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跑台训练对大鼠神经功能重建模型术后康复效果的影响
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作者 张裕 黄剑平 +4 位作者 汪圆圆 杨子健 杨琳 余永莉 李光林 《遵义医学院学报》 2017年第6期622-625,共4页
目的研究跑台训练对靶向肌肉神经功能重建(TMR)大鼠模型术后康复效果的影响。方法利用SD大鼠建立TMR模型,建模后随机分为两组:TMR组和TMR跑台组。TMR组常规饲养4周,TMR跑台组在建模后第4天开始进行跑台训练10d后常规饲养。两组均于建模... 目的研究跑台训练对靶向肌肉神经功能重建(TMR)大鼠模型术后康复效果的影响。方法利用SD大鼠建立TMR模型,建模后随机分为两组:TMR组和TMR跑台组。TMR组常规饲养4周,TMR跑台组在建模后第4天开始进行跑台训练10d后常规饲养。两组均于建模后4周进行康复评价。通过检测肱二头肌肌张力、计算肌湿重维持率、运动终板染色评价两组的模型术后神经-肌功能重建的效果。结果 (1)TMR跑台组肱二头肌的最大单收缩力(5.14±0.49)g明显高于TMR组最大单收缩力(3.12±0.41)g(P≤0.05);(2)TMR跑台组的肌湿重维持率(0.81±7)%大于TMR组肌湿重维持率(66±9)%(P≤0.05);(3)两组均能染出运动终板,但TMR跑台组运动终板数量(6.09±0.58)个/视野较TMR组数量(3.56±0.42)个/视野多(P≤0.05)。结论跑台训练有利于TMR大鼠模型术后的康复。 展开更多
关键词 靶向神经功能重建 神经-肌功能重建 康复训练
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Neural function rebuilding on different bodies using microelectronic neural bridge technique 被引量:2
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作者 沈晓燕 王志功 +3 位作者 吕晓迎 李文渊 赵鑫泰 黄宗浩 《Journal of Southeast University(English Edition)》 EI CAS 2010年第4期523-527,共5页
A microelectronic circuit is used to regenerate the neural signals between the proximal end and the distal end of an injured nerve.An experimental scheme is designed and carried out to verify the feasibility of the so... A microelectronic circuit is used to regenerate the neural signals between the proximal end and the distal end of an injured nerve.An experimental scheme is designed and carried out to verify the feasibility of the so-called microelectronic neural bridge(MNB).The sciatic signals of the source spinal toad which are evoked by chemical stimuli are used as source signals to stimulate the sciatic of the controlled spinal toad.The sciatic nerve signals of the source spinal toad,the regenerated sciatic signals in the controlled spinal toad,and the resulting electromyography(EMG)signals associated with the gastrocnemius muscle movements of the controlled spinal toad are displayed and recorded by an oscilloscope.By analyzing the coherence between the source sciatic nerve signals and the regenerated sciatic nerve signals and the coherence between the regenerated nerve signals and the EMG signals,it is proved that the regenerated sciatic nerve signals have a relationship with the source sciatic nerve signals and control shrinkage of the leg of the controlled toad. 展开更多
关键词 neural function regeneration electromy-ography(EMG) microelectronic neural bridge coherence function
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