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线性加速度的二维编码与耳石系统的角速度敏感性

Two-dimensional coding of linear acceleration and the angular velocity sensitivity of the otolith system.

作者信息

Angelaki D E

机构信息

Department of Neurology, University of Zürich, Switzerland.

出版信息

Biol Cybern. 1992;67(6):511-21. doi: 10.1007/BF00198758.

Abstract

There exist otolith-sensitive vestibular nuclei neurons with spatio-temporal properties that can be described by two response vectors that are in temporal and spatial quadrature. These neurons respond to the component of a stimulus vector on a plane rather than a single axis. It is demonstrated here that these "two-dimensional" linear accelerometer neurons can function as one-dimensional angular velocity detectors. The two-dimensional property in both space and time allows these neurons to encode the component of the stimulus angular velocity vector that is normal to the plane defined by the two response vectors. The angular velocity vector in space can then be reconstructed by three populations of such neurons having linearly independent response planes. Thus, we propose that these two-dimensional spatio-temporal linear accelerometer neurons, in addition to participating in functions of the otolith system that are based on detection of linear acceleration, are also involved in the generation of compensatory ocular responses during off-vertical axis rotations.

摘要

存在对耳石敏感的前庭核神经元,其具有时空特性,可用两个呈时间和空间正交的响应向量来描述。这些神经元对刺激向量在一个平面上的分量做出反应,而非对单个轴做出反应。本文证明,这些“二维”线性加速度计神经元可作为一维角速度探测器发挥作用。在空间和时间上的二维特性使这些神经元能够编码刺激角速度向量中与由两个响应向量所定义平面垂直的分量。然后,空间中的角速度向量可通过具有线性独立响应平面的三类这样的神经元进行重构。因此,我们提出,这些二维时空线性加速度计神经元,除了参与基于线性加速度检测的耳石系统功能外,还参与非垂直轴旋转期间代偿性眼动反应的产生。

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