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Pulsed electrical stimulation protects neurons in the dorsal root and anterior horn of the spinal cord after peripheral nerve injury
Authors:Bao-an Pei  Jin-hua Zi  Li-sheng Wu  Cun-hua Zhang  Yun-zhen Chen
Institution:1.Second Department of Traumatology, Linyi People''s Hospital, Linyi, Shandong Province, China;2.Department of Orthopedics, Qilu Hospital, Shandong University, Jinan, Shandong Province, China
Abstract:Most studies on peripheral nerve injury have focused on repair at the site of injury, but very few have examined the effects of repair strategies on the more proximal neuronal cell bodies. In this study, an approximately 10-mm-long nerve segment from the ischial tuberosity in the rat was transected and its proximal and distal ends were inverted and sutured. The spinal cord was subjected to pulsed electrical stimulation at T10 and L3, at a current of 6.5 m A and a stimulation frequency of 15 Hz, 15 minutes per session, twice a day for 56 days. After pulsed electrical stimulation, the number of neurons in the dorsal root ganglion and anterior horn was increased in rats with sciatic nerve injury. The number of myelinated nerve fibers was increased in the sciatic nerve. The ultrastructure of neurons in the dorsal root ganglion and spinal cord was noticeably improved. Conduction velocity of the sciatic nerve was also increased. These results show that pulsed electrical stimulation protects sensory neurons in the dorsal root ganglia as well as motor neurons in the anterior horn of the spinal cord after peripheral nerve injury, and that it promotes the regeneration of peripheral nerve fibers.
Keywords:nerve regeneration  peripheral nerve  pulsed electrical stimulation  spinal cord  neurons  dorsal root ganglion  nerve conduction  neural regeneration
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