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Validity and reliability of the CatWalk system as a static and dynamic gait analysis tool for the assessment of functional nerve recovery in small animal models

机译:CatWalk系统作为静态和动态步态分析工具,用于评估小动物模型中功能神经恢复的有效性和可靠性

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Abstract Introduction A range of behavioral testing paradigms have been developed for the research of central and peripheral nerve injuries with the help of small animal models. Following any nerve repair strategy, improved functional outcome may be the most important evidence of axon regeneration. A novel automated gait analysis system, the CatWalk ?¢???¢ , can measure dynamic as well as static gait patterns of small animals. Of most interest in detecting functional recovery are in particular dynamic gait parameters, coordination measures, and the intensity of the animals paw prints. This article is designed to lead to a more efficient choice of CatWalk parameters in future studies concerning the functional evaluation of nerve regeneration and simultaneously add to better interstudy comparability. Methods The aims of the present paper are threefold: (1) to describe the functional method of CatWalk gait analysis, (2) to characterize different parameters acquired by CatWalk gait analysis, and to find the most frequently used parameters as well as (3) to compare their reliability and validity throughout the different studies. Results In the reviewed articles, the most frequently used parameters were Swing Duration (30), Print Size (27), Stride Length (26), and Max Contact Area (24). Swing Duration was not only frequently used but was also the most reliable and valid parameter. Therefore, we hypothesize that Swing Duration constitutes an important parameter to be chosen for future studies, as it has the highest level of reliability and validity. Conclusion In conclusion, CatWalk can be used as a complementary approach to other behavioral testing paradigms to assess clinically relevant behavioral benefits, with the main advantage that this system demonstrates both static and dynamic gait parameters at the same time. Due to limited reliability and validity of certain parameters, we recommend that only the most frequently assessed parameters should be used in the future.
机译:摘要简介在小动物模型的帮助下,已经开发出了一系列行为测试范例,用于研究中枢神经和周围神经损伤。遵循任何神经修复策略,改善功能结局可能是轴突再生的最重要证据。一种新颖的自动步态分析系统CatWalk可以测量小型动物的动态和静态步态模式。特别是在检测功能恢复方面最感兴趣的是动态步态参数,协调措施以及动物爪印的强度。本文旨在导致在有关神经再生功能评估的未来研究中更有效地选择CatWalk参数,并同时增加更好的研究间可比性。方法:本文的目的是三方面的:(1)描述CatWalk步态分析的功能方法;(2)表征通过CatWalk步态分析获得的不同参数,找到最常用的参数,以及(3)在不同研究中比较其信度和效度。结果在审阅的文章中,最常用的参数是摆幅持续时间(30),打印尺寸(27),步幅长度(26)和最大接触面积(24)。摇摆持续时间不仅经常使用,而且是最可靠和有效的参数。因此,我们假设摇摆持续时间是未来研究中选择的重要参数,因为它具有最高的可靠性和有效性。结论总之,CatWalk可以用作其他行为测试范式的补充方法,以评估与临床相关的行为收益,其主要优点是该系统可同时显示静态和动态步态参数。由于某些参数的可靠性和有效性有限,我们建议将来仅使用评估最频繁的参数。

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