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首页> 外文期刊>Journal of vestibular research: equilibrium and orientation >Baselines for three-dimensional perception of combined linear and angular self-motion with changing rotational axis.
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Baselines for three-dimensional perception of combined linear and angular self-motion with changing rotational axis.

机译:具有改变旋转轴的组合线性和角度自动运动的三维感知的基线。

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摘要

The laws of physics explain many human misperceptions of whole-body passive self-motion. One classic misperception occurs in a rotating chair in the dark: If the chair is decelerated to a stop after a period of counterclockwise rotation, then a subject will typically perceive clockwise rotation. The laws of physics show that, indeed, a clockwise rotation would be perceived even by a perfect processor of angular acceleration information, assuming that the processor is initialized (prior to the deceleration) with a typical subject's initial perception - of no rotation in this case. The motion perceived by a perfect acceleration processor serves as a baseline by which to judge human self-motion perception; this baseline makes a rough prediction and also forms a basis for comparison, with uniquely physiological properties of perception showing up as deviations from the baseline. These same principles, using the motion perceived by a perfect acceleration processor as a baseline, are used in the present paper to investigate complex motions that involve simultaneous linear and angular accelerations with a changing axis of rotation. Baselines - motions that would be perceived by a perfect acceleration processor, given the same initial perception (prior to the motion of interest) as that of a typical subject - are computed for the acceleration and deceleration stages of centrifuge runs in which the human carriage tilts along with the vector resultant of the centripetal and gravity vectors. The computations generate a three-dimensional picture of the motion perceived by a perfect acceleration processor, by simultaneously using all six interacting degrees of freedom (three angular and three linear) and taking into account the non-commutativity of rotations in three dimensions. The resulting three-dimensional baselines predict stronger perceptual effects during deceleration than during acceleration, despite the equal magnitudes (with opposite direction) of forces on the subject during acceleration and deceleration. For a centrifuge run with the subject facing tangentially in the direction of motion, the deceleration baseline shows a perception of forward tumble (pitch rotation) beginning with ascent from the earth, while the acceleration baseline does not have analogous pitch and vertical motion. These results give a three-dimensional explanation for certain puzzling acceleration-deceleration perceptual differences observed experimentally by Guedry, Rupert, McGrath, and Oman (Journal of Vestibular Research, 1992.). The present analysis is consistent with, and expands upon, previous analyses of individual components of motion.
机译:物理法解释了许多人类对全身被动自动运动的误解。在黑暗中旋转椅子中发生一种经典误操作:如果在逆时针旋转的时段之后椅子被减速到止挡,则通常将对象感知顺时针旋转。物理定律表明,实际上,即使通过角度加速信息的完美处理器也会被感知顺时针旋转,假设处理器在这种情况下初始化(在减速之前)初始化(在减速之前)初始感知 - 在这种情况下没有旋转。完美的加速处理器所感知的运动用作判断人类自动运动感知的基线;该基线进行了粗略预测,并且还形成了比较的基础,具有从基线的偏差显示出来的感知的独特生理特性。这些相同的原理,使用完美的加速度处理器作为基线所感知的运动,用于本文以研究涉及具有变化旋转轴的同时线性和角度加速的复杂运动。基准 - 通过作为典型主题的相同的初始感知(在感兴趣的运动之前的初始感知(在感兴趣的运动之前,将计算用于人体托架的离心机运行的加速和减速阶段,以其基本的加速处理器以及向量的向量和重力向量的载体。计算通过同时使用所有六个相互作用的自由度(三个角度和三个线性)同时产生完美的加速处理器感知的运动的三维图像。尽管在加速和减速期间,尽管在对象期间,在加速期间,所得到的三维基线在减速期间预测比加速期间更强的感知效应。对于离心机在运动方向上切向地面对的对象,减速基线表示从地球上升开始的向前翻滚(间距旋转)的感知,而加速度基线没有类似的间距和垂直运动。这些结果给出了通过古德,鲁珀特,麦格拉特和阿曼在实验观察到的某些令人费知的加速度 - 减速差异的三维解释(门徒研究,1992年。)。本分析与先前分析的动作组分一致,并扩展。

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