首页> 外文会议>IEEE International Conference on Biomedical Robotics and Biomechatronics >Analyzing Exfordance Use by Unilateral Upper-Limb Amputees* This work was supported by the US Army Medical Research Materiel Command, grant W81XWH-14-1-0277.
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Analyzing Exfordance Use by Unilateral Upper-Limb Amputees* This work was supported by the US Army Medical Research Materiel Command, grant W81XWH-14-1-0277.

机译:分析单侧上肢截肢者的出勤使用情况*这项工作得到了美国陆军医学研究与物资司令部的支持,授予W81XWH-14-1-0277。

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Humans often use features of their environment for assistance in picking up and manipulating objects or in stabilizing their own bodies. This `exfordance' use occurs when external contact or gravitational or inertial forces are utilized to aid in task completion or stabilization. This paper presents a categorization of exfordance use and applies the new framework to quantifying how experienced unilateral upper-limb amputees use of exfordances during everyday activities, both in their affected and unaffected limbs. Head-mounted cameras were used to record video footage of participants in their homes while they completed self-selected activities of daily living. A total of 35 minutes of dense manipulation footage has been analyzed for each of 5 trans-radial amputees with different prosthetic devices, resulting in over 4,700 instances of observed exfordance use. The results indicate that participants used exfordance-based vs. non exfordance-based manipulation strategies approximately the same amount with both their intact and prosthetic hands, after adjusting for overall hand use. Furthermore, the specific exfordance use strategies vary substantially between limbs, with participants using environmental surfaces such as tables to guide the motion of their unaffected hand more frequently than with their prosthetic hand, possibly due to increased control and passive conformation ability. Also, participants used gravity-based exfordances (e.g. hanging a towel over the hand) much more frequently with their prosthetic, likely due to its reduced grasping capabilities.
机译:人类经常利用周围环境的特征来协助拾起和操纵物体或稳定自己的身体。当使用外部接触力或重力或惯性力来帮助完成任务或稳定任务时,就会使用这种“溢价”功能。本文介绍了使用溢价的类别,并将新框架应用于量化有经验的单边上肢截肢者在患病和未患肢的日常活动中如何使用溢价。头戴式摄像机用于记录参与者在家中完成自主选择的活动时的视频录像。对使用不同假体装置的5个经-动脉截肢者中的每一个进行了总共35分钟的密集操作录像的分析,结果发现有4,700多个观察到的用药情况。结果表明,在对整体手部使用进行了调整之后,参与者在完整手和假肢手上均使用了大约相同量的基于胜任力和非胜任力的操纵策略。此外,四肢之间特定的挥霍行为使用策略大不相同,参与者可能会由于增加的控制力和被动的适应能力而使用环境表面(例如桌子)来引导其未受影响的手比其假肢更频繁地运动。而且,参与者可能会由于其抓地力的降低而更频繁地使用基于重力的支撑物(例如,在手上悬挂一条毛巾)。

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