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A case study of product usability of a pelvic device used by children with neuromotor impairments

机译:患有神经大通障碍儿童使用的盆腔装置的产品可用性的案例研究

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On assistive technology targeted for people with activity limitations and participation, usability issues becomes an essential tool to ensure that the product has the appropriate ergonomics characteristics, in other words, ensure that it fits the specific user's needs. The aim of this study was to analyze the usability of an adaptive seating device for children with neuromotor impairments, by using kinematic indicators of the reaching movement. The study sample consisted of 13 children with associated neurologic conditions. The tests were developed by using a wooden bench height adjustable, integrated with the adaptive seating device under study, and a system to capture three-dimensional image, called Qualisys Track Manager. The following reaching kinematics variables were measured: maximum reaching velocity, movement duration, index of curvature, and unit movements. It was found that the use of the adaptive seating device had a positive impact on upper limb function in children with neuromotor impairments. It was also noticed an improvement in the reaching movement kinematics, which was statistical significant for the index of curvature and unit movements. As main conclusions, it is possible to point out some positive effects that the product under study seems to have on users' movements, such as the improved movement quality of the upper limb, which could mean a better postural adjustments and higher trunk postural control. By identifying new measures of usability in terms of effectiveness and efficiency for the analyzeddevice, the results obtained may serve also as performance indicators, providing new data that may help to improve the product and eventually modifying it, in order to turn it more compatible with the needs of the considered target population.
机译:在针对活动限制和参与的人的辅助技术上,可用问题成为确保产品具有适当符合人体工程学特性的重要工具,换句话说,确保它适合特定的用户需求。本研究的目的是通过使用达到运动的运动学指标来分析适应性座位装置的适应性座椅装置的可用性。研究样本由13名儿童组成,具有相关的神经系统病症。通过使用木凳高度可调开发的测试,与正在研究的自适应座椅设备集成,以及捕获三维图像的系统,称为Qualisys轨道管理器。测量以下达到运动学变量:最大达到速度,移动持续时间,曲率指数和单位运动。发现使用自适应座椅装置对神经大通损伤儿童的上肢功能产生正影响。它还注意到到达运动运动学的改善,这对于曲率指标和单位运动的指标是统计学意义。作为主要结论,可以指出一些积极的效果,即在研究中的产品似乎对用户的运动有所了解,例如上肢的改善的运动质量,这可能意味着更好的姿势调整和更高的树干姿势控制。通过识别在分析的有效性和效率方面的新措施,所获得的结果也可以作为绩效指标,提供可能有助于改善产品并最终修改它的新数据,以便将其更加兼容所考虑的目标人口需求。

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