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Erschienen in: European Child & Adolescent Psychiatry 9/2016

14.01.2016 | Original Contribution

Gray matter volumes in symptomatic and asymptomatic offspring of parents diagnosed with bipolar disorder

verfasst von: Lindsay C. Hanford, Geoffrey B. Hall, Luciano Minuzzi, Roberto B. Sassi

Erschienen in: European Child & Adolescent Psychiatry | Ausgabe 9/2016

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Abstract

Children of parents diagnosed with bipolar disorder (BD), termed high-risk offspring (HRO), are at greater risk of developing psychiatric disorders compared to healthy children of healthy parents (HCO). Gray matter volume (GMV) abnormalities have been observed in HRO, however, these reports are inconsistent. We posit that this variability may be attributed to differences in methodology among offspring studies; in particular, the presence of psychiatric symptoms in HRO. Here, we directly compared GMVs between symptomatic and asymptomatic HRO, and HCO. High-resolution T1-weighted MR images were collected from 31 HRO (18 symptomatic and 13 asymptomatic) and 20 age- and sex-matched HCO. HRO had at least one parent diagnosed with BD. Symptomatic HRO were defined as having a psychiatric diagnosis other than BD, while asymptomatic HRO were required to be free of any psychiatric diagnosis. Scans were processed using voxel-based morphometry methods and between group analyses were performed in SPM. Compared to HCO, the HRO group showed decreased GMV in the right inferior orbitofrontal, right middle frontal, and bilateral superior and middle temporal regions. Both symptomatic and asymptomatic HRO groups showed decreased GMV in these regions separately when compared to HCO. When comparing symptomatic and asymptomatic HRO, GMVs were comparable in all regions except the lateral occipital cortex. Our study compared symptomatic and asymptomatic HRO directly. In doing so, we provided further support for the presence of discrete GMV deficits in HRO, and confirmed that these deficits are present irrespective of the presence of symptoms in HRO.
Literatur
1.
Zurück zum Zitat McGuffin P, Rijsdijk F, Andrew M (2003) The heritability of bipolar affective disorder and the genetic relationship to unipolar depression. Arch Gen Psychiatry 60(5):497–502CrossRefPubMed McGuffin P, Rijsdijk F, Andrew M (2003) The heritability of bipolar affective disorder and the genetic relationship to unipolar depression. Arch Gen Psychiatry 60(5):497–502CrossRefPubMed
2.
Zurück zum Zitat Rasic D, Hajek T, Alda M, Uher R (2014) Risk of mental illness in offspring of parents with schizophrenia, bipolar disorder, and major depressive disorder: a meta-analysis of family high-risk studies. Schizophr Bull 40(1):28–38CrossRefPubMed Rasic D, Hajek T, Alda M, Uher R (2014) Risk of mental illness in offspring of parents with schizophrenia, bipolar disorder, and major depressive disorder: a meta-analysis of family high-risk studies. Schizophr Bull 40(1):28–38CrossRefPubMed
3.
Zurück zum Zitat Birmaher B, Axelson D, Monk K, Kalas C, Goldstein B, Hickey MB, Obreja M, Ehmann M, Iyengar S, Shamseddeen W (2009) Lifetime psychiatric disorders in school-aged offspring of parents with bipolar disorder: the Pittsburgh Bipolar Offspring study. Arch Gen Psychiatry 66(3):287–296CrossRefPubMed Birmaher B, Axelson D, Monk K, Kalas C, Goldstein B, Hickey MB, Obreja M, Ehmann M, Iyengar S, Shamseddeen W (2009) Lifetime psychiatric disorders in school-aged offspring of parents with bipolar disorder: the Pittsburgh Bipolar Offspring study. Arch Gen Psychiatry 66(3):287–296CrossRefPubMed
5.
Zurück zum Zitat Wray NR, Gottesman II (2012) Using summary data from the danish national registers to estimate heritabilities for schizophrenia, bipolar disorder, and major depressive disorder. Front Genet 3(118):1–12. doi:10.3389/fgene.2012.00118 Wray NR, Gottesman II (2012) Using summary data from the danish national registers to estimate heritabilities for schizophrenia, bipolar disorder, and major depressive disorder. Front Genet 3(118):1–12. doi:10.​3389/​fgene.​2012.​00118
6.
11.
Zurück zum Zitat Johnson JG, Cohen P, Brook JS (2000) Associations between bipolar disorder and other psychiatric disorders during adolescence and early adulthood: a community-based longitudinal investigation. Am J Psychiatry 157(10):1679–1681CrossRefPubMed Johnson JG, Cohen P, Brook JS (2000) Associations between bipolar disorder and other psychiatric disorders during adolescence and early adulthood: a community-based longitudinal investigation. Am J Psychiatry 157(10):1679–1681CrossRefPubMed
12.
Zurück zum Zitat Brückl T, Wittchen H, Höfler M, Pfister H, Schneider S, Lieb R (2007) Childhood separation anxiety and the risk of subsequent psychopathology: results from a community study. Psychother Psychosom 76(1):47–56CrossRefPubMed Brückl T, Wittchen H, Höfler M, Pfister H, Schneider S, Lieb R (2007) Childhood separation anxiety and the risk of subsequent psychopathology: results from a community study. Psychother Psychosom 76(1):47–56CrossRefPubMed
13.
Zurück zum Zitat Strakowski SM, Adler CM, Almeida J, Altshuler LL, Blumberg HP, Chang KD, DelBello MP, Frangou S, McIntosh A, Phillips ML, Sussman JE, Townsend JD (2012) The functional neuroanatomy of bipolar disorder: a consensus model. Bipolar Disord 14(4):313–325. doi:10.1111/j.1399-5618.2012.01022.x CrossRefPubMed Strakowski SM, Adler CM, Almeida J, Altshuler LL, Blumberg HP, Chang KD, DelBello MP, Frangou S, McIntosh A, Phillips ML, Sussman JE, Townsend JD (2012) The functional neuroanatomy of bipolar disorder: a consensus model. Bipolar Disord 14(4):313–325. doi:10.​1111/​j.​1399-5618.​2012.​01022.​x CrossRefPubMed
15.
Zurück zum Zitat Phillips ML, Ladouceur CD, Drevets WC (2008) A neural model of voluntary and automatic emotion regulation: implications for understanding the pathophysiology and neurodevelopment of bipolar disorder. Mol Psychiatry 13(9):833–857CrossRef Phillips ML, Ladouceur CD, Drevets WC (2008) A neural model of voluntary and automatic emotion regulation: implications for understanding the pathophysiology and neurodevelopment of bipolar disorder. Mol Psychiatry 13(9):833–857CrossRef
16.
Zurück zum Zitat Pavuluri MN, O‘Connor MM, Harral E, Sweeney JA (2007) Affective neural circuitry during facial emotion processing in pediatric bipolar disorder. Biol Psychiatry 62(2):158–167CrossRefPubMed Pavuluri MN, O‘Connor MM, Harral E, Sweeney JA (2007) Affective neural circuitry during facial emotion processing in pediatric bipolar disorder. Biol Psychiatry 62(2):158–167CrossRefPubMed
20.
Zurück zum Zitat Hajek T, Gunde E, Slaney C, Propper L, MacQueen G, Duffy A, Alda M (2009) Amygdala and hippocampal volumes in relatives of patients with bipolar disorder: a high-risk study. Can J Psychiatry—Revue Canadienne de Psychiatrie 54(11):726–733 Hajek T, Gunde E, Slaney C, Propper L, MacQueen G, Duffy A, Alda M (2009) Amygdala and hippocampal volumes in relatives of patients with bipolar disorder: a high-risk study. Can J Psychiatry—Revue Canadienne de Psychiatrie 54(11):726–733
21.
Zurück zum Zitat Singh MK, DelBello MP, Adler CM, Stanford KE, Strakowski SM (2008) Neuroanatomical characterization of child offspring of bipolar parents. J Am Acad Child Adolesc Psychiatry 47(5):526–531CrossRefPubMedPubMedCentral Singh MK, DelBello MP, Adler CM, Stanford KE, Strakowski SM (2008) Neuroanatomical characterization of child offspring of bipolar parents. J Am Acad Child Adolesc Psychiatry 47(5):526–531CrossRefPubMedPubMedCentral
22.
Zurück zum Zitat Hajek T, Kozeny J, Kopecek M, Alda M, Hoschl C (2008) Reduced subgenual cingulate volumes in mood disorders: a meta-analysis. J Psychiatry Neurosci 33(2):91–99PubMedPubMedCentral Hajek T, Kozeny J, Kopecek M, Alda M, Hoschl C (2008) Reduced subgenual cingulate volumes in mood disorders: a meta-analysis. J Psychiatry Neurosci 33(2):91–99PubMedPubMedCentral
23.
Zurück zum Zitat Hajek T, Novak T, Kopecek M, Gunde E, Alda M, Höschl C (2010) Subgenual cingulate volumes in offspring of bipolar parents and in sporadic bipolar patients. Eur Arch Psychiatry Clin Neurosci 260(4):297–304. doi:10.1007/s00406-009-0077-2 CrossRefPubMed Hajek T, Novak T, Kopecek M, Gunde E, Alda M, Höschl C (2010) Subgenual cingulate volumes in offspring of bipolar parents and in sporadic bipolar patients. Eur Arch Psychiatry Clin Neurosci 260(4):297–304. doi:10.​1007/​s00406-009-0077-2 CrossRefPubMed
24.
Zurück zum Zitat Hajek T, Gunde E, Bernier D, Slaney C, Propper L, MacQueen G, Duffy A, Alda M (2008) Pituitary volumes in relatives of bipolar patients. Eur Arch Psychiatry Clin Neurosci 258(6):357–362CrossRef Hajek T, Gunde E, Bernier D, Slaney C, Propper L, MacQueen G, Duffy A, Alda M (2008) Pituitary volumes in relatives of bipolar patients. Eur Arch Psychiatry Clin Neurosci 258(6):357–362CrossRef
25.
Zurück zum Zitat Ladouceur CD, Almeida JRC, Birmaher B, Axelson DA, Nau S, Kalas C, Monk K, Kupfer DJ, Phillips ML (2008) Subcortical gray matter volume abnormalities in healthy bipolar offspring: potential neuroanatomical risk marker for bipolar disorder? J Am Acad Child Adolesc Psychiatry 47(5):532–539. doi:10.1097/CHI.0b013e318167656e CrossRefPubMedPubMedCentral Ladouceur CD, Almeida JRC, Birmaher B, Axelson DA, Nau S, Kalas C, Monk K, Kupfer DJ, Phillips ML (2008) Subcortical gray matter volume abnormalities in healthy bipolar offspring: potential neuroanatomical risk marker for bipolar disorder? J Am Acad Child Adolesc Psychiatry 47(5):532–539. doi:10.​1097/​CHI.​0b013e318167656e​ CrossRefPubMedPubMedCentral
26.
Zurück zum Zitat Bauer IE, Sanches M, Suchting R, Green CE, El Fangary NM, Zunta-Soares GB, Soares JC (2014) Amygdala enlargement in unaffected offspring of bipolar parents. J Psychiatr Res 59:200–205CrossRefPubMedPubMedCentral Bauer IE, Sanches M, Suchting R, Green CE, El Fangary NM, Zunta-Soares GB, Soares JC (2014) Amygdala enlargement in unaffected offspring of bipolar parents. J Psychiatr Res 59:200–205CrossRefPubMedPubMedCentral
27.
Zurück zum Zitat Hajek T, Cullis J, Novak T, Kopecek M, Blagdon R, Propper L, Stopkova P, Duffy A, Hoschl C, Uher R, Paus T, Young LT, Alda M (2013) Brain structural signature of familial predisposition for bipolar disorder: replicable evidence for involvement of the right inferior frontal gyrus. Biol Psychiatry 73(2):144–152. doi:10.1016/j.biopsych.2012.06.015 CrossRefPubMed Hajek T, Cullis J, Novak T, Kopecek M, Blagdon R, Propper L, Stopkova P, Duffy A, Hoschl C, Uher R, Paus T, Young LT, Alda M (2013) Brain structural signature of familial predisposition for bipolar disorder: replicable evidence for involvement of the right inferior frontal gyrus. Biol Psychiatry 73(2):144–152. doi:10.​1016/​j.​biopsych.​2012.​06.​015 CrossRefPubMed
29.
Zurück zum Zitat Sugranyes G, de la Serna E, Romero S, Sanchez-Gistau V, Calvo A, Moreno D, Baeza I, Diaz-Caneja CM, Sanchez-Gutierrez T, Janssen J (2015) Grey matter volume decrease distinguishes schizophrenia from bipolar offspring during childhood and adolescence. J Am Acad Child Adolesc Psychiatry 54(8):677CrossRefPubMed Sugranyes G, de la Serna E, Romero S, Sanchez-Gistau V, Calvo A, Moreno D, Baeza I, Diaz-Caneja CM, Sanchez-Gutierrez T, Janssen J (2015) Grey matter volume decrease distinguishes schizophrenia from bipolar offspring during childhood and adolescence. J Am Acad Child Adolesc Psychiatry 54(8):677CrossRefPubMed
32.
Zurück zum Zitat Simeonova DI, Jackson V, Attalla A, Karchemskiy A, Howe M, Adleman N, Chang K (2009) Subcortical volumetric correlates of anxiety in familial pediatric bipolar disorder: a preliminary investigation. Psychiatry Research: Neuroimaging 173(2):113–120CrossRefPubMedPubMedCentral Simeonova DI, Jackson V, Attalla A, Karchemskiy A, Howe M, Adleman N, Chang K (2009) Subcortical volumetric correlates of anxiety in familial pediatric bipolar disorder: a preliminary investigation. Psychiatry Research: Neuroimaging 173(2):113–120CrossRefPubMedPubMedCentral
33.
Zurück zum Zitat Stanfield AC, Moorhead TWJ, Job DE, McKirdy J, Sussmann JE, Hall J, Giles S, Johnstone EC, Lawrie SM, McIntosh AM (2009) Structural abnormalities of ventrolateral and orbitofrontal cortex in patients with familial bipolar disorder. Bipolar Disorders 11(2):135–144CrossRefPubMed Stanfield AC, Moorhead TWJ, Job DE, McKirdy J, Sussmann JE, Hall J, Giles S, Johnstone EC, Lawrie SM, McIntosh AM (2009) Structural abnormalities of ventrolateral and orbitofrontal cortex in patients with familial bipolar disorder. Bipolar Disorders 11(2):135–144CrossRefPubMed
34.
Zurück zum Zitat Chen HH, Nicoletti MA, Hatch JP, Sassi RB, Axelson D, Brambilla P, Monkul ES, Keshavan MS, Ryan ND, Birmaher B (2004) Abnormal left superior temporal gyrus volumes in children and adolescents with bipolar disorder: a magnetic resonance imaging study. Neurosci Lett 363(1):65–68CrossRefPubMed Chen HH, Nicoletti MA, Hatch JP, Sassi RB, Axelson D, Brambilla P, Monkul ES, Keshavan MS, Ryan ND, Birmaher B (2004) Abnormal left superior temporal gyrus volumes in children and adolescents with bipolar disorder: a magnetic resonance imaging study. Neurosci Lett 363(1):65–68CrossRefPubMed
35.
Zurück zum Zitat Nugent AC, Milham MP, Bain EE, Mah L, Cannon DM, Marrett S, Zarate CA, Pine DS, Price JL, Drevets WC (2006) Cortical abnormalities in bipolar disorder investigated with MRI and voxel-based morphometry. Neuroimage 30(2):485–497CrossRefPubMed Nugent AC, Milham MP, Bain EE, Mah L, Cannon DM, Marrett S, Zarate CA, Pine DS, Price JL, Drevets WC (2006) Cortical abnormalities in bipolar disorder investigated with MRI and voxel-based morphometry. Neuroimage 30(2):485–497CrossRefPubMed
37.
Zurück zum Zitat Narita K, Suda M, Takei Y, Aoyama Y, Majima T, Kameyama M, Kosaka H, Amanuma M, Fukuda M, Mikuni M (2011) Volume reduction of ventromedial prefrontal cortex in bipolar II patients with rapid cycling: a voxel-based morphometric study. Progr Neuro-Psychopharmacol Biol Psychiatry 35(2):439–445CrossRef Narita K, Suda M, Takei Y, Aoyama Y, Majima T, Kameyama M, Kosaka H, Amanuma M, Fukuda M, Mikuni M (2011) Volume reduction of ventromedial prefrontal cortex in bipolar II patients with rapid cycling: a voxel-based morphometric study. Progr Neuro-Psychopharmacol Biol Psychiatry 35(2):439–445CrossRef
38.
Zurück zum Zitat Wilke M, Kowatch RA, DelBello MP, Mills NP, Holland SK (2004) Voxel-based morphometry in adolescents with bipolar disorder: first results. Psychiatry Res: Neuroimaging 131(1):57–69CrossRefPubMed Wilke M, Kowatch RA, DelBello MP, Mills NP, Holland SK (2004) Voxel-based morphometry in adolescents with bipolar disorder: first results. Psychiatry Res: Neuroimaging 131(1):57–69CrossRefPubMed
41.
Zurück zum Zitat Kaufman J, Birmaher B, Brent D, Rao U, Flynn C, Moreci P, Williamson D, Ryan N (1997) Schedule for affective disorders and schizophrenia for school-age children-present and lifetime version (K-SADS-PL): initial reliability and validity data. J Am Acad Child Adolesc Psychiatry 36(7):980–988CrossRefPubMed Kaufman J, Birmaher B, Brent D, Rao U, Flynn C, Moreci P, Williamson D, Ryan N (1997) Schedule for affective disorders and schizophrenia for school-age children-present and lifetime version (K-SADS-PL): initial reliability and validity data. J Am Acad Child Adolesc Psychiatry 36(7):980–988CrossRefPubMed
42.
Zurück zum Zitat First MB, Spitzer RL, Gibbon M, Williams JB (2012) Structured clinical interview for DSM-IV® axis I disorders (SCID-I), clinician version, administration booklet. American Psychiatric Press, Washington, DC First MB, Spitzer RL, Gibbon M, Williams JB (2012) Structured clinical interview for DSM-IV® axis I disorders (SCID-I), clinician version, administration booklet. American Psychiatric Press, Washington, DC
43.
Zurück zum Zitat de Bie HM, Boersma M, Wattjes MP, Adriaanse S, Vermeulen RJ, Oostrom KJ, Huisman J, Veltman DJ, Delemarre-Van de Waal HA (2010) Preparing children with a mock scanner training protocol results in high quality structural and functional MRI scans. Eur J Pediatr 169(9):1079–1085CrossRefPubMedPubMedCentral de Bie HM, Boersma M, Wattjes MP, Adriaanse S, Vermeulen RJ, Oostrom KJ, Huisman J, Veltman DJ, Delemarre-Van de Waal HA (2010) Preparing children with a mock scanner training protocol results in high quality structural and functional MRI scans. Eur J Pediatr 169(9):1079–1085CrossRefPubMedPubMedCentral
44.
Zurück zum Zitat Nora M R, Michelle L, Roman B, Joanna A C, Maria C, Monica V, Patrice L S, Nadine G (2009) Making MR imaging child’s play-pediatric neuroimaging protocol, guidelines and procedure. J Vis Exp (29):1309 Nora M R, Michelle L, Roman B, Joanna A C, Maria C, Monica V, Patrice L S, Nadine G (2009) Making MR imaging child’s play-pediatric neuroimaging protocol, guidelines and procedure. J Vis Exp (29):1309
45.
Zurück zum Zitat Good CD, Johnsrude IS, Ashburner J, Henson RN, Friston KJ, Frackowiak RS (2001) A voxel-based morphometric study of ageing in 465 normal adult human brains. NeuroImage 14:21–36CrossRefPubMed Good CD, Johnsrude IS, Ashburner J, Henson RN, Friston KJ, Frackowiak RS (2001) A voxel-based morphometric study of ageing in 465 normal adult human brains. NeuroImage 14:21–36CrossRefPubMed
46.
Zurück zum Zitat Ashburner J, Friston KJ (2000) Voxel-based morphometry—the methods. Neuroimage 11(6):805–821CrossRefPubMed Ashburner J, Friston KJ (2000) Voxel-based morphometry—the methods. Neuroimage 11(6):805–821CrossRefPubMed
47.
Zurück zum Zitat Wilke M, Holland SK, Altaye M, Gaser C (2008) Template-O-Matic: a toolbox for creating customized pediatric templates. Neuroimage 41(3):903–913CrossRefPubMed Wilke M, Holland SK, Altaye M, Gaser C (2008) Template-O-Matic: a toolbox for creating customized pediatric templates. Neuroimage 41(3):903–913CrossRefPubMed
48.
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):273–289CrossRefPubMed 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):273–289CrossRefPubMed
49.
Zurück zum Zitat Maldjian JA, Laurienti PJ, Burdette JH (2004) Precentral gyrus discrepancy in electronic versions of the Talairach atlas. Neuroimage 21(1):450–455CrossRefPubMed Maldjian JA, Laurienti PJ, Burdette JH (2004) Precentral gyrus discrepancy in electronic versions of the Talairach atlas. Neuroimage 21(1):450–455CrossRefPubMed
50.
Zurück zum Zitat Maldjian JA, Laurienti PJ, Kraft RA, Burdette JH (2003) An automated method for neuroanatomic and cytoarchitectonic atlas-based interrogation of fMRI data sets. Neuroimage 19(3):1233–1239CrossRefPubMed Maldjian JA, Laurienti PJ, Kraft RA, Burdette JH (2003) An automated method for neuroanatomic and cytoarchitectonic atlas-based interrogation of fMRI data sets. Neuroimage 19(3):1233–1239CrossRefPubMed
51.
Zurück zum Zitat Nakao T, Radua J, Rubia K, Mataix-Cols D (2011) Gray matter volume abnormalities in ADHD: voxel-based meta-analysis exploring the effects of age and stimulant medication. Perspectives 168(11):1154–1163 Nakao T, Radua J, Rubia K, Mataix-Cols D (2011) Gray matter volume abnormalities in ADHD: voxel-based meta-analysis exploring the effects of age and stimulant medication. Perspectives 168(11):1154–1163
52.
Zurück zum Zitat Carmona S, Vilarroya O, Bielsa A, Tremols V, Soliva J, Rovira M, Tomas J, Raheb C, Gispert J, Batlle S (2005) Global and regional gray matter reductions in ADHD: a voxel-based morphometric study. Neuroscience Letters 389(2):88–93CrossRefPubMed Carmona S, Vilarroya O, Bielsa A, Tremols V, Soliva J, Rovira M, Tomas J, Raheb C, Gispert J, Batlle S (2005) Global and regional gray matter reductions in ADHD: a voxel-based morphometric study. Neuroscience Letters 389(2):88–93CrossRefPubMed
53.
Zurück zum Zitat Bora E, Fornito A, Pantelis C, Yücel M (2012) Gray matter abnormalities in major depressive disorder: a meta-analysis of voxel based morphometry studies. J Affect Disord 138(1):9–18CrossRefPubMed Bora E, Fornito A, Pantelis C, Yücel M (2012) Gray matter abnormalities in major depressive disorder: a meta-analysis of voxel based morphometry studies. J Affect Disord 138(1):9–18CrossRefPubMed
54.
Zurück zum Zitat Vasic N, Walter H, Höse A, Wolf RC (2008) Gray matter reduction associated with psychopathology and cognitive dysfunction in unipolar depression: a voxel-based morphometry study. J Affect Disord 109(1):107–116CrossRefPubMed Vasic N, Walter H, Höse A, Wolf RC (2008) Gray matter reduction associated with psychopathology and cognitive dysfunction in unipolar depression: a voxel-based morphometry study. J Affect Disord 109(1):107–116CrossRefPubMed
55.
Zurück zum Zitat Radua J, van den Heuvel OA, Surguladze S, Mataix-Cols D (2010) Meta-analytical comparison of voxel-based morphometry studies in obsessive-compulsive disorder vs other anxiety disorders. Arch Gen Psychiatry 67(7):701–711CrossRefPubMed Radua J, van den Heuvel OA, Surguladze S, Mataix-Cols D (2010) Meta-analytical comparison of voxel-based morphometry studies in obsessive-compulsive disorder vs other anxiety disorders. Arch Gen Psychiatry 67(7):701–711CrossRefPubMed
56.
Zurück zum Zitat Uchida RR, Del-Ben CM, Busatto GF, Duran FL, Guimarães FS, Crippa JA, Araújo D, Santos AC, Graeff FG (2008) Regional gray matter abnormalities in panic disorder: a voxel-based morphometry study. Psychiatry Res: Neuroimaging 163(1):21–29CrossRefPubMed Uchida RR, Del-Ben CM, Busatto GF, Duran FL, Guimarães FS, Crippa JA, Araújo D, Santos AC, Graeff FG (2008) Regional gray matter abnormalities in panic disorder: a voxel-based morphometry study. Psychiatry Res: Neuroimaging 163(1):21–29CrossRefPubMed
57.
Zurück zum Zitat Ratnanather JT, Cebron S, Ceyhan E, Postell E, Pisano DV, Poynton CB, Crocker B, Honeycutt NA, Mahon PB, Barta PE (2014) Morphometric differences in planum temporale in schizophrenia and bipolar disorder revealed by statistical analysis of labeled cortical depth maps. Front Psychiatry 5(94):1–7 Ratnanather JT, Cebron S, Ceyhan E, Postell E, Pisano DV, Poynton CB, Crocker B, Honeycutt NA, Mahon PB, Barta PE (2014) Morphometric differences in planum temporale in schizophrenia and bipolar disorder revealed by statistical analysis of labeled cortical depth maps. Front Psychiatry 5(94):1–7
60.
Zurück zum Zitat Griffiths TD, Warren JD (2002) The planum temporale as a computational hub. Trends Neurosci 25(7):348–353CrossRefPubMed Griffiths TD, Warren JD (2002) The planum temporale as a computational hub. Trends Neurosci 25(7):348–353CrossRefPubMed
62.
63.
Zurück zum Zitat Ladouceur CD, Diwadkar VA, White R, Bass J, Birmaher B, Axelson DA, Phillips ML (2013) Fronto-limbic function in unaffected offspring at familial risk for bipolar disorder during an emotional working memory paradigm. Dev Cognit Neurosci 5:185–196. doi:10.1016/j.dcn.2013.03.004 CrossRef Ladouceur CD, Diwadkar VA, White R, Bass J, Birmaher B, Axelson DA, Phillips ML (2013) Fronto-limbic function in unaffected offspring at familial risk for bipolar disorder during an emotional working memory paradigm. Dev Cognit Neurosci 5:185–196. doi:10.​1016/​j.​dcn.​2013.​03.​004 CrossRef
64.
Zurück zum Zitat Kim P, Jenkins SE, Connolly ME, Deveney CM, Fromm SJ, Brotman MA, Nelson EE, Pine DS, Leibenluft E (2012) Neural correlates of cognitive flexibility in children at risk for bipolar disorder. J Psychiatr Res 46(1):22–30CrossRefPubMed Kim P, Jenkins SE, Connolly ME, Deveney CM, Fromm SJ, Brotman MA, Nelson EE, Pine DS, Leibenluft E (2012) Neural correlates of cognitive flexibility in children at risk for bipolar disorder. J Psychiatr Res 46(1):22–30CrossRefPubMed
65.
Zurück zum Zitat Thermenos HW, Goldstein JM, Milanovic SM, Whitfield-Gabrieli S, Makris N, LaViolette P, Koch JK, Faraone SV, Tsuang MT, Buka SL (2010) An fMRI study of working memory in persons with bipolar disorder or at genetic risk for bipolar disorder. Am J Med Genet Part B: Neuropsychiatr Genet 153(1):120–131 Thermenos HW, Goldstein JM, Milanovic SM, Whitfield-Gabrieli S, Makris N, LaViolette P, Koch JK, Faraone SV, Tsuang MT, Buka SL (2010) An fMRI study of working memory in persons with bipolar disorder or at genetic risk for bipolar disorder. Am J Med Genet Part B: Neuropsychiatr Genet 153(1):120–131
66.
Zurück zum Zitat Roberts G, Green MJ, Breakspear M, McCormack C, Frankland A, Wright A, Levy F, Lenroot R, Chan HN, Mitchell PB (2013) Reduced inferior frontal gyrus activation during response inhibition to emotional stimuli in youth at high risk of bipolar disorder. Biol Psychiatry 74(1):55–61CrossRefPubMed Roberts G, Green MJ, Breakspear M, McCormack C, Frankland A, Wright A, Levy F, Lenroot R, Chan HN, Mitchell PB (2013) Reduced inferior frontal gyrus activation during response inhibition to emotional stimuli in youth at high risk of bipolar disorder. Biol Psychiatry 74(1):55–61CrossRefPubMed
67.
Zurück zum Zitat Whalley HC, Sussmann JE, Romaniuk L, Stewart T (2013) Prediction of depression in individuals at high familial risk of mood disorders using functional magnetic resonance imaging. PLoS One 8(3):e57357–e57365CrossRefPubMedPubMedCentral Whalley HC, Sussmann JE, Romaniuk L, Stewart T (2013) Prediction of depression in individuals at high familial risk of mood disorders using functional magnetic resonance imaging. PLoS One 8(3):e57357–e57365CrossRefPubMedPubMedCentral
70.
Zurück zum Zitat Gogtay N, Giedd JN, Lusk L, Hayashi KM, Greenstein D, Vaituzis AC, Nugent TF, Herman DH, Clasen LS, Toga AW (2004) Dynamic mapping of human cortical development during childhood through early adulthood. Proc Natl Acad Sci USA 101(21):8174–8179CrossRefPubMedPubMedCentral Gogtay N, Giedd JN, Lusk L, Hayashi KM, Greenstein D, Vaituzis AC, Nugent TF, Herman DH, Clasen LS, Toga AW (2004) Dynamic mapping of human cortical development during childhood through early adulthood. Proc Natl Acad Sci USA 101(21):8174–8179CrossRefPubMedPubMedCentral
71.
Zurück zum Zitat Paus T, Keshavan M, Giedd JN (2008) Why do many psychiatric disorders emerge during adolescence? Nat Rev Neurosci 9(12):947–957PubMedPubMedCentral Paus T, Keshavan M, Giedd JN (2008) Why do many psychiatric disorders emerge during adolescence? Nat Rev Neurosci 9(12):947–957PubMedPubMedCentral
72.
Zurück zum Zitat Sowell ER, Peterson BS, Thompson PM, Welcome SE, Henkenius AL, Toga AW (2003) Mapping cortical change across the human life span. Nat Neurosci 6(3):309–315CrossRefPubMed Sowell ER, Peterson BS, Thompson PM, Welcome SE, Henkenius AL, Toga AW (2003) Mapping cortical change across the human life span. Nat Neurosci 6(3):309–315CrossRefPubMed
73.
Zurück zum Zitat Huttenlocher PR (1990) Morphometric study of human cerebral cortex development. Neuropsychologia 28(6):517–527CrossRefPubMed Huttenlocher PR (1990) Morphometric study of human cerebral cortex development. Neuropsychologia 28(6):517–527CrossRefPubMed
74.
Zurück zum Zitat Lemaitre H, Goldman AL, Sambataro F, Verchinski BA, Meyer-Lindenberg A, Weinberger DR, Mattay VS (2012) Normal age-related brain morphometric changes: nonuniformity across cortical thickness, surface area and gray matter volume? Neurobiol Aging 33(3):617.e611–617.e619CrossRef Lemaitre H, Goldman AL, Sambataro F, Verchinski BA, Meyer-Lindenberg A, Weinberger DR, Mattay VS (2012) Normal age-related brain morphometric changes: nonuniformity across cortical thickness, surface area and gray matter volume? Neurobiol Aging 33(3):617.e611–617.e619CrossRef
75.
Zurück zum Zitat Gogtay N, Thompson PM (2010) Mapping gray matter development: implications for typical development and vulnerability to psychopathology. Brain Cognit 72(1):6–15CrossRef Gogtay N, Thompson PM (2010) Mapping gray matter development: implications for typical development and vulnerability to psychopathology. Brain Cognit 72(1):6–15CrossRef
Metadaten
Titel
Gray matter volumes in symptomatic and asymptomatic offspring of parents diagnosed with bipolar disorder
verfasst von
Lindsay C. Hanford
Geoffrey B. Hall
Luciano Minuzzi
Roberto B. Sassi
Publikationsdatum
14.01.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
European Child & Adolescent Psychiatry / Ausgabe 9/2016
Print ISSN: 1018-8827
Elektronische ISSN: 1435-165X
DOI
https://doi.org/10.1007/s00787-015-0809-y

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