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猕猴视束核与副视束背侧终核神经元视觉感受野的定量分析

Quantitative analysis of visual receptive fields of neurons in nucleus of the optic tract and dorsal terminal nucleus of the accessory optic tract in macaque monkey.

作者信息

Hoffmann K P, Distler C

机构信息

Allgemeine Zoologie and Neurobiologie, Ruhr-Universitaet Bochum, Federal Republic of Germany.

出版信息

J Neurophysiol. 1989 Aug;62(2):416-28. doi: 10.1152/jn.1989.62.2.416.

Abstract
  1. The visual receptive field properties of neurons in the nucleus of the optic tract (NOT) in the pretectum and the dorsal terminal nucleus (DTN) of the accessory optic tract were analyzed quantitatively in anesthetized, paralyzed macaque monkeys. 2. Visual latencies to reversals in direction of stimulus movement ranged from 40 to 80 ms [61 +/- 13.5 (SD) ms]. 3. All neurons increased their discharge rate during ipsiversive movement and decreased their ongoing activity during contraversive movement of single stimuli or whole-field random dot patterns. The population of neurons in the left NOT-DTN was excited most strongly by leftward movement pointing 4 degrees down; neurons in the right NOT-DTN were excited most strongly by rightward movement pointing 6 degrees down. The mean angle between the directions yielding the highest and the lowest discharge rate in the two populations of NOT-DTN neurons was 177 degrees. 4. The deviation of the preferred excitatory directions from the horizon in individual neurons varied with recording depth. Within the first 500 microns below the midbrain surface, neurons preferred near-horizontal directions, whereas neurons recorded more deeply preferred more oblique directions of stimulus movement. 5. The tuning widths of NOT-DTN neurons in the preferred excitatory direction were very broad. The mean halfwidth defined as the range of directions eliciting responses greater than 50% of the maximum was 127 +/- 25 degrees. 6. Moving a random dot pattern and a single bar of light simultaneously but in opposite directions caused NOT-DTN neurons to increase their discharge rate as soon as one of the two stimuli moved in the ipsiversive direction. The reduction in overall discharge rates when two stimuli moved in opposite directions indicates mainly inhibitory interactions. 7. All NOT-DTN neurons could be activated from both eyes. Interactions between the two eyes were modest and unspecific. Misalignment of the visual axes of the two eyes had no influence on response strength. 8. Optimal speeds of stimulus movement varied widely for different NOT-DTN neurons. The effective range of speeds to elicit direction-selective responses in the total population was very broad (0.1400 degrees/s. With oscillating horizontal stimulation, NOT-DTN neurons followed repetition rates up to 4 Hz at excursions of 40 degrees. Speeds greater than 500 degrees/s were either not effective or resulted in a suppression of ongoing activity in all directions of movement.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在麻醉、麻痹的猕猴中,对顶盖前区视束核(NOT)和副视束背侧终末核(DTN)神经元的视觉感受野特性进行了定量分析。2. 刺激运动方向反转的视觉潜伏期为40至80毫秒[61±13.5(标准差)毫秒]。3. 所有神经元在同侧运动期间增加放电率,在单个刺激或全场随机点图案的对侧运动期间降低其持续活动。左侧NOT-DTN中的神经元群体在向左下方4度的运动中兴奋最强;右侧NOT-DTN中的神经元在向右下方6度的运动中兴奋最强。NOT-DTN神经元的两个群体中产生最高和最低放电率的方向之间的平均角度为177度。4. 单个神经元中偏好的兴奋方向与水平方向的偏差随记录深度而变化。在中脑表面以下的前500微米内,神经元偏好接近水平的方向,而记录更深的神经元偏好更倾斜的刺激运动方向。5. NOT-DTN神经元在偏好的兴奋方向上的调谐宽度非常宽。定义为引发大于最大反应50%的反应的方向范围的平均半高宽为127±25度。6. 同时但以相反方向移动随机点图案和单个光条会导致NOT-DTN神经元在两个刺激之一向同侧方向移动时立即增加其放电率。当两个刺激向相反方向移动时总体放电率的降低主要表明抑制性相互作用。7. 所有NOT-DTN神经元都可由双眼激活。两眼之间的相互作用适度且不具特异性。两眼视轴的不对准对反应强度没有影响。8. 不同的NOT-DTN神经元的刺激运动最佳速度差异很大。在整个群体中引发方向选择性反应的有效速度范围非常宽(0.1至400度/秒)。在水平振荡刺激下,NOT-DTN神经元在40度偏移时可跟随高达4赫兹的重复率。大于500度/秒的速度要么无效,要么导致在所有运动方向上的持续活动受到抑制。(摘要截断于400字)

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