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眼球会聚时滑车单元的活动。

Trochlear unit activity during ocular convergence.

作者信息

Mays L E, Zhang Y, Thorstad M H, Gamlin P D

机构信息

Department of Physiological Optics, School of Optometry, University of Alabama, Birmingham 35294.

出版信息

J Neurophysiol. 1991 Jun;65(6):1484-91. doi: 10.1152/jn.1991.65.6.1484.

DOI:10.1152/jn.1991.65.6.1484
PMID:1875256
Abstract
  1. Ocular convergence is usually accompanied by excyclotorsion of the eyes. Furthermore, the magnitude of cyclotorsion is dependent on the elevation of the eyes. The reason for this excyclotorsion during convergence is not understood. 2. Excyclotorsion could be produced by either increased activity in the inferior oblique muscle or decreased activity in the superior oblique muscle. An earlier study indicated that convergence may also be accompanied by a temporal (lateral) translation of the eye. This observation is more consistent with a relaxation of the superior oblique than contraction of the inferior oblique. 3. This hypothesis was tested by recording the activity of 31 neurons in the trochlear nucleus, which contains the superior oblique motoneurons. This was done in alert monkeys that were trained to make both versional and vergence eye movements. In addition, the cyclotorsion associated with convergence was measured in one of these monkeys. 4. A consistent excyclotorsion associated with convergence was observed. Trochlear unit activity decreased during convergence in all cells tested. The magnitude of this decrease was significantly greater than that seen with conjugate adduction. Furthermore, the size of the decrease varied systematically with ocular elevation in a manner that was consistent with earlier measures of cyclotorsion during convergence. 5. These results suggest that the excyclotorsion seen during convergence, and perhaps the lateral translation of the eye, are due to a relaxation of the superior oblique muscle. This relaxation during convergence is greater than that which accompanies similar conjugate movements of the eyes. We hypothesize that this peculiar pattern of muscle innervation has a motor rather than sensory function.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 眼球集合通常伴随着眼球外旋。此外,眼球外旋的程度取决于眼球的上抬程度。集合时出现这种外旋的原因尚不清楚。2. 下斜肌活动增加或上斜肌活动减少都可能导致眼球外旋。一项早期研究表明,集合也可能伴随着眼球的颞侧(外侧)平移。这一观察结果更符合上斜肌的放松而非下斜肌的收缩。3. 通过记录滑车神经核中31个神经元的活动来验证这一假设,滑车神经核包含上斜肌运动神经元。实验在警觉的猴子身上进行,这些猴子经过训练可进行眼球的同向和集合运动。此外,还对其中一只猴子集合时的眼球外旋情况进行了测量。4. 观察到集合时伴有一致的眼球外旋。在所测试的所有细胞中,滑车神经核单位活动在集合时均降低。这种降低的幅度明显大于共轭内收时的幅度。此外,降低的幅度随眼球上抬程度呈系统性变化,这与早期集合时眼球外旋的测量结果一致。5. 这些结果表明,集合时出现的眼球外旋,或许还有眼球的外侧平移,是由于上斜肌的放松所致。集合时的这种放松程度大于眼球类似共轭运动时的放松程度。我们推测这种特殊的肌肉神经支配模式具有运动而非感觉功能。(摘要截选至250词)

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