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哌甲酯在初级体感皮层的神经生理作用。

Neurophysiological actions of methylphenidate in the primary somatosensory cortex.

作者信息

Drouin Candice, Wang Dorothy, Waterhouse Barry D

机构信息

Department of Neurobiology and Anatomy, Drexel University College of Medicine, Philadelphia, Pennsylvania 19129, USA.

出版信息

Synapse. 2007 Dec;61(12):985-90. doi: 10.1002/syn.20454.

Abstract

As a catecholamine reuptake blocker, methylphenidate (MPH) enhances noradrenergic transmission and is likely to influence norepinephrine actions in sensory systems. To characterize neurophysiological actions of MPH in the primary somatosensory (SI) cortex, we recorded basal and whisker deflection-evoked discharge of infragranular sensory cortical neurons, before and after intraperitoneal administrations of saline and MPH (5 mg/kg) in halothane-anesthetized rats. MPH had two types of actions on sensory-evoked neuronal responses in the SI cortex, depending on the initial amplitude of the sensory response. When the whisker deflection induced a small excitatory response under control conditions, MPH significantly increased the amplitude of the response by approximately 40%. When the whisker stimulation induced a large excitatory response under control conditions, MPH did not significantly alter the amplitude of the response, but significantly decreased the duration and the peak latency of the response, so that the response was more focused. These neurophysiological actions of MPH may underlie some of the beneficial effects of the drug on sensory processing and attention.

摘要

作为一种儿茶酚胺再摄取阻滞剂,哌醋甲酯(MPH)可增强去甲肾上腺素能传递,并可能影响感觉系统中去甲肾上腺素的作用。为了表征MPH在初级体感(SI)皮层中的神经生理作用,我们在氟烷麻醉的大鼠腹腔注射生理盐水和MPH(5mg/kg)之前和之后,记录了颗粒下层感觉皮层神经元的基础放电和触须偏转诱发的放电。MPH对SI皮层中感觉诱发的神经元反应有两种作用,这取决于感觉反应的初始幅度。当在对照条件下触须偏转诱发小的兴奋性反应时,MPH可使反应幅度显著增加约40%。当在对照条件下触须刺激诱发大的兴奋性反应时,MPH不会显著改变反应幅度,但会显著缩短反应持续时间和峰值潜伏期,从而使反应更加集中。MPH的这些神经生理作用可能是该药物对感觉处理和注意力产生一些有益影响的基础。

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