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Individual Differences and Their Impact on the Safety and the Efficiency of Human-Wheelchair Systems

机译:个体差异及其对人轮椅系统安全性和效率的影响

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Objective: The extent to which individual differences in fine motor abilities affect indoor safety and efficiency of human-wheelchair systems was examined.Background: To reduce the currently large number of indoor wheelchair accidents, assistance systems with a high level of automation were developed. It was proposed to adapt the wheelchair's level of automation to the user's ability to steer the device to avoid drawbacks of highly automated wheelchairs. The state of the art, however, lacks an empirical identification of those abilities.Method: A study with 23 participants is described. The participants drove through various sections of a course with a powered wheelchair. Repeatedly measured criteria were safety (numbers of collisions) and efficiency (times required for reaching goals). As covariates, the participants' fine motor abilities were assessed.Results: A random coefficient modeling approach was conducted to analyze the data, which were available on two levels as course sections were nested within participants.The participants' aiming, precision, and arm-hand speed contributed significantly to both criteria: Participants with lower fine motor abilities had more collisions and required more time for reaching goals.Conclusion: Adapting the wheelchair's level of automation to these fine motor abilities can improve indoor safety and efficiency. In addition, the results highlight the need to further examine the impact of individual differences on the design of automation features for powered wheelchairs as well as other applications of automation.Application: The results facilitate the improvement of current wheelchair technology.
机译:目的:研究精细运动能力上的个体差异在多大程度上影响人轮椅系统的室内安全性和效率。背景:为了减少当前大量的室内轮椅事故,开发了高度自动化的辅助系统。提出了使轮椅的自动化水平适应用户操纵装置的能力,以避免高度自动化的轮椅的缺点。然而,现有技术缺乏对这些能力的经验性鉴定。方法:描述了一项有23名参与者的研究。参与者使用电动轮椅驾驶课程的各个部分。重复测量的标准是安全性(碰撞次数)和效率(达到目标所需的时间)。作为协变量,评估了参与者的精细运动能力。结果:采用随机系数建模方法来分析数据,当课程部分嵌套在参与者中时,可以在两个级别上使用。参与者的目标,精确度和手臂手速度对这两个标准都有重要贡献:精细动作能力较低的参与者发生更多的碰撞,需要更多的时间才能达到目标。结论:将轮椅的自动化水平调整为这些精细动作能力可以提高室内安全性和效率。此外,结果强调需要进一步研究个体差异对电动轮椅以及其他自动化应用的自动化功能设计的影响。应用:结果有助于促进当前轮椅技术的改进。

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