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长时间微重力和重力过渡对精细运动技能的影响。

Effects of Long-duration Microgravity and Gravitational Transitions on Fine Motor Skills.

机构信息

Leidos, Houston, TX, USA.

KBR, Houston, TX, USA.

出版信息

Hum Factors. 2023 Sep;65(6):1046-1058. doi: 10.1177/00187208221084486. Epub 2022 May 24.

Abstract

OBJECTIVE

Assess the effects of long-duration microgravity and gravitational transitions on fine motor skills using a tablet-based test battery of four fine motor tasks: Pointing, Dragging, Shape Tracing, and Pinch-Rotate.

BACKGROUND

While there have been some studies on fine motor skills in microgravity, few have measured the fine motor skills that are core components of interaction with computer-based devices, and none have measured performance systematically, to include preflight, inflight, and postflight space mission time periods.

METHODS

Seven astronauts completed the Fine Motor Skills test battery 30-40 times before, during, and up to 30 days after standard duration International Space Station missions, while a matching set of seven ground-based control participants also completed the battery over a comparable period of time. Response time and accuracy were the primary outcome measures.

RESULTS

Relative to controls, astronauts experienced fine motor skill decrements at gravitational transitions (first week on orbit, and first month post landing). No decrements were found inflight after the first week of adaptation.

CONCLUSION

Gravitational transitions appear to negatively impact fine motor skills needed to operate small controls with accuracy, such as those on touchscreen interfaces. This raises concerns for future long-duration crewmembers who will land on a planetary surface and need to perform critical tasks accurately, such as configuring spacesuits, powering up a habitat, or teleoperating rovers.

APPLICATION

Results from this study highlight the need for confirmatory research, and the possible need for countermeasure development. The Fine Motor Skills test battery may have application outside of NASA as a fine motor skills diagnostic screening, rehabilitation, or readiness-to-perform tool.

摘要

目的

使用基于平板电脑的四项精细运动任务测试电池(指向、拖拉、形状跟踪和捏旋转)评估长时间微重力和重力过渡对精细运动技能的影响。

背景

虽然已经有一些关于微重力下精细运动技能的研究,但很少有研究测量与基于计算机的设备交互的核心组成部分的精细运动技能,也没有研究系统地测量,包括飞行前、飞行中和飞行后太空任务时间段的精细运动技能。

方法

在标准国际空间站任务期间和任务前后 30 天内,七名宇航员完成了精细运动技能测试电池 30-40 次,而一组七名地面控制参与者也在可比时间段内完成了该电池。反应时间和准确性是主要的结果测量指标。

结果

与对照组相比,宇航员在重力过渡时(轨道上的第一周和着陆后的第一个月)经历了精细运动技能下降。在适应后的第一周后,在飞行中没有发现下降。

结论

重力过渡似乎对操作小控件所需的精细运动技能产生负面影响,例如触摸屏界面上的那些。这对未来需要在行星表面着陆并需要准确执行关键任务的长期机组人员提出了担忧,例如配置宇航服、为栖息地供电或远程操作漫游者。

应用

这项研究的结果强调了需要进行确认性研究,以及可能需要开发对策。精细运动技能测试电池可能在 NASA 之外具有应用,作为精细运动技能诊断筛查、康复或准备执行工具。

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