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Gait Kinematic Analysis Evaluates Hindlimb Revascularization

机译:步态运动学分析评估后肢血运重建

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Peripheral arterial occlusive disease is described as vascular disorders associated with ischemia and may be the result of an obstructive vascular process or a lost revascularization response. We have shown that gait locomotion analysis by video filming represents an integrative model for the evaluation of mechanisms involved in the process of ischemia-induced revascularization. However, analysis by this method can be subjective and perception errors may be occurring. We present the optimization of a quantifiable, noninvasive, reproducible method that analyzes ankle kinematics in rats using a two-dimensional digital video system. Gait dynamics were filmed in hindlimb ischemic rats with a high speed digital video camera. Images were collected and analyzed at 125 frames per second. An algorithm using interactive data language (IDL) was devised to assess different parameters. In ischemic rats, stride time and knee joint angle remained altered 10 days post-surgery compared with sham animals. Gait kinematics were outlined in a highly reliable way by this computational analysis and corroborated the notion of hindlimb movement recovery associated with the revascularization process.
机译:外周动脉闭塞性疾病被描述为与缺血相关的血管障碍,并且可能是阻塞性血管过程或失去的血运重建反应的结果。我们已经表明,视频拍摄的步态运动分析代表了评估缺血血管无经过程中涉及的机制的综合模型。然而,通过该方法的分析可以是主观的,并且可能发生感知错误。我们介绍了使用二维数字视频系统在大鼠中分析脚踝运动学的可量化,非侵入性,可再生方法的优化。具有高速数字摄像机的Hindlimb缺血性大鼠的步态动态。收集图像并在每秒125帧分析。设计了使用交互式数据语言(IDL)的算法来评估不同的参数。与假动物相比,在缺血性大鼠中,步伐和膝关节角度仍然改变了10天后的手术后10天。通过该计算分析以高度可靠的方式概述了步态运动学,并证实了与血运重建过程相关的后肢运动恢复的概念。

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