Fineman Richard A, McGrath Timothy M, Kelty-Stephen Damian G, Abercromby Andrew F J, Stirling Leia A
Aerosp Med Hum Perform. 2018 Nov 1;89(11):985-995. doi: 10.3357/AMHP.5123.2018.
Human-spacesuit fit is not well understood, especially in relation to operational performance and injury risk. Current fit decisions use subjective feedback. This work developed and evaluated new metrics for quantifying fit and assessed metric sensitivity to changes in padding between the human and hip brief assembly (HBA). Three subjects donned the Mark III (MKIII) spacesuit with three padding thicknesses between the lower body and HBA. Subjects performed a walking task with inertial measurement units on the thigh and shin of both the human and suit. For each step, cadence, human knee task range of motion (tRoM), difference in human and suit tROM (ΔtRoM), and the relative coordination metric (ρ) between the human-suit femur and tibia were computed. The MKIII significantly reduced user cadence by 20.4% and reduced tRoM by 16.5% during walking with subject-dependent changes due to added padding. In general, the addition of padding significantly altered ΔtRoM; however, variability did exist between subjects. Mixed-effect regressions of dynamic fit (ρ) reflect distinct positive spikes in ρ around heel strike (human-dominated motion) and negative dips following toe off (suit-dominated motion). There were mixed effects of padding on gait performance and dynamic fit measures. Differences in dynamic fit between subjects may be more reliant on alternate aspects of fit, such as suit component sizes and designs, than padding level. Subjective feedback supported quantitative observations, highlighting metric utility. Future work will explore the effects of suit sizing components on measures of fit and performance.
人体与航天服的适配性尚未得到充分理解,尤其是在操作性能和受伤风险方面。目前的适配决策采用主观反馈。这项工作开发并评估了用于量化适配性的新指标,并评估了指标对人体与臀部护具组件(HBA)之间衬垫变化的敏感性。三名受试者穿着Mark III(MKIII)航天服,下半身与HBA之间有三种衬垫厚度。受试者在人体和航天服的大腿和小腿上佩戴惯性测量单元执行行走任务。对于每一步,计算步频、人体膝关节任务运动范围(tRoM)、人体与航天服tROM的差异(ΔtRoM)以及人体-航天服股骨和胫骨之间的相对协调指标(ρ)。由于添加了衬垫,MKIII在行走过程中显著降低了用户步频20.4%,并使tRoM降低了16.5%,且存在个体差异。一般来说,添加衬垫会显著改变ΔtRoM;然而,受试者之间确实存在变异性。动态适配(ρ)的混合效应回归反映出在脚跟触地(人体主导运动)时ρ出现明显的正峰值,在脚趾离地后(航天服主导运动)出现负谷值。衬垫对步态性能和动态适配测量有混合影响。受试者之间动态适配的差异可能更多地依赖于适配的其他方面,如航天服组件的尺寸和设计,而不是衬垫水平。主观反馈支持定量观察,突出了指标的实用性。未来的工作将探索航天服尺寸组件对适配性和性能测量的影响。