文献詳細
特集 Voxel-Based Morphometry—体積からわかること
文献概要
自閉スペクトラム症では,社会的コミュニケーションの障害や常同的反復的行動様式などの中核症状が,精神機能の非定型発達として2〜3歳から現れる。背景には脳の非定型発達があると考えられている。先行研究は極めて多く,自閉スペクトラム症当事者と定型発達者をvoxel-based morphometryで比較した研究は,メタ解析だけで10編ほどになる。本論では先行研究における一貫性の乏しさについて考察を加えた。
参考文献
1)Redcay E, Courchesne E: When is the brain enlarged in autism? A meta-analysis of all brain size reports. Biol Psychiatry 58: 1-9, 2005
2)山末英典: Voxel Based Morphometry. 脳科学辞典. https://bsd.neuroinf.jp/wiki/Voxel_Based_Morphometry(2017年3月29日閲覧)
3)Yamasue H, Ishijima M, Abe O, Sasaki T, Yamada H, et al: Neuroanatomy in monozygotic twins with Asperger disorder discordant for comorbid depression. Neurology 65: 491-492, 2005
4)Kosaka H, Omori M, Munesue T, Ishitobi M, Matsumura Y, et al: Smaller insula and inferior frontal volumes in young adults with pervasive developmental disorders. NeuroImage 50: 1357-1363, 2010
5)Radua J, Via E, Catani M, Mataix-Cols D: Voxel-based meta-analysis of regional white-matter volume differences in autism spectrum disorder versus healthy controls. Psychol Med 41: 1539-1550, 2011
6)Via E, Radua J, Cardoner N, Happé F, Mataix-Cols D: Meta-analysis of gray matter abnormalities in autism spectrum disorder: should Asperger disorder be subsumed under a broader umbrella of autistic spectrum disorder? Arch Gen Psychiatry 68: 409-418, 2011
7)Cauda F, Costa T, Palermo S, D'Agata F, Diano M, et al: Concordance of white matter and gray matter abnormalities in autism spectrum disorders: a voxel-based meta-analysis study. Hum Brain Mapp 35: 2073-2098, 2014
8)DeRamus TP, Kana RK: Anatomical likelihood estimation meta-analysis of grey and white matter anomalies in autism spectrum disorders. Neuroimage Clin 7: 525-536, 2015
9)Carlisi CO, Norman LJ, Lukito SS, Radua J, Mataix-Cols D, et al: Comparative multimodal meta-analysis of structural and functional brain abnormalities in autism spectrum disorder and obsessive-compulsive disorder. Biol Psychiatry 2016 Oct 13[Epub ahead of print][doi: 10.1016/j.biopsych.2016.10.006.]
10)Lenroot RK, Gogtay N, Greenstein DK, Wells EM, Wallace GL, et al: Sexual dimorphism of brain developmental trajectories during childhood and adolescence. NeuroImage 36: 1065-1073, 2007
11)Rojas DC, Smith JA, Benkers TL, Camou SL, Reite ML, et al: Hippocampus and amygdala volumes in parents of children with autistic disorder. Am J Psychiatry 161: 2038-2044, 2004
12)Happé F, Ronald A, Plomin R: Time to give up on a single explanation for autism. Nat Neurosci 9: 1218-1220, 2006
13)Yamasue H, Abe O, Suga M, Yamada H, Rogers MA, et al: Sex-linked neuroanatomical basis of human altruistic cooperativeness. Cereb Cortex 18: 2331-2340, 2008
14)Baron-Cohen S: The extreme male brain theory of autism. Trends Cogn Sci 6: 248-254, 2002
15)Yamasaki S, Yamasue H, Abe O, Suga M, Yamada H, et al: Reduced gray matter volume of pars opercularis is associated with impaired social communication in high-functioning autism spectrum disorders. Biol Psychiatry 68: 1141-1147, 2010
16)Yamasue H, Kuwabara H, Kawakubo Y, Kasai K: Oxytocin, sexually dimorphic features of the social brain, and autism. Psychiatry Clin Neurosci 63: 129-140, 2009
17)Inoue H, Yamasue H, Tochigi M, Abe O, Liu X, et al: Association between the oxytocin receptor gene and amygdalar volume in healthy adults. Biol Psychiatry 68: 1066-1072, 2010
18)Yamasue H, Suga M, Yahata N, Inoue H, Tochigi M, et al: Reply to: Neurogenetic effects of OXTR rs2254298 in the extended limbic system of healthy caucasian adults. Biol Psychiatry 70: e41-e42, 2011
19)Furman DJ, Chen MC, Gotlib IH: Variant in oxytocin receptor gene is associated with amygdala volume. Psychoneuroendocrinology 36: 891-897, 2011
20)Saito Y, Suga M, Tochigi M, Abe O, Yahata N, et al: Neural correlate of autistic-like traits and a common allele in the oxytocin receptor gene. Soc Cogn Affect Neurosci 9: 1443-1450, 2014
21)Yamasue H, Yee JR, Hurlemann R, Rilling JK, Chen FS, et al: Integrative approaches utilizing oxytocin to enhance prosocial behavior: from animal and human social behavior to autistic social dysfunction. J Neurosci 32: 14109-14117, 2012
22)Watanabe T, Kuroda M, Kuwabara H, Aoki Y, Iwashiro N, et al: Clinical and neural effects of six-week administration of oxytocin on core symptoms of autism. Brain 138: 3400-3412, 2015
23)Aoki Y, Yahata N, Watanabe T, Takano Y, Kawakubo Y, et al: Oxytocin improves behavioural and neural deficits in inferring others' social emotions in autism. Brain 137: 3073-3086, 2014
24)Aoki Y, Watanabe T, Abe O, Kuwabara H, Yahata N, et al: Oxytocin's neurochemical effects in the medial prefrontal cortex underlie recovery of task-specific brain activity in autism: a randomized controlled trial. Mol Psychiatry 20: 447-453, 2015
25)Watanabe T, Abe O, Kuwabara H, Yahata N, Takano Y, et al: Mitigation of sociocommunicational deficits of autism through oxytocin-induced recovery of medial prefrontal activity: a randomized trial. JAMA Psychiatry 71: 166-175, 2014
26)Yamasue H, Iwanami A, Hirayasu Y, Yamada H, Abe O, et al: Localized volume reduction in prefrontal, temporolimbic, and paralimbic regions in schizophrenia: an MRI parcellation study. Psychiatry Res 131: 195-207, 2004
27)Yamasue H, Kasai K, Iwanami A, Ohtani T, Yamada H, et al: Voxel-based analysis of MRI reveals anterior cingulate gray-matter volume reduction in posttraumatic stress disorder due to terrorism. Proc Natl Acad Sci U S A 100: 9039-9043, 2003
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