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复杂且不断变化的线性和角加速度过程中的空间定向动力学。

The dynamics of spatial orientation during complex and changing linear and angular acceleration.

作者信息

Guedry F E, Rupert A H, McGrath B J, Oman C M

机构信息

Department of Psychology, University of West Florida, Pensacola 32514.

出版信息

J Vestib Res. 1992 Winter;2(4):259-83.

PMID:1342402
Abstract

The dynamics of spatial orientation perception were examined in a series of experiments in which a total of 43 subjects were passively exposed to various combinations of linear and angular acceleration during centrifuge runs. Perceptual effects during deceleration were much stronger than effects during acceleration. The dynamics of spatial orientation perception differed substantially from changes in the vestibulo-ocular reflex (VOR). VOR was fairly well predicted by a current model, but our experiments revealed perceived change in attitude (roll, pitch, yaw tilt position in space) and perceived angular velocity in space that was not reflected by parallel changes in the plane or magnitude of the VOR. This series of experiments establishes several facts concerning spatial orientation perception beyond the predictive domain of any current model. New concepts are needed and several are suggested to deal with changing reactions to complex combinations of linear and angular accelerations.

摘要

在一系列实验中研究了空间定向感知的动力学,在这些实验中,共有43名受试者在离心机运行期间被动地暴露于线性和角加速度的各种组合中。减速期间的感知效应比加速期间的效应要强得多。空间定向感知的动力学与前庭眼反射(VOR)的变化有很大不同。当前模型对VOR的预测相当准确,但我们的实验揭示了空间中姿态(滚动、俯仰、偏航倾斜位置)的感知变化以及空间中感知角速度的变化,而这些变化并未通过VOR平面或大小的平行变化反映出来。这一系列实验确立了一些关于空间定向感知的事实,超出了任何当前模型的预测范围。需要新的概念,并且提出了几个概念来处理对线性和角加速度复杂组合的变化反应。

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