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角位移感知受力背景调制。

Angular displacement perception modulated by force background.

作者信息

Lackner James R, DiZio Paul

机构信息

Ashton Graybiel Spatial Orientation Laboratory, Brandeis University, Waltham, MA 02454-9110, USA.

出版信息

Exp Brain Res. 2009 May;195(2):335-43. doi: 10.1007/s00221-009-1785-6. Epub 2009 Apr 19.

Abstract

We had recumbent subjects (n = 7) indicate the amplitude of imposed, passive yaw-axis body rotations in the 0, 1, and 1.8 g background force levels generated during parabolic flight maneuvers. The blindfolded subject, restrained in a cradle, aligned a gravity-neutral pointer with the subjective vertical while in an initial position and then tried to keep it aligned with the same external direction during a body rotation, lasting less than 1.5 s about the z-axis 30 degrees, 60 degrees, or 120 degrees in amplitude. All the rotations were above semicircular threshold levels for eliciting perception of angular displacement under terrestrial test conditions. In 1 and 1.8 g test conditions, subjects were able to indicate both the subjective vertical and the amplitude of the body rotation reasonably accurately. By contrast in 0 g, when indicating the subjective vertical, they aligned the pointer with the body midline and kept it nearly aligned with their midline during the subsequent body tilts. They also reported feeling supine throughout the 0 g test periods. The attenuation of apparent self-displacement in 0 g is discussed in terms of (1) a possible failure of integration of semicircular canal velocity signals, (2) a contribution of somatosensory pressure and contact cues, and (3) gravicentric versus body-centric reference frames. The significance of the findings for predicting and preventing motion sickness and disorientation in orbital space flight and in rotating artificial gravity environments is discussed.

摘要

我们让7名卧位受试者指出在抛物线飞行机动过程中产生的0g、1g和1.8g背景力水平下施加的被动偏航轴身体旋转的幅度。蒙眼受试者被固定在一个摇篮中,在初始位置时将重力中性指针与主观垂直方向对齐,然后在持续不到1.5秒、绕z轴旋转幅度为30度、60度或120度的身体旋转过程中,试图使其与相同的外部方向保持对齐。在地面测试条件下,所有旋转均高于引发角位移感知的半圆阈值水平。在1g和1.8g测试条件下,受试者能够相当准确地指出主观垂直方向和身体旋转的幅度。相比之下,在0g时,当指示主观垂直方向时,他们将指针与身体中线对齐,并在随后的身体倾斜过程中使其几乎与中线保持对齐。他们还报告在整个0g测试期间都感觉自己是仰卧的。从以下几个方面讨论了0g时明显自我位移的衰减:(1)半规管速度信号整合可能失败;(2)体感压力和接触线索的作用;(3)重力中心参考系与身体中心参考系。还讨论了这些发现对于预测和预防轨道太空飞行以及旋转人工重力环境中的晕动病和定向障碍的意义。

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