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Effects of decompression joint Governor Vessel electro-acupuncture on rats with acute upper cervical spinal cord injury 被引量:8
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作者 Yan-Lei Wang Ying-Na Qi +5 位作者 Wei Wang Chun-Ke Dong Ping Yi Feng Yang Xiang-Sheng Tang Ming-Sheng Tan 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第7期1241-1246,共6页
Decompression is the major therapeutic strategy for acute spinal cord injury,but there is some debate about the time window for decompression following spinal cord injury.An important goal and challenge in the treatme... Decompression is the major therapeutic strategy for acute spinal cord injury,but there is some debate about the time window for decompression following spinal cord injury.An important goal and challenge in the treatment of spinal cord injury is inhibiting or reversing secondary injury.Governor Vessel electroacupuncture can improve symptoms of spinal cord injury by inhibiting cell apoptosis and improving the microenvironment of the injured spinal cord.In this study,Governor Vessel electroacupuncture combined with decompression at different time points was used to treat acute spinal cord injury.The rat models were established by inserting a balloon catheter into the atlanto-occipital space.The upper cervical spinal cord was compressed for 12 or 48 hours prior to decompression.Electroacupuncture was conducted at the acupoints Dazhui(GV14) and Baihui(GV 20)(2 Hz,15 minutes) once a day for 14 consecutive days.Compared with decompression alone,hind limb motor function recovery was superior after decompression for 12 and 48 hours combined with electroacupuncture.However,the recovery of motor function was not significantly different at 14 days after treatment in rats receiving decompression for 12 hours.Platelet-activating factor levels and caspase-9 protein expression were significantly reduced in rats receiving electroacupuncture compared with decompression alone.These findings indicate that compared with decompression alone,Governor Vessel electroacupuncture combined with delayed decompression(48 hours) is more effective in the treatment of upper cervical spinal cord injury.Governor Vessel electroacupuncture combined with early decompression(12 hours) can accelerate the recovery of nerve movement in rats with upper cervical spinal cord injury.Nevertheless,further studies are necessary to confirm whether it is possible to obtain additional benefit compared with early decompression alone. 展开更多
关键词 nerve regeneration acute spinal cord injury decompression Governor Vessel electroacupuncture platelet-activating factor apoptosis methylprednisolone caspase family upper cervical spine animal model Basso Beattie and Bresnahan locomotor scale neural regeneration
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Transfacet approach decompression for thoracic spinal stenosis caused by anterior compression
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作者 熊伟 《外科研究与新技术》 2011年第2期96-97,共2页
Objective To study the efficiacy and safety of transfacet approach decompression to treat thoracic spinal stenosis caused by anterior compression. Methods Thirty-three patients with thoracic spinal stenosis caused by ... Objective To study the efficiacy and safety of transfacet approach decompression to treat thoracic spinal stenosis caused by anterior compression. Methods Thirty-three patients with thoracic spinal stenosis caused by anterior 展开更多
关键词 OPLL JOA Transfacet approach decompression for thoracic spinal stenosis caused by anterior compression OLF
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"Cave-in"technique: 360° circumferential decompression for thoracic spinal stenosis with ossification of posterior longitudinal ligament
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作者 刘晓光 《外科研究与新技术》 2011年第2期99-100,共2页
Objective To investigate the surgical techniqueand efficiency of the "Cave-in" 360° circumferential decompression for thoracic spinal stenosis(TSS)with ossification of posterior longitudinal ligament(OP... Objective To investigate the surgical techniqueand efficiency of the "Cave-in" 360° circumferential decompression for thoracic spinal stenosis(TSS)with ossification of posterior longitudinal ligament(OPLL).Methods From October 2005 to 展开更多
关键词 OPLL Cave-in"technique circumferential decompression for thoracic spinal stenosis with ossification of posterior longitudinal ligament
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