Sagittal Plane Kinematic Gait Analysis in C57BL/6 Mice Subjected to MOG35-55 Induced Experimental Autoimmune Encephalomyelitis

实验性自身免疫性脑脊髓炎 运动学 步态 矢状面 物理医学与康复 步态分析 单调的工作 多发性硬化 电动机控制 医学 脚踝 神经科学 心理学 物理疗法 病理 解剖 物理 精神科 经典力学
作者
Maximillian D.J. Fiander,Matthew Chedrawe,Anna-Claire Lamport,Turgay Akay,George S. Robertson
出处
期刊:Journal of Visualized Experiments [MyJOVE]
卷期号: (129) 被引量:7
标识
DOI:10.3791/56032
摘要

Kinematic gait analysis in the sagittal plane has frequently been used to characterize motor deficits in multiple sclerosis (MS). We describe the application of these techniques to identify gait deficits in a mouse model of MS, known as experimental autoimmune encephalomyelitis (EAE). Paralysis and motor deficits in mice subjected to EAE are typically assessed using a clinical scoring scale. However, this scale yields only ordinal data that provides little information about the precise nature of the motor deficits. EAE disease severity has also been assessed by rotarod performance, which provides a measure of general motor coordination. By contrast, kinematic gait analysis of the hind limb in the sagittal plane generates highly precise information about how movement is impaired. To perform this procedure, reflective markers are placed on a hind limb to detect joint movement while a mouse is walking on a treadmill. Motion analysis software is used to measure movement of the markers during walking. Kinematic gait parameters are then derived from the resultant data. We show how these gait parameters can be used to quantify impaired movements of the hip, knee, and ankle joints in EAE. These techniques may be used to better understand disease mechanisms and identify potential treatments for MS and other neurodegenerative disorders that impair mobility.
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