Gawne Timothy J
Department of Vision Sciences, University of Alabama at Birmingham, 924 South 18th Street, Birmingham, AL 35294, United States.
Neurosci Lett. 2008 Apr 25;435(3):198-203. doi: 10.1016/j.neulet.2008.02.036. Epub 2008 Feb 26.
Any given region of the cerebral cortex gets multiple inputs, and how these inputs are combined or selected is a key component of cortical function. Experiments in brain slices or other reduced preparations have shown that excitatory inputs to cortex produce a delayed feed-forward inhibition, which suggests that the relative timing of inputs at the scale of tens of milliseconds is crucial to cortical operation. Other mechanisms, such as synaptic depression and feedback inhibition, have also been shown to produce strong effects on this timescale. Thus, the relative timing of inputs should be fundamental in determining how a given region of cortex selects or combines its inputs. A rhesus monkey (Macaca mulatta) was trained to fixate on a spot of light for juice reward. Isolated single units in visual cortical area V4 were recorded using standard microelectrode techniques. Two visual stimuli were positioned such that each alone elicited a strong response. The stimuli were presented both separately and in combination, and their contrast and relative onset timing were varied. In general, the response of each neuron to two stimuli was locked to the response to that single stimulus that produced the shortest latency. A partial exception was that the responses to low-contrast stimuli were often less effective at suppressing later-arriving responses to high-contrast stimuli. The presentation of two stimuli in the receptive field of a visual cortical neuron is proposed as a model system for how changes in the relative timing of inputs affect cortical function in the intact system.
大脑皮层的任何给定区域都会接收多种输入,而这些输入如何组合或选择是皮层功能的关键组成部分。在脑片或其他简化标本上进行的实验表明,皮层的兴奋性输入会产生延迟的前馈抑制,这表明在几十毫秒的时间尺度上输入的相对时间对皮层运作至关重要。其他机制,如突触抑制和反馈抑制,在这个时间尺度上也已被证明会产生强烈影响。因此,输入的相对时间在决定皮层的给定区域如何选择或组合其输入方面应该是至关重要的。一只恒河猴(猕猴)经过训练,会注视一个光点以获取果汁奖励。使用标准微电极技术记录视觉皮层V4区中分离的单个神经元。放置两个视觉刺激,使得每个刺激单独出现时都会引发强烈反应。刺激分别呈现和组合呈现,并改变它们的对比度和相对起始时间。一般来说,每个神经元对两个刺激的反应都与对产生最短潜伏期的单个刺激的反应相关联。一个部分例外是,对低对比度刺激的反应在抑制后来到达的对高对比度刺激的反应方面往往效果较差。在视觉皮层神经元的感受野中呈现两个刺激被提议作为一个模型系统,用于研究在完整系统中输入相对时间的变化如何影响皮层功能。