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猕猴尾侧外侧丘脑枕单个神经元的视觉反应

Visual responses of single neurons in the caudal lateral pulvinar of the macaque monkey.

作者信息

Benevento L A, Miller J

出版信息

J Neurosci. 1981 Nov;1(11):1268-78. doi: 10.1523/JNEUROSCI.01-11-01268.1981.

Abstract

Single unit recordings were made in the portion of the lateral pulvinar which forms the lateral aspect of the caudal pole of the thalamus, i.e., PL gamma (Rezak, M., and L. A. Benevento (1977) Soc. Neurosci. Abstr. 3:573; Rezak, M. (1978) Soc. Neurosci. Abstr. 4: 642), of macaque monkeys. PL gamma receives convergent inputs from the occipital cortex and has strong reciprocal interconnections with the visual association cortex, including the inferotemporal cortex (areas 20 and 21). It was found the that PL gamma has a poor or nonexistent retinotopic organization. Many of the neurons had large, unflanked, overlapping receptive fields which often included the fovea. A few neurons could be influenced by a visual stimulus placed anywhere in the visual field described by a tangent screen. The receptive fields could be bilateral or located entirely within the contralateral or ipsilateral hemifields. The majority of units were binocular and exhibited various types of binocular interaction which could be quite complex. The binocular response was not predictable from the algebraic sum of the monocular responses and could be of the opposite sign (e.g., excitatory when the monocular response was inhibitory). Neurons which were also sensitive to the direction of movement of stimuli projected upon the tangent screen formed a major group. Of the units sensitive to tangentially moving stimuli, two special subgroups were found. One group of neurons gave sustained responses to static levels of luminance, while the other group was sensitive to simuli which moved toward or away from the eyes. The nonlinear rate of change of the apparent size of approaching or receding stimuli was described by a mathematical function which also describes the response of the neurons to the same stimuli. For many of these units which were sensitive to tangentially moving stimuli and one other class of stimuli, such as luminance levels of movement in depth, the responses to one class were seemingly unrelated to the responses to the other class. The same statement may be made for monocular and binocular responses. It may be, then, that different wiring diagrams describe these different types of inputs. These physiological results are discussed in terms of the inputs to PL gamma as well as its cortical targets.

摘要

在猕猴的外侧丘脑枕的一部分进行了单细胞记录,该部分构成丘脑尾极的外侧部分,即PLγ(雷扎克,M.,和L.A.贝内文托(1977年)《神经科学学会摘要》3:573;雷扎克,M.(1978年)《神经科学学会摘要》4:642)。PLγ接受来自枕叶皮质的汇聚输入,并与视觉联合皮质,包括颞下皮质(20区和21区)有强烈的相互连接。研究发现PLγ的视网膜拓扑组织较差或不存在。许多神经元具有大的、无边界的、重叠的感受野,这些感受野通常包括中央凹。少数神经元可受到置于切线屏所描述的视野中任何位置的视觉刺激的影响。感受野可以是双侧的,也可以完全位于对侧或同侧半视野内。大多数单元是双眼的,并表现出各种类型的双眼相互作用,这些相互作用可能相当复杂。双眼反应不能从单眼反应的代数和预测出来,并且可能具有相反的符号(例如,当单眼反应是抑制性时为兴奋性)。对投射在切线屏上的刺激运动方向也敏感的神经元形成了一个主要群体。在对切线运动刺激敏感的单元中,发现了两个特殊的亚组。一组神经元对静态亮度水平有持续反应,而另一组对朝着或远离眼睛移动的刺激敏感。接近或后退刺激的表观大小的非线性变化率由一个数学函数描述,该函数也描述了神经元对相同刺激的反应。对于许多对切线运动刺激和另一类刺激(如深度运动的亮度水平)敏感的这些单元,对一类刺激的反应似乎与对另一类刺激的反应无关。对于单眼和双眼反应也可以这样说。那么,可能是不同的布线图描述了这些不同类型的输入。根据PLγ的输入及其皮质靶点对这些生理结果进行了讨论。

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