White matter variability, cognition, and disorders: a systematic review

被引:0
作者
Stephanie J. Forkel
Patrick Friedrich
Michel Thiebaut de Schotten
Henrietta Howells
机构
[1] Sorbonne Universities,Brain Connectivity and Behaviour Laboratory
[2] Institut des Maladies Neurodégénératives-UMR 5293,Groupe d’Imagerie Neurofonctionnelle
[3] CNRS,Department of Neuroimaging, Centre for Neuroimaging Sciences, Institute of Psychiatry, Psychology and Neuroscience
[4] CEA University of Bordeaux,Institute of Neuroscience and Medicine, Brain and Behaviour (INM
[5] King’s College London,7)
[6] Research Centre Jülich,MoCA Lab, Department of Medical Biotechnology and Translational Medicine
[7] University of Milan,undefined
来源
Brain Structure and Function | 2022年 / 227卷
关键词
Variability; Tractography; White matter; Patients; Cognition; Personalized medicine; Biomarker;
D O I
暂无
中图分类号
学科分类号
摘要
Inter-individual differences can inform treatment procedures and—if accounted for—have the potential to significantly improve patient outcomes. However, when studying brain anatomy, these inter-individual variations are commonly unaccounted for, despite reports of differences in gross anatomical features, cross-sectional, and connectional anatomy. Brain connections are essential to facilitate functional organization and, when severed, cause impairments or complete loss of function. Hence, the study of cerebral white matter may be an ideal compromise to capture inter-individual variability in structure and function. We reviewed the wealth of studies that associate cognitive functions and clinical symptoms with individual tracts using diffusion tractography. Our systematic review indicates that tractography has proven to be a sensitive method in neurology, psychiatry, and healthy populations to identify variability and its functional correlates. However, the literature may be biased, as the most commonly studied tracts are not necessarily those with the highest sensitivity to cognitive functions and pathologies. Additionally, the hemisphere of the studied tract is often unreported, thus neglecting functional laterality and asymmetries. Finally, we demonstrate that tracts, as we define them, are not correlated with one, but multiple cognitive domains or pathologies. While our systematic review identified some methodological caveats, it also suggests that tract–function correlations might still be a promising tool in identifying biomarkers for precision medicine. They can characterize variations in brain anatomy, differences in functional organization, and predicts resilience and recovery in patients.
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页码:529 / 544
页数:15
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共 846 条
[31]  
Bürgel U(2011)Altered integrity of Perisylvian language pathways in schizophrenia: relationship to auditory hallucinations Biol Psychiatry 28 715-3841
[32]  
Mohlberg H(2012)Short frontal lobe connections of the human brain Cortex 7 946-1399
[33]  
Uylings H(2017)Short parietal lobe connections of the human and monkey brain Cortex 14 3829-383
[34]  
Zilles K(2007)New morphologic variants of the hand motor cortex as seen with MR imaging in a large study population Am J Neuroradiol 28 1393-2483
[35]  
Andersson JL(2008)Diffusion-based tractography in neurological disorders: concepts, applications, and future developments Lancet Neurol 86 375-443
[36]  
Skare S(2009)Altered connections on the road to psychopathy Mol Psychiatry 25 2464-471
[37]  
Ashburner J(2018)Structural variability across the primate brain: a cross-species comparison Cereb Cortex 32 425-448
[38]  
Assaf Y(2016)Frontotemporal networks and behavioral symptoms in primary progressive aphasia Neurology 34 461-248
[39]  
Johansen-Berg H(2012)Structural human brain networks: hot topics in diffusion tractography Curr Opin Neurol 20 436-2039
[40]  
Thiebaut de Schotten M(2019)Modelling white matter with spherical deconvolution: how and why? NMR Biomed 109 207-84