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The reduced responsiveness of neurones in nucleus reticularis gigantocellularis following their excitation by peripheral nerve stimulation.

机译:网状巨核细胞中神经元受到周围神经刺激后,其反应性降低。

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摘要

1. Post-stimulus histograms of neuronal activity, constructed from extracellular recordings in decerebrate, decerebellate cats, have been used to investigate the responsiveness of neurons in nucleus reticularis gigantocellularis following their excitation by a peripheral nerve stimulus. 2. The response to a testing stimulus applied to a peripheral nerve was depressed following the response to a conditioning stimulus applied to the same or a different peripheral nerve. This reduction in responsiveness was maximal within 50 msec of the peak of the response to the conditioning stimulus. Response latencies to the testing stimulus were increased during the period of reduced responsiveness. 3. Responsiveness to a peripheral nerve stimulus was also reduced following a spontaneous or an antidromically evoked spike, but this effect was weaker and much shorter-lasting than that following a nerve-evoked spike. Thus, the reduced responsiveness cannot be solely due to phenomena which are an inevitable consequence of an action potential in the neurone. 4. In spontaneously firing neurones, the duration of the reduced responsiveness to a testing stimulus generally outlasted the depression of spontaneous activity which often followed an excitation evoked by a peripheral nerve conditioning stimulus. 5. The reduction in responsiveness to a testing stimulus applied to the same nerve as the conditioning stimulus was greater and longer-lasting than that to a testing stimulus applied to a different nerve. 6. When stimuli were applied to one nerve at a relatively high rate, the neurone became much less responsive to that input, but simultaneously became more responsive to low rate stimulation of other nerves. 7. It is concluded that the greater part of the reduced responsiveness is due to events occurring on the input pathway to a reticular neurone, or possibly in the region of the afferent endings on its dendrites. These processes may allow selective changes in responsiveness to different inputs, and enable the units to act as novelty detectors.
机译:1.刺激后神经元活动的直方图,是由小脑,小脑猫的细胞外记录构成的,用于研究网状巨核细胞神经元在受到周围神经刺激激发后的反应能力。 2.在对施加于相同或不同的周围神经的条件刺激的响应之后,对施加于周围神经的测试刺激的响应被抑制。在对条件刺激的响应峰值的50毫秒内,这种响应能力的下降最大。在减少响应期间,对测试刺激的响应潜伏期增加。 3.自发性或抗屈诱发性尖峰后对周围神经刺激的反应性也降低了,但这种效果比神经诱发性尖峰后更弱,持续时间短得多。因此,降低的响应能力不能仅仅由于现象,这是神经元中动作电位的必然结果。 4.在自发激发神经元中,对测试刺激的响应性降低的持续时间通常比自发活动性抑制的持续时间长,自发活动性抑制通常是在周围神经调节刺激引起的兴奋之后。 5.对施加于同一神经的测试刺激的反应性下降比对条件不同的刺激更大,且持续时间长于对不同神经的测试刺激。 6.当以较高的速率将刺激施加到一条神经上时,神经元对该输入的反应变得不那么敏感,而同时对其他神经元的低速率刺激则变得更加敏感。 7.得出的结论是,反应性降低的大部分是由于在网状神经元的输入路径上发生的事件,或者可能是在其树突的传入末端区域中发生的事件。这些过程可以允许对不同输入的响应进行选择性更改,并使这些单元可以充当新颖性检测器。

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  • 作者

    Fox, J E; Wolstencroft, J H;

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  • 年度 1976
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  • 正文语种 en
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