2023
DOI: 10.1002/hfm.20983
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Analyzing soft tissue stiffness of human upper arms during physical dynamic and quasi‐static impacts in human–machine interaction

Abstract: Knowledge of the changes in the behavior of human soft tissue stiffness during physical impact in human–machine interaction (HMI) plays a vital role in the development of biofidelity testing devices such as a human dummy. These testing devices are widely applied as an effective means to validate the safety of machinery during dynamic or static contact with humans in HMI. In this study, we assess changes in soft tissue stiffness in the upper arm of individuals under both dynamic (0.7 and 0.25 m/s) and quasi‐sta… Show more

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Cited by 2 publications
(1 citation statement)
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“…The experimenters attempted to obtain measurements in identical conditions for each body part of all subjects. However, all contact conditions were not completely identical due to variations in the joint stiffness and tissue properties of individual subjects ( Rajaei et al, 2023 ). In addition, the differences in pain perception among subjects could lead to uncertainties in the outcomes, even when they received the same guidance for determining pain onset.…”
Section: Discussionmentioning
confidence: 99%
“…The experimenters attempted to obtain measurements in identical conditions for each body part of all subjects. However, all contact conditions were not completely identical due to variations in the joint stiffness and tissue properties of individual subjects ( Rajaei et al, 2023 ). In addition, the differences in pain perception among subjects could lead to uncertainties in the outcomes, even when they received the same guidance for determining pain onset.…”
Section: Discussionmentioning
confidence: 99%