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Effect of seat orientation on ingress/egress joint kinematics and reach envelope

机译:座椅方向对进/出关节运动学和伸展范围的影响

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BACKGROUND: Little is known about ingress/egress requirements and forward reach for workstations with horizontal seats. This research explored differences between ingress/egress kinematics and reach due to seat orientation. METHODS: 10 participants performed ingress/egress tasks using three seat orientations (horizontal with 90° and 120° seat angles, and vertical with 90° seat angle) and planar reach tasks in three anatomical planes using horizontal and vertical seats with 90° seat angle. An optical motion capture system was used to record kinematic data. Marker data was processed and modeled to estimate peak joint angles and ranges of motion of several body joints. For reach tasks, marker data of the clavicle and finger were used to plot reach capacity. RESULTS: Ingress/egress joint kinematics differed greatly between horizontal and vertical seats, while few differences existed between the horizontal seat orientations. Peak angles and ranges of motion during ingress/egress of the horizontal seats were significantly higher than the vertical seats, often by a factor of 3-4. The direction of motion affected several peak angles and ranges of motion, but to a lesser extent than seat orientation. Reach was unaffected by seat orientation. CONCLUSION: This study's findings suggest that ingress/egress of horizontal seats is more stressful for the body, especially the shoulders and lower back, than regular upright seats.
机译:背景技术:对于具有水平座椅的工作站的进出要求和前伸范围知之甚少。这项研究探索了进/出运动学和到达范围之间的差异,这取决于座椅的方向。方法:10位参与者使用三个座椅方向(水平90°和120°座椅角度,垂直90°座椅角度)执行进/出任务,并在三个解剖平面中使用90°座椅角度的水平和垂直座椅执行平面进近任务。光学运动捕捉系统用于记录运动数据。对标记数据进行处理和建模,以估计峰值关节角度和几个身体关节的运动范围。对于到达任务,使用锁骨和手指的标记数据来绘制到达能力。结果:水平和垂直座椅之间的进/出关节运动学差异很大,而水平座椅方向之间几乎没有差异。水平座椅进/出期间的峰值角度和运动范围显着高于垂直座椅,通常高出3-4倍。运动方向影响几个峰值角度和运动范围,但程度比座椅方向小。到达范围不受座位方向的影响。结论:这项研究的结果表明,水平座位的进/出比常规的直立座位对身体的压力更大,尤其是肩膀和下背部。

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