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The effects of rear-wheel camber on the kinematics of upper extremity during wheelchair propulsion

机译:轮椅推进过程中后轮外倾对上肢运动学的影响

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Background The rear-wheel camber, defined as the inclination of the rear wheels, is usually used in wheelchair sports, but it is becoming increasingly employed in daily propulsion. Although the rear-wheel camber can increase stability, it alters physiological performance during propulsion. The purpose of the study is to investigate the effects of rear-wheel cambers on temporal-spatial parameters, joint angles, and propulsion patterns. Methods Twelve inexperienced subjects (22.3±1.6 yr) participated in the study. None had musculoskeletal disorders in their upper extremities. An eight-camera motion capture system was used to collect the three-dimensional trajectory data of markers attached to the wheelchair-user system during propulsion. All participants propelled the same wheelchair, which had an instrumented wheel with cambers of 0°, 9°, and 15°, respectively, at an average velocity of 1 m/s. Results The results show that the rear-wheel camber significantly affects the average acceleration, maximum end angle, trunk movement, elbow joint movement, wrist joint movement, and propulsion pattern. The effects are especially significant between 0° and 15°. For a 15° camber, the average acceleration and joint peak angles significantly increased (p Conclusions The rear-wheel camber affects propulsion patterns and joint range of motion. When choosing a wheelchair with camber adjustment, the increase of joint movements and the base of support should be taken into consideration.
机译:背景技术后轮外倾角,被定义为后轮的倾斜度,通常用于轮椅运动中,但是在日常推进中越来越多地被采用。尽管后轮外倾角可以增加稳定性,但它会在推进过程中改变生理机能。该研究的目的是研究后轮外倾角对时空参数,关节角度和推进方式的影响。方法12名无经验的受试者(22.3±1.6岁)参加了研究。没有人的上肢有肌肉骨骼疾病。八摄像头运动捕捉系统用于收集推进过程中附着在轮椅使用者系统上的标记的三维轨迹数据。所有参与者都推动了同一个轮椅,该轮椅的仪表轮的外倾角分别为0°,9°和15°,平均速度为1 m / s。结果结果表明,后轮外倾角显着影响平均加速度,最大端角,躯干运动,肘关节运动,腕关节运动和推进方式。在0°和15°之间的影响尤其明显。对于15°的外倾角,平均加速度和关节峰角度显著增加(p结论后轮外倾角影响推进模式和关节的运动范围。当选择与外倾角调整,关节运动的增加和支撑基部的轮椅应该考虑在内。

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