医学
脊髓损伤
脊髓
微刺激
后肢
运动功能
芯(光纤)
解剖
刺激
麻醉
物理医学与康复
内科学
精神科
复合材料
材料科学
作者
Xiaoyan Shen,Chunling Tao,Lei Ma,Jiahuan Shen,Zhiling Li,Zhigong Wang,Xiaoying Lü
标识
DOI:10.4103/1673-5374.293158
摘要
Functional electrical stimulation is an effective way to rebuild hindlimb motor function after spinal cord injury. However, no site map exists to serve as a reference for implanting stimulator electrodes. In this study, rat models of thoracic spinal nerve 9 contusion were established by a heavy-impact method and rat models of T6/8/9 spinal cord injury were established by a transection method. Intraspinal microstimulation was performed to record motion types, site coordinates, and threshold currents induced by stimulation. After transection (complete injury), the core region of hip flexion migrated from the T13 to T12 vertebral segment, and the core region of hip extension migrated from the L1 to T13 vertebral segment. Migration was affected by post-transection time, but not transection segment. Moreover, the longer the post-transection time, the longer the distance of migration. This study provides a reference for spinal electrode implantation after spinal cord injury. This study was approved by the Institutional Animal Care and Use Committee of Nantong University, China (approval No. 20190225-008) on February 26, 2019.
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