Sciatic nerve injury is a prevalent traumatic condition that significantly impacts a patient's quality of life. The sciatic nerve compression injury model is among the most commonly utilized models for investigating nerve repair and regeneration. Within this context, the degree III sciatic nerve injury model is frequently employed in scientific research due to its clinical relevance and its suitability for studies focused on functional recovery. However, a standardized approach for accurately assessing the success of constructing the degree III sciatic nerve injury model remains lacking. Traditional macroscopic observation methods exhibit limitations, whereas neurophysiological testing serves as a highly sensitive and objective evaluation technique that can directly reflect changes in nerve conduction function, thus providing reliable quantitative evidence for the successful establishment of the model. This study aims to offer a comprehensive description of the application of neurophysiological techniques in evaluating the construction of the degree III sciatic nerve injury model, thereby ensuring the success of model preparation. Key features ⢠Precisely simulate a degree III sciatic nerve injury. ⢠Conduct neurophysiological tests on the sciatic nerve 30 min after the injury. ⢠Use neurophysiological techniques to improve the accuracy and repeatability of scientific study results.
Electrophysiological Evaluation of a Sciatic Nerve Degree III Injury Model in Rats.
大鼠坐骨神经III度损伤模型的电生理评价
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作者:Chen Linyu, Wang Ziyi, Wang Chengyao, Ma Ning, Zhao Weiqin, Liu Shuang, Lu Jiajun, Zhao Boyuan, Sun Hong, Che Pengcheng, Dou Na
| 期刊: | Bio-protocol | 影响因子: | 1.100 |
| 时间: | 2025 | 起止号: | 2025 May 20; 15(10):e5311 |
| doi: | 10.21769/BioProtoc.5311 | 种属: | Rat |
| 研究方向: | 神经科学 | ||
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