Klobusicky E, Olson IR (2013) Dissecting the uncinate fasciculus: disorders, controversies and a hypothesis. Brain 136:1692–1707CrossRef
Zurück zum Zitat Wang X, Pathak S, Stefaneanu L, Yeh FC, Li S, Fernandez-Miranda JC (2016) Subcomponents and connectivity of the superior longitudinal fasciculus in the human brain. Brain Struct Funct 221:2075–2092CrossRefPubMed Wang X, Pathak S, Stefaneanu L, Yeh FC, Li S, Fernandez-Miranda JC (2016) Subcomponents and connectivity of the superior longitudinal fasciculus in the human brain. Brain Struct Funct 221:2075–2092CrossRefPubMed
Zurück zum Zitat Wassermann D, Makris N, Rathi Y, Shenton M, Kikinis R, Kubicki M, Westin CF (2013) On describing human white matter anatomy: the white matter query language. Med Image Comput Comput-Assist Interv 16:647–654PubMedPubMedCentral Wassermann D, Makris N, Rathi Y, Shenton M, Kikinis R, Kubicki M, Westin CF (2013) On describing human white matter anatomy: the white matter query language. Med Image Comput Comput-Assist Interv 16:647–654PubMedPubMedCentral
Zurück zum Zitat Weiller C, Bormann T, Saur D, Musso M, Rijntjes M (2011) How the ventral pathway got lost—and what its recovery might mean. Brain Lang 118:29–39CrossRefPubMed Weiller C, Bormann T, Saur D, Musso M, Rijntjes M (2011) How the ventral pathway got lost—and what its recovery might mean. Brain Lang 118:29–39CrossRefPubMed
Zurück zum Zitat Wernicke C (1908) Modern clinical medical diseases of the nervous system. Appleton-Century-Crofts, New York Wernicke C (1908) Modern clinical medical diseases of the nervous system. Appleton-Century-Crofts, New York
Zurück zum Zitat Wong NM, Cheung SH, Chan CC, Zeng H, Liu YP, So KF, Lee TM (2015) Diffusivity of the uncinate fasciculus in heroin users relates to their levels of anxiety. Transl Psychiatry 5:e554CrossRefPubMedPubMedCentral Wong NM, Cheung SH, Chan CC, Zeng H, Liu YP, So KF, Lee TM (2015) Diffusivity of the uncinate fasciculus in heroin users relates to their levels of anxiety. Transl Psychiatry 5:e554CrossRefPubMedPubMedCentral
Zurück zum Zitat Yasmin H, Nakata Y, Aoki S, Abe O, Sato N, Nemoto K, Arima K, Furuta N, Uno M, Hirai S, Masutani Y, Ohtomo K (2008) Diffusion abnormalities of the uncinate fasciculus in Alzheimer’s disease: diffusion tensor tract-specific analysis using a new method to measure the core of the tract. Neuroradiology 50:293–299CrossRefPubMed Yasmin H, Nakata Y, Aoki S, Abe O, Sato N, Nemoto K, Arima K, Furuta N, Uno M, Hirai S, Masutani Y, Ohtomo K (2008) Diffusion abnormalities of the uncinate fasciculus in Alzheimer’s disease: diffusion tensor tract-specific analysis using a new method to measure the core of the tract. Neuroradiology 50:293–299CrossRefPubMed
Zurück zum Zitat Yeatman JD, Weiner KS, Pestilli F, Rokem A, Mezer A, Wandell BA (2014) The vertical occipital fasciculus: a century of controversy resolved by in vivo measurements. Proc Natl Acad Sci USA 111:E5214–E5223CrossRefPubMedPubMedCentral Yeatman JD, Weiner KS, Pestilli F, Rokem A, Mezer A, Wandell BA (2014) The vertical occipital fasciculus: a century of controversy resolved by in vivo measurements. Proc Natl Acad Sci USA 111:E5214–E5223CrossRefPubMedPubMedCentral
Zurück zum Zitat Zemmoura I, Blanchard E, Raynal PI, Rousselot-Denis C, Destrieux C, Velut S (2016) How Klingler’s dissection permits exploration of brain structural connectivity? An electron microscopy study of human white matter. Brain Struct Funct 221:2477–2486CrossRefPubMed Zemmoura I, Blanchard E, Raynal PI, Rousselot-Denis C, Destrieux C, Velut S (2016) How Klingler’s dissection permits exploration of brain structural connectivity? An electron microscopy study of human white matter. Brain Struct Funct 221:2477–2486CrossRefPubMed
Zurück zum Zitat Zhang A, Leow A, Ajilore O, Lamar M, Yang S, Joseph J, Medina J, Zhan L, Kumar A (2012) Quantitative tract-specific measures of uncinate and cingulum in major depression using diffusion tensor imaging. Neuropsychopharmacology 37:959–967CrossRefPubMed Zhang A, Leow A, Ajilore O, Lamar M, Yang S, Joseph J, Medina J, Zhan L, Kumar A (2012) Quantitative tract-specific measures of uncinate and cingulum in major depression using diffusion tensor imaging. Neuropsychopharmacology 37:959–967CrossRefPubMed
Metadaten
Titel
Revisiting the human uncinate fasciculus, its subcomponents and asymmetries with stem-based tractography and microdissection validation
verfasst von
Janice Hau
Silvio Sarubbo
Jean Christophe Houde
Francesco Corsini
Gabriel Girard
Charles Deledalle
Fabrice Crivello
Laure Zago
Emmanuel Mellet
Gaël Jobard
Marc Joliot
Bernard Mazoyer
Nathalie Tzourio-Mazoyer
Maxime Descoteaux
Laurent Petit
Publikationsdatum
31.08.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Brain Structure and Function / Ausgabe 4/2017
Print ISSN: 1863-2653
Elektronische ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-016-1298-6

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