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卡哈尔间质核以菲克坐标编码三维头部方向。

Interstitial nucleus of cajal encodes three-dimensional head orientations in Fick-like coordinates.

作者信息

Klier Eliana M, Wang Hongying, Crawford J Douglas

机构信息

Department of Anatomy and Neurobiology, Box 8108, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, MO 63110, USA.

出版信息

J Neurophysiol. 2007 Jan;97(1):604-17. doi: 10.1152/jn.00379.2006. Epub 2006 Nov 1.

Abstract

Two central, related questions in motor control are 1) how the brain represents movement directions of various effectors like the eyes and head and 2) how it constrains their redundant degrees of freedom. The interstitial nucleus of Cajal (INC) integrates velocity commands from the gaze control system into position signals for three-dimensional eye and head posture. It has been shown that the right INC encodes clockwise (CW)-up and CW-down eye and head components, whereas the left INC encodes counterclockwise (CCW)-up and CCW-down components, similar to the sensitivity directions of the vertical semicircular canals. For the eyes, these canal-like coordinates align with Listing's plane (a behavioral strategy limiting torsion about the gaze axis). By analogy, we predicted that the INC also encodes head orientation in canal-like coordinates, but instead, aligned with the coordinate axes for the Fick strategy (which constrains head torsion). Unilateral stimulation (50 microA, 300 Hz, 200 ms) evoked CW head rotations from the right INC and CCW rotations from the left INC, with variable vertical components. The observed axes of head rotation were consistent with a canal-like coordinate system. Moreover, as predicted, these axes remained fixed in the head, rotating with initial head orientation like the horizontal and torsional axes of a Fick coordinate system. This suggests that the head is ordinarily constrained to zero torsion in Fick coordinates by equally activating CW/CCW populations of neurons in the right/left INC. These data support a simple mechanism for controlling head orientation through the alignment of brain stem neural coordinates with natural behavioral constraints.

摘要

运动控制中有两个核心且相关的问题

1)大脑如何表征诸如眼睛和头部等各种效应器的运动方向;2)大脑如何限制它们的冗余自由度。 Cajal间质核(INC)将来自注视控制系统的速度指令整合到用于三维眼睛和头部姿势的位置信号中。 研究表明,右侧INC编码顺时针(CW)向上和CW向下的眼睛和头部分量,而左侧INC编码逆时针(CCW)向上和CCW向下的分量,这与垂直半规管的敏感方向相似。 对于眼睛,这些类似半规管的坐标与Listing平面(一种限制围绕注视轴扭转的行为策略)对齐。 以此类推,我们预测INC也以类似半规管的坐标编码头部方向,但与Fick策略(限制头部扭转)的坐标轴对齐。 单侧刺激(50微安,300赫兹,200毫秒)引起右侧INC产生CW头部旋转,左侧INC产生CCW旋转,垂直分量可变。 观察到的头部旋转轴与类似半规管的坐标系一致。 此外,正如预测的那样,这些轴在头部保持固定,像Fick坐标系的水平轴和扭转轴一样随初始头部方向旋转。 这表明,通常通过同等激活右侧/左侧INC中CW/CCW神经元群体,头部在Fick坐标中被限制为零扭转。 这些数据支持了一种通过使脑干神经坐标与自然行为约束对齐来控制头部方向的简单机制。

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