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首页> 外文期刊>Journal of Neuroscience Methods >Evaluation of functional nerve recovery with Visual-SSI-A novel computerized approach for the assessment of the static sciatic index (SSI).
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Evaluation of functional nerve recovery with Visual-SSI-A novel computerized approach for the assessment of the static sciatic index (SSI).

机译:使用Visual-SSI-一种评估静态坐骨神经指数(SSI)的新型计算机化方法,对功能神经恢复进行评估。

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摘要

Complete nerve transection (neurotmesis) of the rat sciatic nerve is a well-established animal model. The most frequently used behavioural for evaluation of neurotmesis-induced deficits is the walking track analysis with calculation of the sciatic functional index (SFI). More recently, the static sciatic index (SSI) has been developed, which shows a good correlation with the SFI. However, despite all advantages (high accessibility, easy handling, high accuracy, cost-effectiveness), the SSI is still not widely used. We, therefore, developed a novel programme ("Visual-SSI"), which will be made freely available for the assessment of the SSI. As gold-standard for the treatment of neurotmesis-induced nerve gaps, autologous nerve transplantation studies in the rat sciatic nerve model (n=16 [6 weeks], n=8 [12 weeks]) were carried out to test the effectiveness and feasibility of the Visual-SSI software. We observed a significant recovery starting from the pre-operative condition over the 3rd, 6th, 9th weeks until the 12th week after surgery (p<0.05). Theoretically, the SSI can be calculated from both rearing and normal standing position of the rats and we investigated whether the SSI is affected differentially by these positions. We observed no significant differences between animals in a rearing and normal standing stance (p>0.05). The present method combines efficiency (simplicity of use, rapid and economical setup) with accurate and precise quantification of the functional regeneration in the sciatic nerve lesion model of the rat.
机译:大鼠坐骨神经的完全神经横切(neurotmesis)是公认的动物模型。评价坐骨神经功能缺损最常用的行为是步行曲线分析,并计算坐骨神经功能指数(SFI)。最近,已经开发了静态坐骨神经指数(SSI),它显示出与SFI的良好相关性。但是,尽管具有所有优点(可访问性高,易于处理,精度高,成本效益高),但SSI仍未得到广泛使用。因此,我们开发了一种新颖的程序(“ Visual-SSI”),该程序将免费提供给SSI评估。作为治疗神经性痉挛引起的神经间隙的金标准,在大鼠坐骨神经模型(n = 16 [6周],n = 8 [12周])中进行了自体神经移植研究,以验证其有效性和可行性。 Visual-SSI软件。我们观察到从术前第3,第6,第9周到术后第12周,患者的病情明显恢复(p <0.05)。从理论上讲,可以通过大鼠的站立和正常站立位置来计算SSI,我们研究了这些位置是否会影响SSI。我们观察到在饲养和正常站立状态下动物之间没有显着差异(p> 0.05)。本方法结合了效率(使用的简便性,快速和经济的设置)与大鼠坐骨神经损伤模型中功能再生的准确和精确的量化。

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