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Updated: Mar 20, 2026

Structured Motor Rehabilitation After Selective Nerve Transfers
Published on: August 15, 2019
Supplementary motor area deactivation impacts the recovery of hand function from severe peripheral nerve injury
Ye-Chen Lu1, Han-Qiu Liu2, Xu-Yun Hua1
1Department of Hand Surgery, Huashan Hospital, Fudan University, Shanghai, China.
Abstract:
Although some patients have successful peripheral nerve regeneration, a poor recovery of hand function often occurs after peripheral nerve injury. It is believed that the capability of brain plasticity is crucial for the recovery of hand function. The supplementary motor area may play a key role in brain remodeling after peripheral nerve injury. In this study, we explored the activation mode of the supplementary motor area during a motor imagery task. We investigated the plasticity of the central nervous system after brachial plexus injury, using the motor imagery task. Results from functional magnetic resonance imaging showed that after brachial plexus injury, the motor imagery task for the affected limbs of the patients triggered no obvious activation of bilateral supplementary motor areas. This result indicates that it is difficult to excite the supplementary motor areas of brachial plexus injury patients during a motor imagery task, thereby impacting brain remodeling. Deactivation of the supplementary motor area is likely to be a serious problem for brachial plexus injury patients in terms of preparing, initiating and executing certain movements, which may be partly responsible for the unsatisfactory clinical recovery of hand function.
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