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Buckling Force Variability of Semmes–Weinstein Monofilaments in Successive Use Determined by Manual and Automated Operation

机译:Semmes-Weinstein单丝在连续使用中的屈曲力变异性由手动和自动操作确定

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摘要

(1) Objective: This study was conducted with the objective of characterizing the variability of a force on a simulated skin surface using the Semmes–Weinstein monofilament test (SWMT). (2) Research Design and Methods: Two distinct experiments were performed to determine the effects of human hand motion variability on the monofilament buckling force, and to determine the monofilament’s mechanical properties using a positioning stage. (3) Results: In manual operation (by human hand motion), the buckling force over the ten compressions decreased by over 10%, and the human hand motion variations during the SWMT may have impacted the buckling force. When the SWMT was performed under manual control, the buckling force was closely correlated with the number of compressions. In automated operation (by positioning stage), the buckling force was affected not only by the number of compressions but also by both the velocity and the contact angle between the monofilament and the skin surface. (4) Conclusions: The buckling force decreased in ten successive compressions, independent of the hand motion. Hence, medical staff need to consider not only the operator’s hand motion but also the effect of repeated trials.
机译:(1)目的:进行这项研究的目的是使用Semmes-Weinstein单丝试验(SWMT)表征模拟皮肤表面上的力变化。 (2)研究设计和方法:进行了两个不同的实验,以确定人的手部运动变化对单丝屈曲力的影响,并使用定位台确定单丝的机械性能。 (3)结果:在手动操作(通过人的手部动作)中,十次压缩的屈曲力降低了10%以上,并且SWMT期间的人手运动变化可能影响了屈曲力。在手动控制下执行SWMT时,屈曲力与压缩次数密切相关。在自动操作中(通过定位阶段),屈曲力不仅受压缩次数的影响,而且还受单丝与皮肤表面之间的速度和接触角的影响。 (4)结论:屈曲力在十次连续压缩中减小,与手运动无关。因此,医务人员不仅需要考虑操作员的手部动作,还要考虑反复试验的效果。

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