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利用直流电场促进脊髓再生。

Using a direct current electrical field to promote spinal-cord regeneration.

作者信息

Shen N J, Wang S C

机构信息

Department of Orthopedics, People's Hospital of Hainan Province, Haikou, China.

出版信息

J Reconstr Microsurg. 1999 Aug;15(6):427-31. doi: 10.1055/s-2007-1000122.

Abstract

The authors used a direct current electrical field to promote spinal-cord regeneration in a canine model. Thirty-two dogs were randomly divided into four groups. Complete spinal-cord injury was induced, and electrical stimulators were then placed in the animals. Group 1 served as controls; Groups 2 to 4 were experimental groups, with varying stimulator voltages: 0V in Group 1, 12V in Groups 2 and 4, and 6V in Group 3, with the stimulator implanted 6 hr after spinal-cord injury in Group 4. Functional, electrophysiologic and morphometric assessments were carried out 1 to 3 months postoperatively. Results showed that spinal-cord function, cortical somatosensory evoked potentials, number of neurons, sectional area of neurons, and Nissl body density in the experimental groups were much better than those in the control group. In addition, all the indices in Group 2 were better than those in Groups 3 and 4. This indicated that direct current electrical stimulation could effectively promote spinal-cord regeneration and functional recovery in this model. The 12V voltage was safe for the animals. The stimulator was not rejected by the host for a relatively long period of time.

摘要

作者使用直流电场促进犬类模型中的脊髓再生。32只狗被随机分为四组。诱导造成完全性脊髓损伤,然后将电刺激器植入动物体内。第1组作为对照组;第2至4组为实验组,刺激器电压各不相同:第1组为0V,第2组和第4组为12V,第3组为6V,第4组在脊髓损伤后6小时植入刺激器。术后1至3个月进行功能、电生理和形态学评估。结果显示,实验组的脊髓功能、皮质体感诱发电位、神经元数量、神经元截面积和尼氏体密度均明显优于对照组。此外,第2组的所有指标均优于第3组和第4组。这表明直流电刺激可有效促进该模型中的脊髓再生和功能恢复。12V的电压对动物是安全的。刺激器在较长一段时间内未被宿主排斥。

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