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Sensory-motor processing in substantia nigra pars reticulata in conscious cats.

机译:在有意识的猫黑质中的感觉运动处理。

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摘要

Extracellular recordings were made with chronically implanted micro-electrodes from 109 substantia nigra neurones in conscious cats. Ninety-six of 109 neurones met the criteria of presumed non-dopaminergic pars reticulata (s.n.r.) neurones. Background discharge, in animals in a state of relaxed wakefulness and in the absence of overt movements, was in the range of 11-37 impulses/s, mean 19.2 impulses/s. The discharges of fifty-two of ninety-six neurones tested were modified by innocuous mechanical skin stimulation. Neurones responded chiefly to stimuli delivered to the contralateral body side. Responses generally comprised net excitation and occurred with short latency (range 10-34 ms; mean 17.3 ms). Convergence from both forelimbs or the contralateral fore- and hind limbs was evident in a few cases. One-fourth (twenty-four out of ninety-six) of the s.n.r. neurones tested were sensitive to passive manipulation of limb joints in the quiet, conscious cat and responded exclusively to angular displacement of one contralateral joint. Responses were directional and phasic. None of the s.n.r. neurones tested responded to clicks and/or light flashes. However, stimuli moving across the contralateral visual field substantially modified the discharge rate of ten out of ninety-six s.n.r. neurones. Responses were directional and invariably associated with eye movements. Animals were also trained to walk on a treadmill and to perform certain self-generated limb movements. S.n.r. neurones with a receptive field on a limb regularly showed modulations in discharge during locomotion, phase-related to the step cycle, and also short-latency responses during disturbance of such movements. Ten out of ninety-six s.n.r. neurones discharged almost exclusively prior to and during self-generated movements of a single limb. Their most powerful modulations in firing rate occurred, whenever an animal tried to overcome an external impediment or to resist an imposed movement. These observations on s.n.r. neurones, taken together with previous findings on nigral influences on spinal motor circuitry, indicate that the s.n.r. represents an output station of the basal ganglia which is involved in the subconscious processing of convergent multimodal sensory information and which participates in setting appropriate gains and biasses of spinal motor neuronal systems to adequately deal with changing motor requirements.
机译:长期植入有意识的猫中109个黑质黑质神经元的微电极进行细胞外记录。 109个神经元中有96个符合假定的非多巴胺能网状(s.n.r.)神经元的标准。在动物处于放松清醒状态且没有明显运动的情况下,背景放电的范围为11-37脉冲/秒,平均19.2脉冲/秒。通过无害的机械性皮肤刺激改变了所测试的96个神经元中的52个放电。神经元主要对传递到对侧身体一侧的刺激作出反应。响应通常包括净激励,且发生时间短(范围10-34 ms;平均17.3 ms)。在少数情况下,前肢或对侧前肢和后肢均会聚。 s.n.r.的四分之一(百分之九十六中的二十四)测试的神经元对安静,有意识的猫的四肢关节的被动操作敏感,并且仅对一个对侧关节的角位移有反应。响应是定向的和阶段性的。没有一个测试的神经元对点击和/或闪烁有反应。但是,在对侧视野中移动的刺激实质上改变了96 s.n.r中十分之一的放电率。神经元。反应是方向性的,并且总是与眼球运动有关。还对动物进行了训练,使其在跑步机上行走并执行某些自发的肢体运动。 S.n.r.在肢体上具有接受区域的神经元在运动过程中经常表现出放电调节,与步阶周期相关,并且在这种运动受到干扰时还表现出短暂的反应。九十六分之一神经元几乎只在单肢自我生成的运动之前和之中放电。每当动物试图克服外部障碍或抵抗强加的运动时,它们就会对射速产生最强大的调节。这些关于s.n.r.神经元,加上以前对脊髓运动回路的黑色素影响的研究结果表明,s.n.r。代表基底神经节的输出站,该输出站参与会聚的多模式感觉信息的潜意识处理,并且参与设置脊柱运动神经元系统的适当增益和偏差,以充分应对变化的运动需求。

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