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大鼠中间核在被动前肢运动中运动速度的表示。

Representation of movement velocity in the rat's interpositus nucleus during passive forelimb movements.

机构信息

Department of Physiological Sciences, University of Catania, Italy.

出版信息

Cerebellum. 2010 Jun;9(2):249-58. doi: 10.1007/s12311-010-0160-2.

DOI:10.1007/s12311-010-0160-2
PMID:20169431
Abstract

The interpositus nucleus (IN) receives a large amount of sensory information from the limbs and, in turn, elaborates signals for movement control. In this paper, we tried to gather evidence on the possibility that neurons in the IN may elaborate sensory representations of the forelimb kinematics and, particularly, of the movement velocity vector. For this purpose, the forepaw of anesthetized rats was attached to a computer-controlled robot arm displaced passively along two types of trajectories (circular and figure eight), with the limb joints unconstrained. The firing activity of single cells was recorded and related to limb position and the two components of the movement velocity vector, namely, movement speed and direction. By using multiple regression analysis, we found that 12 out of 85 (14%) neurons were modulated by position, 18 out of 85 (21%) neurons were modulated by direction, 24 out of 85 (28%) neurons were modulated by movement speed, and 31 out of 85 (37%) neurons were sensitive to the full movement velocity vector. Most of the neurons modulated only by the speed component of the velocity vector (19 out of 24) were located in the posterior portion of the IN, whereas neurons in the anterior portion were mostly related to both components of the velocity vector. These results suggest that sensory information related to whole-limb movement velocity may be encoded by the IN, indicating also that the posterior interpositus may preferentially represent movement speed.

摘要

中间核(IN)接收来自四肢的大量感觉信息,并反过来详细说明运动控制的信号。在本文中,我们试图收集证据,证明 IN 中的神经元可能详细说明了前肢运动学的感觉表示,特别是运动速度矢量。为此,麻醉大鼠的前脚被固定在计算机控制的机器人臂上,机器人臂被动地沿着两种轨迹(圆形和 8 字形)移动,四肢关节不受限制。记录单个细胞的放电活动,并将其与肢体位置和运动速度矢量的两个分量(即运动速度和方向)相关联。通过使用多元回归分析,我们发现 85 个神经元中有 12 个(14%)被位置调制,18 个(21%)被方向调制,24 个(28%)被运动速度调制,31 个(37%)对完整的运动速度矢量敏感。仅对速度矢量的速度分量(24 个中的 19 个)进行调制的神经元主要位于 IN 的后部分,而前部分的神经元主要与速度矢量的两个分量有关。这些结果表明,与整个肢体运动速度相关的感觉信息可能由 IN 编码,这也表明后中间核可能优先表示运动速度。

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Purkinje cell misfiring generates high-amplitude action tremors that are corrected by cerebellar deep brain stimulation.浦肯野细胞异常放电产生高频幅度的动作性震颤,小脑深部电刺激可纠正该震颤。
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本文引用的文献

1
Comparison of neuronal activities of external cuneate nucleus, spinocerebellar cortex and interpositus nucleus during passive movements of the rat's forelimb.大鼠前肢被动运动期间楔外核、脊髓小脑皮质和间位核神经元活动的比较。
Neuroscience. 2008 Nov 11;157(1):271-9. doi: 10.1016/j.neuroscience.2008.09.006. Epub 2008 Sep 9.
2
Cerebellar cortical activity in the cat anterior lobe during hindlimb stepping.猫后肢迈步时前叶小脑皮质的活动
Exp Brain Res. 2008 May;187(3):359-72. doi: 10.1007/s00221-008-1311-2. Epub 2008 Feb 22.
3
Coding of tactile response properties in the rat deep cerebellar nuclei.
共识文件:当前关于小脑中间核在运动控制和情绪中的作用的观点。
Cerebellum. 2013 Oct;12(5):738-57. doi: 10.1007/s12311-013-0464-0.
4
Processing of limb kinematics in the interpositus nucleus.核间核中肢体运动学的处理。
Cerebellum. 2010 Mar;9(1):103-10. doi: 10.1007/s12311-009-0149-x.
大鼠深部小脑核中触觉反应特性的编码
J Neurophysiol. 2005 Aug;94(2):1236-51. doi: 10.1152/jn.00285.2005.
4
Cerebellar encoding of limb position.肢体位置的小脑编码
Cerebellum. 2004;3(3):172-7. doi: 10.1080/14734220410016735.
5
Movement-related discharge in the cerebellar nuclei persists after local injections of GABA(A) antagonists.在局部注射GABA(A)拮抗剂后,小脑核中与运动相关的放电仍会持续。
J Neurophysiol. 2005 Jan;93(1):35-43. doi: 10.1152/jn.00603.2004. Epub 2004 Aug 25.
6
Effects of muscimol inactivation of the cerebellar nuclei on precision grip.小脑核团注射蝇蕈醇失活对精准抓握的影响。
J Neurophysiol. 2004 Mar;91(3):1240-9. doi: 10.1152/jn.01124.2002. Epub 2003 Dec 17.
7
Responses of cerebellar interpositus neurons to predictable perturbations applied to an object held in a precision grip.小脑间位核神经元对精确抓握物体时施加的可预测扰动的反应。
J Neurophysiol. 2004 Mar;91(3):1230-9. doi: 10.1152/jn.01120.2002. Epub 2003 Dec 17.
8
Anisotropic representation of forelimb position in the cerebellar cortex and nucleus interpositus of the rat.
Brain Res. 2003 May 16;972(1-2):127-36. doi: 10.1016/s0006-8993(03)02513-7.
9
Encoding of hindlimb kinematics by spinocerebellar circuitry.脊髓小脑回路对后肢运动学的编码。
Arch Ital Biol. 2002 Jul;140(3):185-92.
10
Kinematic features of passive forelimb movements and rat cuneate neuron discharges.被动前肢运动和大鼠楔束神经元放电的运动学特征
Neuroreport. 2002 Mar 4;13(3):267-71. doi: 10.1097/00001756-200203040-00004.