[en] OBJECTIVE: Several lines of evidence indicate that white matter integrity is compromised in bipolar disorder, but the nature, extent, and biological causes remain elusive. To determine the extent to which white matter deficits in bipolar disorder are familial, the authors investigated white matter integrity in a large sample of bipolar patients, unaffected siblings, and healthy comparison subjects. METHOD: The authors collected diffusion imaging data for 64 adult bipolar patients, 60 unaffected siblings (including 54 discordant sibling pairs), and 46 demographically matched comparison subjects. Fractional anisotropy was compared between the groups using voxel-wise tract-based spatial statistics and by extracting mean fractional anisotropy from 10 regions of interest. Additionally, intraclass correlation coefficients were calculated between the sibling pairs as an index of familiality. RESULTS: Widespread fractional anisotropy reductions in bipolar patients (>40,000 voxels) and more subtle reductions in their siblings, mainly restricted to the corpus callosum, posterior thalamic radiations, and left superior longitudinal fasciculus (>2,000 voxels) were observed. Similarly, region-of-interest analysis revealed significant reductions in most white matter regions in patients. In siblings, fractional anisotropy in the posterior thalamic radiation and the forceps was nominally reduced. Significant between-sibling correlations were found for mean fractional anisotropy across the tract-based spatial statistic skeleton, within significant clusters, and within nearly all regions of interest. CONCLUSIONS: These findings emphasize the relevance of white matter to neuropathology and familiality of bipolar disorder and encourage further use of white matter integrity markers as endophenotypes in genetic studies.
Vostrikov VM, Uranova NA, Orlovskaya DD: Deficit of perineuronal oligodendrocytes in the prefrontal cortex in schizophrenia and mood disorders. Schizophr Res 2007;94:273-280
Regenold WT, Phatak P, Marano CM, Gearhart L, Viens CH, Hisley KC: Myelin staining of deep white matter in the dorsolateral prefrontal cortex in schizophrenia, bipolar disorder, and unipolar major depression. Psychiatry Res 2007;151:179-188
Tkachev D, Mimmack ML, Ryan MM, Wayland M, Freeman T, Jones PB, Starkey M, Webster MJ, Yolken RH, Bahn S: Oligodendrocyte dysfunction in schizophrenia and bipolar disorder. Lancet 2003;362:798-805
Mahon K, Burdick KE, Szeszko PR: A role for white matter abnormalities in the pathophysiology of bipolar disorder. Neurosci Biobehav Rev 2010;34:533-554
Li J, Li X-Y, Feng D-F, Gu L: Quantitative evaluation of microscopic injury with diffusion tensor imaging in a rat model of diffuse axonal injury. Eur J Neurosci 2011;33:933-945
Schmierer K, Wheeler-Kingshott C A M, Boulby PA, Scaravilli F, Altmann DR, Barker GJ, Tofts PS, Miller DH: Diffusion tensor imaging of post mortem multiple sclerosis brain. Neuroimage 2007;35:467-477
Vederine F-E, Wessa M, Leboyer M, Houenou J: A meta-analysis of whole-brain diffusion tensor imaging studies in bipolar disorder. Prog Neuropsychopharmacol Biol Psychiatry 2011;35:1820-1826
Gottesman II, Gould TD: The endophenotype concept in psychiatry: etymology and strategic intentions. Am J Psychiatry 2003;160:636-645
Kochunov P, Glahn DC, Lancaster JL, Winkler AM, Smith S, Thompson PM, Almasy L, Duggirala R, Fox PT, Blangero J: Genetics of microstructure of cerebral white matter using diffusion tensor imaging. Neuroimage 2010;53:1109-1116
Chiang M-C, McMahon KL, De Zubicaray GI, Martin NG, Hickie I, Toga AW, Wright MJ, Thompson PM: Genetics of white matter development: a DTI study of 705 twins and their siblings aged 12 to 29. Neuroimage 2011;54:2308-2317
Frazier JA, Breeze JL, Papadimitriou G, Kennedy DN, Hodge SM, Moore CM, Howard JD, Rohan MP, Caviness VS, Makris N: White matter abnormalities in children with and at risk for bipolar disorder. Bipolar Disord 2007;9:799-809
Chaddock CA, Barker GJ, Marshall N, Schulze K, Hall MH, Fern A, Walshe M, Bramon E, Chitnis XA, Murray R, McDonald C: White matter microstructural impairments and genetic liability to familial bipolar I disorder. Br J Psychiatry 2009;194:527-534
Versace A, Ladouceur CD, Romero S, Birmaher B, Axelson DA, Kupfer DJ, Phillips ML: Altered development of white matter in youth at high familial risk for bipolar disorder: a diffusion tensor imaging study. J Am Acad Child Adolesc Psychiatry 2010;49:1249-1259, 1259.e1
Mahon K, Burdick KE, Ikuta T, Braga RJ, Gruner P, Malhotra AK, Szeszko PR: Abnormal temporal lobe white matter as a biomarker for genetic risk of bipolar disorder. Biol Psychiatry 2013;73:177-182
Sprooten E, Sussmann JE, Clugston A, Peel A, McKirdy J, Moorhead T W J, Anderson S, Shand AJ, Giles S, Bastin ME, Hall J, Johnstone EC, Lawrie SM, McIntosh AM: White matter integrity in individuals at high genetic risk of bipolar disorder. Biol Psychiatry 2011;70:350-356
Pearlson GD, Wong DF, Tune LE, Ross CA, Chase GA, Links JM, Dannals RF, Wilson AA, Ravert HT, Wagner HN Jr, De Paulo JR: In vivo D2 dopamine receptor density in psychotic and nonpsychotic patients with bipolar disorder. Arch Gen Psychiatry 1995;52:471-477
Strasser HC, Lilyestrom J, Ashby ER, Honeycutt NA, Schretlen DJ, Pulver AE, Hopkins RO, Depaulo JR, Potash JB, Schweizer B, Yates KO, Kurian E, Barta PE, Pearlson GD: Hippocampal and ventricular volumes in psychotic and nonpsychotic bipolar patients compared with schizophrenia patients and community control subjects: a pilot study. Biol Psychiatry 2005;57:633-639
Anticevic A, Brumbaugh MS, Winkler AM, Lombardo LE, Barrett J, Corlett PR, Kober H, Gruber J, Repovs G, Cole MW, Krystal JH, Pearlson GD, Glahn DC: Global prefrontal and fronto-amygdala dysconnectivity in bipolar I disorder with psychosis history. Biol Psychiatry 2013;73:565-573
Glahn DC, Bearden CE, Barguil M, Barrett J, Reichenberg A, Bowden CL, Soares JC, Velligan DI: The neurocognitive signature of psychotic bipolar disorder. Biol Psychiatry 2007;62:910-916
First MB, Spitzer RL, Gibbon M, Williams J B W: Structured Clinical Interview for DSM-IV-TR Axis I Disorders. New York, Biometrics Research, New York State Psychiatric Institute, 2002
Wechsler D: Wechsler Abbreviated Scale of Intelligence. San Antonio, Psychological Corporation, 1999
Hamilton M: Development of a rating scale for primary depressive illness. Br J Soc Clin Psychol 1967;6:278-296
Young RC, Biggs JT, Ziegler VE, Meyer DA: A rating scale for mania: reliability, validity and sensitivity. Br J Psychiatry 1978;133:429-435
Ventura J, Green MF, Shaner A, Liberman RP: Training and quality assurance with the Brief Psychiatric Rating Scale: "the drift busters." Int J Methods Psychiatr Res 1993;3:221-244
Levinson DF, Mowry BJ, Escamilla MA, Faraone SV: The Lifetime Dimensions of Psychosis Scale (LDPS): description and interrater reliability. Schizophr Bull 2002;28:683-695
Smith SM, Jenkinson M, Johansen-Berg H, Rueckert D, Nichols TE, Mackay CE, Watkins KE, Ciccarelli O, Cader MZ, Matthews PM, Behrens T E J: Tract-based spatial statistics: voxelwise analysis of multi-subject diffusion data. Neuroimage 2006;31:1487-1505
Smith SM, Nichols TE: Threshold-free cluster enhancement: addressing problems of smoothing, threshold dependence, and localization in cluster inference. Neuroimage 2009;44:83-98
Mori S, Faria AV, Van Zijl P C M, Oishi K: MRI Atlas of Human White Matter, 2nd ed. Amsterdam, Elsevier/Academic Press, 2011
Wakana S, Caprihan A, Panzenboeck MM, Fallon JH, Perry M, Gollub RL, Hua K, Zhang J, Jiang H, Dubey P, Blitz A, Van Zijl P, Mori S: Reproducibility of quantitative tractography methods applied to cerebral white matter. Neuroimage 2007;36:630-644
Huang L, Wang X, Baliki MN, Wang L, Apkarian AV, Parrish TB: Reproducibility of structural, resting-state BOLD and DTI data between identical scanners. PLoS ONE 2012;7:e47684
Strakowski SM, Delbello MP, Adler CM: The functional neuroanatomy of bipolar disorder: a review of neuroimaging findings. Mol Psychiatry 2005;10:105-116
Lebel C, Walker L, Leemans A, Phillips L, Beaulieu C: Microstructural maturation of the human brain from childhood to adulthood. Neuroimage 2008;40:1044-1055
Sprooten E, Fleming KM, Thomson PA, Bastin ME, Whalley HC, Hall J, Sussmann JE, McKirdy J, Blackwood D, Lawrie SM, McIntosh AM: White matter integrity as an intermediate phenotype: exploratory genome-wide association analysis in individuals at high risk of bipolar disorder. Psychiatry Res 2013;206:223-231
Van Der Schot AC, Vonk R, Brans R G H, Van Haren N E M, Koolschijn P C M P, Nuboer V, Schnack HG, Van Baal G C M, Boomsma DI, Nolen WA, HulshoffPol HE, Kahn RS: Influence of genes and environment on brain volumes in twin pairs concordant and discordant for bipolar disorder. Arch Gen Psychiatry 2009;66:142-151
Strakowski SM, Adler CM, Almeida J, Altshuler LL, Blumberg HP, Chang KD, Del Bello MP, Frangou S, McIntosh A, Phillips ML, Sussman JE, Townsend JD: The functional neuroanatomy of bipolar disorder: a consensus model. Bipolar Disord 2012;14:313-325
Oldham MC, Konopka G, Iwamoto K, Langfelder P, Kato T, Horvath S, Geschwind DH: Functional organization of the transcriptome in human brain. Nat Neurosci 2008;11:1271-1282
Brambilla P, Glahn DC, Balestrieri M, Soares JC: Magnetic resonance findings in bipolar disorder. Psychiatr Clin North Am 2005;28:443-467
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