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重力对猴子空间定向影响的多维模型。

A multidimensional model of the effect of gravity on the spatial orientation of the monkey.

作者信息

Merfeld D M, Young L R, Oman C M, Shelhamer M J

机构信息

Man-Vehicle Laboratory, Massachusetts Institute of Technology, Cambridge.

出版信息

J Vestib Res. 1993 Summer;3(2):141-61.

PMID:8275250
Abstract

A "sensory conflict" model of spatial orientation was developed. This mathematical model was based on concepts derived from observer theory, optimal observer theory, and the mathematical properties of coordinate rotations. The primary hypothesis is that the central nervous system of the squirrel monkey incorporates information about body dynamics and sensory dynamics to develop an internal model. The output of this central model (expected sensory afference) is compared to the actual sensory afference, with the difference defined as "sensory conflict." The sensory conflict information is, in turn, used to drive central estimates of angular velocity ("velocity storage"), gravity ("gravity storage"), and linear acceleration ("acceleration storage") toward more accurate values. The model successfully predicts "velocity storage" during rotation about an earth-vertical axis. The model also successfully predicts that the time constant of the horizontal vestibulo-ocular reflex is reduced and that the axis of eye rotation shifts toward alignment with gravity following postrotatory tilt. Finally, the model predicts the bias, modulation, and decay components that have been observed during off-vertical axis rotations (OVAR).

摘要

一种空间定向的“感觉冲突”模型被建立起来。这个数学模型基于从观察者理论、最优观察者理论以及坐标旋转的数学特性中衍生出的概念。主要假设是松鼠猴的中枢神经系统整合了关于身体动力学和感觉动力学的信息,以建立一个内部模型。将这个中枢模型的输出(预期感觉传入)与实际感觉传入进行比较,两者的差异被定义为“感觉冲突”。感觉冲突信息进而被用于驱使角速度(“速度存储”)、重力(“重力存储”)和线性加速度(“加速度存储”)的中枢估计值趋向更精确的值。该模型成功预测了绕地球垂直轴旋转期间的“速度存储”。该模型还成功预测了水平前庭眼反射的时间常数会减小,并且在旋转后倾斜时,眼球旋转轴会朝着与重力对齐的方向移动。最后,该模型预测了在非垂直轴旋转(OVAR)期间观察到的偏差、调制和衰减成分。

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