Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4351384 | Neuroscience Research | 2015 | 10 Pages |
Abstract
Recently, we have developed a new hybrid-rehabilitation combining 5Â Hz repetitive transcranial magnetic stimulation and extensor motor training of the paretic upper-limb for stroke patients with flexor hypertonia. We previously showed that the extensor-specific plastic change in M1 was associated with beneficial effects of our protocol (Koganemaru et al., 2010). Here, we investigated whether extensor-specific multiregional brain reorganization occurred after the hybrid-rehabilitation using functional magnetic resonance imaging. Eleven chronic stroke patients were scanned while performing upper-limb extensor movements. Untrained flexor movements were used as a control condition. The scanning and clinical assessments were done before, immediately and 2 weeks after the hybrid-rehabilitation. As a result, during the trained extensor movements, the imaging analysis showed a significant reduction of brain activity in the ipsilesional sensorimotor cortex, the contralesional cingulate motor cortex and the contralesional premotor cortex in association with functional improvements of the paretic hands. The activation change was not found for the control condition. Our results suggested that use-dependent plasticity induced by repetitive motor training with brain stimulation might be related to task-specific multi-regional brain reorganization. It provides a key to understand why repetitive training of the target action is one of the most powerful rehabilitation strategies to help patients.
Keywords
rTMSmetacarpophalangealMNIFMAFCRPMCMEPMALROIEDCMCPCMCmotor thresholdFugl-Meyer Assessmentmodified Ashworth scaleFunctional MRIAOUMASRepetitive transcranial magnetic stimulationanalysis of varianceANOVAfMRIlong-term potentiationLTPMotor Activity Logflexor carpi radialisROMprimary motor cortexQomPremotor cortexRange of movementregion of interestMotor evoked potentialsMontreal Neurological InstituteQuality of movement
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Authors
Satoko Koganemaru, Nobukatsu Sawamoto, Toshihiko Aso, Akiko Sagara, Tomoko Ikkaku, Kenji Shimada, Madoka Kanematsu, Ryosuke Takahashi, Kazuhisa Domen, Hidenao Fukuyama, Tatsuya Mima,