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Single-unit and polygraphic recordings in the awake, anaesthetic-free and head-restrained rat

机译:在唤醒,无麻醉品大鼠中的单机和多重记录

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In vivo investigation of the central nervous system is subject to interference with anaesthetic agents. Their influence on neural activity during electrophysiological recordings can be bypassed using a pre-implanted animal model, developed in the authors' laboratory. In this model, the preimplantation on the skull of a light device for further stereotaxic frame attachment allows, after a contention habituation period, classical electrophysiological approaches in the central nervous system of anaesthetic free-rats, The use of this model is compatible with repetitive single unit recordings. These experiments may be associated with other electrophysiological or physiological recordings such as electroencephalogram and electromyogram (EEG, EMG) or systemic/local pharmacological challenges (iontophoresis, pneumatic ejection). This technique allowed the authors to record simultaneously cortical activity and firing activity of basal ganglia neurones involved in movement disorders such as Parkinson's disease. The authors describe time-locked changes in firing pattern of subthalamic nucleus cells and cortical activity during vigilance state transitions in the normal rat.
机译:体内调查中枢神经系统受到麻醉剂的干扰。它们可以使用在作者实验室开发的预注入的动物模型来绕过电生理记录期间对神经活动的影响。在该模型中,用于进一步立体框架附件的轻型装置的颅骨上的颅骨允许,在争用习惯期,在麻醉游泳的中枢神经系统中的经典电生理方法,使用该模型与重复单一相兼容单位录音。这些实验可能与其他电生理学或生理记录相关联,例如脑电图和肌电图(EEG,EMG)或全身/局部药理学挑战(离子电渗疗法,气动喷射)。该技术允许作者同时记录涉及帕金森病等运动障碍的基底神经节神经元的皮质活性和射击活性。作者描述了在正常大鼠中警觉状态过渡期间的分子粒细胞核细胞和皮质活动的射击模式的锁定变化。

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