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皮肤掩蔽。II. 猫体感皮层单个神经元兴奋和抑制性感受野的几何学

Cutaneous masking. II. Geometry of excitatory andinhibitory receptive fields of single units in somatosensory cortex of the cat.

作者信息

Laskin S E, Spencer W A

出版信息

J Neurophysiol. 1979 Jul;42(4):1061-82. doi: 10.1152/jn.1979.42.4.1061.

Abstract
  1. The responses of single neurons in the primary somatosensory cortex of the cat to brief air-pulse stimuli were quantitatively examined. These controlled natural stimuli activated almost exclusively rapidly adapting hair units which, on systematic movement of the stimulus through the receptive field, gave unit-response profiles that showed the classical unimodal tent-shaped distribution. 2. Conditioning stimulus-induced inhibition of a response evoked by a fixed test stimulus was measured by systematically moving the conditioning stimulus through the receptive field. The spatial distribution of in-field inhibitory activity was unimodal and highly covariant with that of the conditioning excitation, the peak inhibition corresponding to the functional center of the excitatory receptive field. 3. Nearly one-half of the units studied evidenced inhibition extending beyond the excitatory receptive field, forming a "surround" inhibitory region; but these were usually restricted areas with rather weak inhibitory effects. 4. Time-course measuring revealed, on the average, inhibition effects measureable from 10 ms before to some 70 ms following conditioning stimulation, with peak inhibition delayed some 10--15 ms from the conditioning stimulus onset. We showed the backward inhibition, occurring with the test stimulus delivered before the onset of the conditioning stimulus, to be a property of the test response duration. Inhibition measured in the surround areas had essentially the same time course as the inhibition calculated from measurements made within the receptive fields. 5. The spatial and temporal profiles of the excitatory and inhibitory cortical unitary activity are thus very similar to the parametric features of psychophysical enhancement and masking. These findings suggest that the excitatory and inhibitory activities related to individual stimuli interact in multipoint stimulus paradigms so that simple unimodal composite profiles are synthesized.
摘要
  1. 对猫初级体感皮层单个神经元对短暂空气脉冲刺激的反应进行了定量研究。这些可控的自然刺激几乎只激活快速适应的毛发单位,当刺激在感受野中系统移动时,这些单位的反应轮廓呈现出经典的单峰帐篷状分布。2. 通过将条件刺激在感受野中系统移动,测量条件刺激对固定测试刺激诱发反应的抑制作用。感受野内抑制性活动的空间分布是单峰的,并且与条件性兴奋的空间分布高度协变,最大抑制对应于兴奋性感受野的功能中心。3. 近一半被研究的单位表现出抑制作用延伸到兴奋性感受野之外,形成一个“周边”抑制区域;但这些通常是抑制作用较弱的受限区域。4. 时间进程测量显示,平均而言,在条件刺激前10毫秒到刺激后约70毫秒可测量到抑制作用,最大抑制比条件刺激开始延迟约10 - 15毫秒。我们发现,在条件刺激开始前施加测试刺激时出现的逆向抑制是测试反应持续时间的一个特性。在周边区域测量的抑制作用的时间进程与在感受野内测量计算得到的抑制作用基本相同。5. 因此,兴奋性和抑制性皮层单位活动的空间和时间轮廓与心理物理学增强和掩蔽的参数特征非常相似。这些发现表明,与单个刺激相关的兴奋性和抑制性活动在多点刺激范式中相互作用,从而合成简单的单峰复合轮廓。

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