Validity Testing of a Simplistic Design Version of a Kinematic Arm for Postural Measurement of Human Body Segments (May 2017)

Vinod Datir, B. Lahari, V. Kale
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Abstract

In all engineering industries complaints about back pain and low back injuries are very high. Major factor for such back injuries are associated with Load handling tasks. In industries type of such lifting activities in percentage is to extend 77% and bending activity up to 56%.According to US department of labour report back injuries account to be 20% of all injuries and 25% of annual worker compensation goes for such injuries. So one of the important areas of Kinematic And kinetic measurements are useful is load lifting. Different methods have been evolved for carrying out Kinematic measurements, selection depend upon type of study, type of kinematic parameter to obtained merits and demerits of the methods and cost of study. Need of alternative methods which satisfy the study requirements and also compensate the cost leads to a development of "Kinematic Arm” In one of study made by Belli et al(1992) Developed Kinematic arm for three dimensional recording of human movements. They Validate and tested successfully the device. Error values for static quasi-static human motions are less than tracking system and film or video analysis ,Also device is five times cheaper than above two well known methods. Based on the guidelines of study by Belli et al a Kinematic arm has been designed and fabricated for validation testing of positional measurements of human body segments subject to different postures during load lifting. The Kinematic arm consists of four light rigid pipe linked together by three joints. One end of arm is connected to fixed reference point while other end can move freely in the three spatial directions. the free movement is allowed in all spatial directions by orientation of the axes of the three revolute joints. At each joint a potentiometer (multi turn 50 Kilo-ohm) is mounted and connected to an electronic interface to measure the angle between two link elements involved. Three potentiometers are connected in series and fed a constant current from the circuit. Output from potentiometer is amplified and measured and calibrated in terms of angles. Angles a1(t),a2(t),a3(t).measured and by appropriate trigonometric equations can calculate instantaneous position. Equation for velocity and acceleration have been established in order to evaluate the exact performance of kinematic arm for positional measurements Kinematic arm is tested for the static and quasi-static conditions for different body postures successfully. Results obtained are within the range of theoretical estimation of errors.
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一种用于人体部位姿势测量的运动臂简化设计版本的有效性测试(2017年5月)
在所有的工程行业中,对背痛和腰背部损伤的投诉非常高。这类背部损伤的主要因素是与负荷搬运任务有关。在工业中,这种起重活动的百分比为77%,弯曲活动的百分比为56%。根据美国劳工部的报告,背部伤害占所有伤害的20%,每年工伤赔偿的25%用于此类伤害。因此,运动学和动力学测量的一个重要领域是载荷提升。进行运动学测量的不同方法已经发展,选择取决于研究类型,运动学参数的类型,以获得方法的优缺点和研究成本。在Belli等人(1992)的一项研究中,他们开发了一种用于人体运动三维记录的运动臂。他们成功地验证和测试了该设备。静态准静态人体运动的误差值小于跟踪系统和电影或视频分析,而且该设备比上述两种众所周知的方法便宜五倍。根据Belli等人的研究指导,设计并制造了一种运动臂,用于在负载提升过程中不同姿势下人体各部分位置测量的验证测试。运动臂由四个轻刚性管组成,通过三个接头连接在一起。臂的一端与固定参考点相连,另一端在三个空间方向上自由移动。通过三个旋转关节轴的方向,允许在所有空间方向上自由运动。在每个连接处安装一个电位器(多转50千欧姆),并连接到一个电子接口,以测量两个链接元素之间的角度。三个电位器串联起来,从电路中输出恒定电流。电位器的输出被放大,测量和校准角度。角a1 (t), a2 (t) a3 (t)。测量和适当的三角方程可以计算瞬时位置。为了准确评价运动臂的位置测量性能,建立了运动臂的速度和加速度方程,成功地对运动臂进行了不同身体姿态的静态和准静态测试。所得结果在理论估计误差范围内。
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