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Temporal interactions in the cat visual system. III. Pharmacological studies of cortical suppression suggest a presynaptic mechanism

机译:猫视觉系统中的时间交互。三皮质抑制的药理研究表明突触前机制

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摘要

When tested with pairs of brief visual stimuli, neurons of the primary visual cortex of the cat show a long-lasting, orientation-selective suppression, termed “paired-pulse suppression.” The hypothesis that this suppression is due to GABAA-mediated inhibition was tested by performing temporal interaction tests before, during, and after iontophoretic application of the selective antagonist bicuculline methiodide (BMI). In keeping with previous reports, BMI elevated the spontaneous and evoked firing rates of cortical neurons, and altered basic receptive field properties. Under the influence of BMI, most neurons showed a reduced or abolished selectivity for stimulus orientation and direction of movement. The effects on orientation selectivity required higher ejection currents than did the effects on directional selectivity. At high ejection currents, most cells did lose selectivity for the orientation of a moving stimulus, but retained some selectivity for the orientation of a stationary stimulus. BMI, even at very high ejection currents, did not abolish paired-pulse suppression. In some cells, BMI enhanced or prolonged paired-pulse suppression. In further experiments, temporal interaction tests were performed in which one or the other of the component stimuli was replaced with a pharmacological stimulus (a pulse of glutamate or potassium). A pharmacological stimulus did not produce suppression of the response to a subsequent visual stimulus, nor did a visual stimulus suppress the response to a subsequent pharmacological stimulus. Paired-pulse suppression occurred only when both stimuli were visual. Taken together with previous results, the present data indicate that paired-pulse suppression is most likely due to a presynaptic mechanism.
机译:当用简短的视觉刺激对进行测试时,猫的主要视觉皮层的神经元会表现出持久的定向选择性抑制作用,称为“成对脉冲抑制”。该抑制作用是由于GABAA介导的抑制作用的假说,是通过在离子电渗疗法应用选择性拮抗双小分子甲硫氨酸(BMI)之前,之中和之后进行时间相互作用测试来检验的。与以前的报道一致,BMI提高了皮质神经元的自发和诱发放电速率,并改变了基本的感受野特性。在BMI的影响下,大多数神经元显示出对刺激方向和运动方向的选择性降低或取消。对取向选择性的影响需要比对方向选择性的影响更高的喷射电流。在高喷射电流下,大多数细胞的确失去了对移动刺激物定向的选择性,但保留了对静止刺激物定向的一些选择性。即使在非常高的喷射电流下,BMI也不会废除成对脉冲抑制。在某些细胞中,BMI增强或延长了成对脉冲抑制。在进一步的实验中,进行了时间相互作用测试,其中一种或另一种成分刺激被药理刺激(谷氨酸或钾的脉冲)代替。药理刺激既没有抑制对随后的视觉刺激的反应,也没有视觉抑制了对随后的药物刺激的反应。配对脉冲抑制仅在两种刺激均可见时才发生。结合先前的结果,本数据表明,成对脉冲抑制最有可能是由于突触前机制所致。

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