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Biomechanical analysis of the propulsion of the manual wheelchair in patients with spinal cord injury

机译:脊髓损伤患者手动轮椅推进的生物力学分析

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Manual wheelchair Users (MWU) may develop injuries due to mechanical stress caused by propulsion. The technique they used to propel the wheelchair increases the risk, this can be explained because the overuse of the anterior muscles of the joint respect to posterior muscles, generates muscle imbalance [1]. It takes little importance in the technique to propel, and there are no technologies to measure the propulsion available in all hospitals. In the present project a wheelchair ergometer and a 17 rotational degrees of freedom (DOF) biomechanical model were developed to allocate the kinematic parameters to the subject during propulsion, this DOF are associated to shoulder, elbow and wrist joints using seven MTx sensors from Xsens Technologies, each of them associated to a determined anatomic segment. A visual live feedback virtual interface was developed using Visual C++ to create a 3D skeletal model associated to the movement of each anatomic segment, furthermore angle, velocity and acceleration graphics were generated for each joint movement.
机译:手动轮椅使用者(MWU)可能会由于推进力引起的机械应力而受伤。他们用来推动轮椅的技术增加了患病风险,这可以解释为因为关节的前部肌肉相对于后部肌肉的过度使用会产生肌肉失衡[1]。推进技术的重要性不高,并且所有医院都没有测量推进力的技术。在本项目中,开发了轮椅测功计和17个旋转自由度(DOF)生物力学模型,以在推进过程中将运动学参数分配给受试者,该DOF使用Xsens Technologies的七个MTx传感器与肩,肘和腕关节相关联,每个都与确定的解剖段相关。使用Visual C ++开发了视觉实时反馈虚拟界面,以创建与每个解剖段的运动相关的3D骨骼模型,此外,还为每个关节运动生成了角度,速度和加速度图形。

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