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Effects of inverted vision on hand-pointing performance in altered gravity during parabolic flight

机译:抛物线飞行期间对重力改变的倒视性能的影响

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An accurate perception of the body and the environment is important for programming pointing accuracy and controlling motor action. The objective of this research effort was to assess the influence of gravity on these cognitive and sensorimotor processes. The integration of vestibular, visual, proprioceptive, and cognitive cues was investigated during a pointing task that required eye-hand coordination. Parabolic flights provide a unique environment to understand the specific role of gravity since both vestibular and proprioceptive inputs, as well as the gravitational reference, are altered during the various gravity levels obtained. Additionally, visual input can be altered using prisms that invert the visual scene. Six subjects participated in a within-subject experiment during the 61st ESA and 112th CNES parabolic flight campaigns. Seated subjects performed hand-pointing motions at randomly appearing dots on a 22-inch tactile display during 15 parabolas under three different gravity levels (0G, 1G, 1.8G) and two different visual conditions (normal, up-down inverted). Pointing latency (i.e. reaction time and duration of movement) and pointing accuracy (i.e. error between the target position and the actual hit) were recorded using custom-built software. Results show a statistically significant increase in reaction time and action time (i.e. decrease in performance), and a statistically significant upward shifting in the vertical pointing direction during up-down inverted vision with respect to normal vision. However, data did not reveal statistical significant differences in pointing performance between gravity levels. We discuss the significance of these results regarding the mechanisms of sensory integration for eye-hand coordination and briefly propose future research directions in this area.
机译:对身体和环境的准确感知对于编程指向精度和控制电机动作是重要的。这项研究的目标是评估重力对这些认知和感觉运动过程的影响。在指向任务期间,研究了前庭,视觉,胰岛素的敏感性和认知性提示的整合。抛物线飞行提供了一种独特的环境,以了解重力的特定作用,因为前庭和丙肽输入以及重力参考在获得的各种重力水平期间改变。此外,可以使用反转视觉场景的棱镜改变视觉输入。六名受试者参加了第61届ESA和112th CNES抛物面飞行竞选活动中的对象实验。在15个抛物线上在三种不同的重力水平(0g,1g,1.8g)和两个不同的视觉条件下(正常,上下倒置),在15个抛物线上随机出现的小点进行手指的运动,在22英寸触觉显示器上进行手持运动。使用自定义软件记录延迟(即,移动时间和运动持续时间)和指向精度(即目标位置和实际命中之间的误差)。结果表明反应时间和动作时间的统计学上显着增加(即,性能下降),以及在相对于正常视觉的上下倒置视觉期间垂直指向方向上的统计上显着的向上移动。然而,数据没有揭示指向重力水平之间的性能的统计显着差异。我们讨论了这些结果关于引人入平协调的感官整合机制的重要性,并简要提出了该地区的未来研究方向。

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