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顶叶皮质中定向视觉注意的机制。

Parietal lobe mechanisms for directed visual attention.

作者信息

Lynch J C, Mountcastle V B, Talbot W H, Yin T C

出版信息

J Neurophysiol. 1977 Mar;40(2):362-89. doi: 10.1152/jn.1977.40.2.362.

Abstract
  1. Experiments were made on the cortex of the inferior parietal lobule in 10 hemispheres of six alert, behaving monkeys. The electrical signs of the impulse discharges of single cortical cells were recorded as the monkeys executed tasks requiring them to fixate stationary visual targets, track those which moved slowly, and to make saccadic movements to foveate those which suddenly jumped from one locus to another within the field of view. A total of 907 neurons of area 7 were identified in terms of their physiological properties, particularly the correlation of their activity with the oculomotor components of these behavioral acts of directed visual attention; 480 of these were located by cytoarchitectural layer. Most identifiable cells of area 7 are visuomotor neurons, in a special and conditional sense. Their discharge frequencies increase before and during those steady fixations and movements of the eyes which secure and maintain foveation of objects, but only if the visual targets engaged are linked by a strong motivational drive; in our experiments, one between thirst and the light whose dimming the animal has learned to detect for liquid reward. We have identified and studied three major classes of neurons in area 7. 2. The visual fixation neurons (57%) accelerate discharge synchronously with fixation of a visual object the animal desires. The incremented discharge continues until reward, but then declines abruptly even when there is no immediate shift of the line of gaze. Fixation neurons are relatively inactive during those casual fixations by which the animal insepcts the surrounding environment. Mist fixation neurons subtend gaze fields limited to one quadrant or half of the total gaze field. The sum of the gaze fields of the fixation neurons in one hemisphere is weighted moderately toward the contralateral side. Fixation cells also discharge during slow pursuit movements in any direction so long as the movement stays within the gaze field of the neuron under study. About 40% of fixation cells are suppressed before and during saccadic movements of the eyes to a new target within the gaze field of the fixation cell. Those suppressed are located preferentially in layer V of the cortex. Suppression is maximal for saccades directed contralaterally to the hemisphere under study. 3. Visual tracking neurons are active during oculomotor pursuit of slowly moving visual objects, not during steady fixations. They show a marked directional but no laterality relation, and are suppressed before and during a visually evoked saccade superimposed on the smooth pursuit movement. The rate of discharge is a flat function of tracking speed so that these cells do not appear to emit signals which specify the speed of smooth pursuit movements. 4. The saccade neurons are active before and during visually evoked saccadic movements of the eyes but not before spontaneous saccades, no matter whether made in light or near darkness. The discharge of saccade neurons leads the eye movement by as much as 150 ms (mean, 73 ms)...
摘要
  1. 对6只处于警觉、行为状态的猴子的10个半球的顶下小叶皮质进行了实验。当猴子执行要求它们注视静止视觉目标、跟踪缓慢移动的目标以及进行扫视运动以注视视野内突然从一个位置跳到另一个位置的目标的任务时,记录单个皮质细胞冲动放电的电信号。根据其生理特性,特别是其活动与这些定向视觉注意行为的动眼神经成分的相关性,共识别出907个7区神经元;其中480个通过细胞构筑层定位。7区大多数可识别细胞在特殊和有条件的意义上是视觉运动神经元。它们的放电频率在确保和维持物体中央凹注视的眼睛稳定注视和运动之前及期间增加,但前提是所涉及的视觉目标由强烈的动机驱动联系起来;在我们的实验中,是口渴与动物已学会检测其变暗以获取液体奖励的光之间的联系。我们在7区识别并研究了三大类神经元。2. 视觉注视神经元(57%)在动物注视其想要的视觉物体时同步加速放电。增加的放电持续到获得奖励,但随后即使视线没有立即转移也会突然下降。在动物随意注视周围环境时,注视神经元相对不活跃。错误注视神经元的注视视野限于一个象限或整个注视视野的一半。一个半球内注视神经元的注视视野总和适度偏向对侧。只要运动保持在被研究神经元的注视视野内,注视细胞在任何方向的缓慢跟踪运动期间也会放电。在注视细胞的注视视野内,眼睛向新目标进行扫视运动之前和期间,约40%的注视细胞受到抑制。那些受到抑制的细胞优先位于皮质的V层。对向被研究半球对侧的扫视,抑制最大。3. 视觉跟踪神经元在对缓慢移动的视觉物体进行动眼神经跟踪期间活跃,在稳定注视期间不活跃。它们表现出明显的方向关系但无偏侧性,并且在叠加于平稳跟踪运动上的视觉诱发扫视之前和期间受到抑制。放电率是跟踪速度的平稳函数,因此这些细胞似乎不发出指定平稳跟踪运动速度的信号。4. 扫视神经元在眼睛的视觉诱发扫视运动之前和期间活跃,但在自发扫视之前不活跃,无论在明亮还是接近黑暗的环境中。扫视神经元的放电比眼球运动提前多达150毫秒(平均73毫秒)……

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