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Novel Use of Retro-reflective Paint to Capture 3D Kinematic Gait Data in Non-human Primates

机译:逆向反射涂料在非人类灵长类动物中捕获3D运动步态数据的新颖用途

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Non-human primate models are extensively being used to study and understand biomechanical mechanisms of various neuro-motor pathological conditions such as Parkinson's disease. However, collecting full body 3D kinematics using current technologies for obtaining reliable objective biomechanical measures to precisely characterize gait mechanics in non-cooperating primates is laborious and daunting task. We developed a method to reduce data collection and analyses time by using retro-reflective paint, a mixture of reflective powder and petroleum jelly that was applied directly on the primate's skin. 3D kinematic data from three treadmill walking female rhesus primates (one normal and two MPTP treated) was collected using a four infrared camera system. Bilateral joint angle trajectories of hip, knee, ankle, shoulder and elbow for normal primate show 180 degrees out of phase. Step cycle duration and percentage stance are significantly different between the normal (F(9,62)=128.2) and MPTP (F(9,62)=143.1) treated primates. Step cycle duration between forelimb and hindlimb is not significantly different in all primates. However, percentage stance in less affected limbs of both MPTP treated primates is significantly higher in forelimb than hindlimb. Gait pattern of normal primate is diagonal symmetrical gait, one MPTP treated primate showed lateral symmetrical gait and other showed a non-standard gait pattern.
机译:非人类灵长类动物模型被广泛用于研究和理解各种神经运动病理状况(如帕金森氏病)的生物力学机制。但是,使用当前技术收集全身3D运动学以获得可靠的客观生物力学措施,以准确地表征非合作灵长类动物的步态力学是一项艰巨而艰巨的任务。我们开发了一种方法,通过使用后向反光涂料(一种将反射性粉末和凡士林的混合物直接涂在灵长类动物的皮肤上)来减少数据收集并分析时间。使用四台红外摄像系统收集了来自三个跑步机上行走的雌性恒河猴的3D运动数据(一个正常,两个MPTP处理)。正常灵长类动物的髋部,膝盖,踝部,肩膀和肘部的双侧关节角度轨迹显示180度异相。正常(F(9,62)= 128.2)和MPTP(F(9,62)= 143.1)处理的灵长类动物之间的步周期持续时间和姿态百分比显着不同。在所有灵长类动物中,前肢和后肢之间的步周期持续时间没有显着差异。但是,MPTP处理过的两种灵长类动物的受影响较小的肢体中,前肢的百分率明显高于后肢。正常灵长类动物的步态模式是对角对称步态,一种经MPTP处理的灵长类动物表现出侧向对称步态,另一种表现出非标准步态模式。

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