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外展运动神经元对肌肉张力和眼位的双重编码。

Dual encoding of muscle tension and eye position by abducens motoneurons.

机构信息

Departamento de Fisiología y Zoología, Facultad de Biología, Universidad de Sevilla, 41012-Sevilla, Spain.

出版信息

J Neurosci. 2011 Feb 9;31(6):2271-9. doi: 10.1523/JNEUROSCI.5416-10.2011.

Abstract

Extraocular muscle tension associated with spontaneous eye movements has a pulse-slide-step profile similar to that of motoneuron firing rate. Existing models only relate motoneuron firing to eye position, velocity and acceleration. We measured and quantitatively compared lateral rectus muscle force and eye position with the firing of abducens motoneurons in the cat to determine fundamental encoding correlations. During fixations (step), muscle force increased exponentially with eccentric eye position, consistent with a model of estimate ensemble motor innervation based on neuronal sensitivities and recruitment order. Moreover, firing rate in all motoneurons tested was better related to eye position than to muscle tension during fixations. In contrast, during the postsaccadic slide phase, the time constant of firing rate decay was closely related to that of muscle force decay, suggesting that all motoneurons encode muscle tension as well. Discharge characteristics of abducens motoneurons formed overlapping clusters of phasic and tonic motoneurons, thus, tonic units recruited earlier and had a larger slide signal. We conclude that the slide signal is a discharge characteristic of the motoneuron that controls muscle tension during the postsaccadic phase and that motoneurons are specialized for both tension and position-related properties. The organization of signal content in the pool of abducens motoneurons from the very phasic to the very tonic units is possibly a result of the differential trophic background received from distinct types of muscle fibers.

摘要

与自发性眼球运动相关的眼外肌张力具有脉冲-滑动步幅的特征,类似于运动神经元的发放率。现有的模型仅将运动神经元的发放与眼球位置、速度和加速度联系起来。我们测量并定量比较了猫的外直肌力和眼球位置与展神经运动神经元的发放,以确定基本的编码相关性。在注视(步)期间,肌肉力随着偏心眼球位置呈指数增加,与基于神经元敏感性和募集顺序的估计集合运动神经支配的模型一致。此外,在所有测试的运动神经元中,在注视期间,发放率与眼球位置的关系优于与肌肉张力的关系。相比之下,在眼跳后的滑动阶段,发放率衰减的时间常数与肌肉力衰减的时间常数密切相关,这表明所有运动神经元都将肌肉张力编码为。展神经运动神经元的放电特征形成了相位和紧张运动神经元的重叠簇,因此,紧张性单位较早募集,并且具有较大的滑动信号。我们得出结论,滑动信号是控制眼跳后阶段肌肉张力的运动神经元的放电特征,运动神经元专门用于与张力和位置相关的特性。从非常相位到非常紧张性单位的展神经运动神经元池中信号内容的组织可能是由于从不同类型的肌肉纤维接收的不同营养背景的结果。

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