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矩阵在分析前庭眼反射三维行为中的应用。

The use of matrices in analyzing the three-dimensional behavior of the vestibulo-ocular reflex.

作者信息

Robinson D A

出版信息

Biol Cybern. 1982;46(1):53-66. doi: 10.1007/BF00335351.

Abstract

The vestibulo-ocular reflex rotates the eye about the axis of a head rotation at the same speed but in the opposite direction to make the visual axes in space independent of head motion. This reflex works in all three degrees of freedom: roll, pitch, and yaw. The rotations may be described by vectors and the reflex by a transformation in the form of a matrix. The reflex consists of three parts: sensory, central, and motor. The transduction of head rotation into three neural signals, which may also be described by a vector, is described by a canal matrix. The neural, motor-command vector is transformed to an eye rotation by a muscle matrix. Since these two matrices are known, one can solve for the central matrix which gives the strength of the connections between all the vestibular neurons and all the eye-muscle motoneurons. The role of the metric tensor in these transformations is described. This method of analysis is used in three applications. A lesion may be simulated by altering the elements in any or all of the three component matrices. By matrix multiplication, the resulting abnormal behavior of the reflex can be described quantitatively in all degrees of freedom. The method is also used to directly compare the differences in brain-stem connections between humans and rabbits that accommodate the altered actions of the muscles of the two species. Finally the method allows a quantitative assessment of the changes that take place in the brain-stem connections when plastic changes are induced by artificially dissociating head movements from apparent motion of the visual environment.

摘要

前庭眼反射使眼球围绕头部旋转轴以相同速度但相反方向旋转,从而使空间中的视轴独立于头部运动。该反射在所有三个自由度(滚转、俯仰和偏航)中均起作用。旋转可用向量描述,反射可用矩阵形式的变换描述。该反射由三部分组成:感觉部分、中枢部分和运动部分。头部旋转转换为三个神经信号(也可用向量描述)由半规管矩阵描述。神经运动指令向量通过肌肉矩阵转换为眼球旋转。由于这两个矩阵已知,就可以求解中枢矩阵,该矩阵给出所有前庭神经元与所有眼球肌肉运动神经元之间连接的强度。描述了度量张量在这些变换中的作用。这种分析方法用于三个应用中。可通过改变三个组成矩阵中任何一个或全部的元素来模拟损伤。通过矩阵乘法,可以在所有自由度上定量描述反射产生的异常行为。该方法还用于直接比较人类和兔子脑干连接的差异,以适应两种物种肌肉动作的改变。最后,当通过人为地使头部运动与视觉环境的表观运动分离来诱导可塑性变化时,该方法可以对脑干连接中发生的变化进行定量评估。

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