Influence of Exoskeleton Use on Cardiac Index

Marco Schalk, Ines Schalk, T. Bauernhansl, J. Siegert, U. Schneider
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Abstract

This study aims to assess the whole-body physiological effects of wearing an exoskeleton during a one-hour standardized work task, utilizing the Cardiac Index (CI) as the target parameter. N = 42 young and healthy subjects with welding experience took part in the study. The standardized and abstracted one-hour workflow consists of simulated welding and grinding in constrained body positions and was completed twice by each subject, with and without an exoskeleton, in a randomized order. The CI was measured by Impedance Cardiography (ICG), an approved medical method. The difference between the averaged baseline measurement and the averaged last 10 min was computed for the conditions with and without an exoskeleton for each subject to result in and . A significant difference between the conditions with and without an exoskeleton was found, with the reduction in CI when wearing an exoskeleton amounting to 10.51%. This result corresponds to that of previous studies that analyzed whole-body physiological load by means of spiroergometry. These results suggest a strong positive influence of exoskeletons on CI and, therefore, physiological load. At the same time, they also support the hypothesis that ICG is a suitable measurement instrument to assess these effects.
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外骨骼使用对心脏指数的影响
本研究旨在评估在一小时标准化工作任务中佩戴外骨骼的全身生理影响,以心脏指数(CI)为目标参数。选取42名具有焊接经验的年轻健康受试者。标准化和抽象的一小时工作流程包括在受限的身体位置模拟焊接和磨削,每个受试者按随机顺序完成两次,有外骨骼和没有外骨骼。CI通过阻抗心动图(ICG)测量,这是一种经批准的医学方法。在有外骨骼和没有外骨骼的情况下,计算每个受试者的平均基线测量值与平均最后10分钟之间的差异,结果为和。在有外骨骼和没有外骨骼的情况下发现了显着差异,佩戴外骨骼时CI降低了10.51%。这一结果与先前通过肺活量计分析全身生理负荷的研究相一致。这些结果表明外骨骼对CI和生理负荷有很强的积极影响。同时,他们也支持ICG是评估这些影响的合适测量工具的假设。
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