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在集合和转位眼球运动过程中逆向鉴定的动眼神经核间神经元的特征

Characteristics of antidromically identified oculomotor internuclear neurons during vergence and versional eye movements.

作者信息

Clendaniel R A, Mays L E

机构信息

Department of Psychology, University College, Birmingham, Alabama.

出版信息

J Neurophysiol. 1994 Mar;71(3):1111-27. doi: 10.1152/jn.1994.71.3.1111.

Abstract
  1. Previous studies have shown that midbrain near response cells that increase their activity during convergent eye movements project to medial rectus motoneurons, which also increase their activity during convergence. Most neurons in the abducens nucleus decrease their firing rate during convergence, and the source of this vergence signal is unknown. Oculomotor internuclear neurons (OINs) in monkeys project primarily from the medial rectus subdivisions of the oculomotor nucleus to the contralateral abducens nucleus, although there is a smaller ipsilateral projection as well. Because of these anatomic connections, it has been suggested that the OIN input may be responsible for the vergence signal seen on abducens neurons. The behavior of the OINs during eye movements and their synaptic drive are not known. Thus the goal of this study is to determine the behavior of these neurons during conjugate and disjunctive eye movements and to determine if these neurons have an excitatory or inhibitory drive on the abducens neurons. 2. Single-unit recording studies in alert rhesus monkeys were used to characterize the behavior of OINs. Eighteen OINs were identified by antidromic activation and collision testing. The recorded OINs displayed a burst-tonic pattern of activity during adducting saccades, and the majority of these cells displayed an increase in tonic activity with convergent eye movements. 3. Identified OINs were compared with a large sample of non-activated and untested horizontal burst-tonic cells in the medial rectus subdivisions of the oculomotor nucleus. The results indicate that the OINs behave similarly to medial rectus motoneurons during vergence and versional eye movements. None of the OINs displayed vertical eye position sensitivity. 4. Microstimulation of the oculomotor nucleus where both the OINs and medial rectus motoneurons were located resulted in a large adducting twitch of the ipsilateral eye and a smaller abducting twitch of the contralateral eye. The latter effect was presumed to be the result of OIN innervation of the contralateral abducens nucleus. This result suggests that the crossed OIN pathway is predominately, if not entirely, excitatory. 5. Injection of 10% lidocaine HCl into the medial rectus subdivision of the oculomotor nucleus caused a reversible inactivation of the medial rectus motoneurons and OINs. As expected, the inactivation of medial rectus motoneurons resulted in an exophoria and weakness of adduction for the eye ipsilateral to the lidocaine injection. In addition, the lidocaine injection resulted in hypometric and slowed abducting saccades in the eye contralateral to the injection site. This result also suggest that the crossed OIN pathway is excitatory.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 先前的研究表明,在集合性眼球运动期间活动增加的中脑近反应细胞投射到内直肌运动神经元,内直肌运动神经元在集合时也会增加其活动。展神经核中的大多数神经元在集合时放电率降低,而这种辐辏信号的来源尚不清楚。猴子的动眼神经核间神经元(OINs)主要从动眼神经核的内直肌亚核投射到对侧展神经核,不过也有较小的同侧投射。由于这些解剖学联系,有人提出OIN输入可能是展神经神经元上所见辐辏信号的原因。OINs在眼球运动期间的行为及其突触驱动尚不清楚。因此,本研究的目的是确定这些神经元在共轭性和非共轭性眼球运动期间的行为,并确定这些神经元对展神经神经元具有兴奋性还是抑制性驱动。2. 对清醒恒河猴进行单单位记录研究,以表征OINs的行为。通过逆向激活和碰撞测试鉴定出18个OINs。记录的OINs在内收性扫视期间表现出爆发-紧张性活动模式,并且这些细胞中的大多数在集合性眼球运动时紧张性活动增加。3. 将鉴定出的OINs与动眼神经核内直肌亚核中大量未激活和未测试的水平爆发-紧张性细胞样本进行比较。结果表明,在辐辏和转位眼球运动期间,OINs的行为与内直肌运动神经元相似。没有一个OINs表现出垂直眼位敏感性。4. 对同时含有OINs和内直肌运动神经元的动眼神经核进行微刺激,导致同侧眼出现大的内收抽搐,对侧眼出现较小的外展抽搐。后一种效应被认为是OINs支配对侧展神经核的结果。这一结果表明,交叉的OIN通路即使不是完全兴奋性的,也主要是兴奋性的。5. 向动眼神经核的内直肌亚核注射10%盐酸利多卡因会导致内直肌运动神经元和OINs可逆性失活。正如预期的那样,内直肌运动神经元的失活导致利多卡因注射侧眼出现外斜视和内收无力。此外,利多卡因注射导致注射部位对侧眼的外展扫视幅度减小且速度减慢。这一结果也表明交叉的OIN通路是兴奋性的。(摘要截断于400字)

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