Both projection and commissural pathways are disrupted in individuals with chronic stroke: investigating microstructural white matter correlates of motor recovery

被引:0
作者
Michael R Borich
Cameron Mang
Lara A Boyd
机构
[1] University of British Columbia,Department of Physical Therapy, Faculty of Medicine
[2] University of British Columbia,Brain Research Centre
来源
BMC Neuroscience | / 13卷
关键词
Diffusion tensor imaging; Stroke; Motor recovery; White matter; Integrity; Corpus callosum; Internal capsule;
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[1]  
Gresham GE(1995)Post-stroke rehabilitation - assessment, referral and patient management Am Fam Physician 52 461-470
[2]  
Duncan PW(2010)Motor learning after stroke: is skill acquisition a prerequisite for contralesional neuroplastic change? Neurosci Lett 482 21-25
[3]  
Stason WB(2002)Analysis of fMRI and finger tracking training in subjects with chronic stroke Brain 125 773-788
[4]  
Adams HP(2004)Electrical stimulation driving functional improvements and cortical changes in subjects with stroke Exp Brain Res 154 450-460
[5]  
Adelman AM(2011)Implicit sequence-specific motor learning after subcortical stroke is associated with increased prefrontal brain activations: an fMRI study Hum Brain Mapp 32 290-303
[6]  
Alexander DN(2010)The role of corticospinal tract damage in chronic motor recovery and neurorehabilitation: a pilot study Neurorehabil Neural Repair 24 413-419
[7]  
Bishop DS(2009)Microstructural status of ipsilesional and contralesional corticospinal tract correlates with motor skill in chronic stroke patients Hum Brain Mapp 30 3461-3474
[8]  
Diller L(2007)Functional potential in chronic stroke patients depends on corticospinal tract integrity Brain 130 170-180
[9]  
Donaldson NE(2011)White matter integrity is a stronger predictor of motor function than BOLD response in patients with stroke Neurorehabil Neural Repair 25 275-284
[10]  
Granger CV(2011)Contralesional motor cortex activation depends on ipsilesional corticospinal tract integrity in well-recovered subcortical stroke patients Neurorehabil Neural Repair 26 594-603