RITZ-Rehabilitation Institute and Technology Center of Zurich, Department of Neurology, University of Zurich, Zurich, Switzerland.
Neuroimage. 2011 Jan 1;54(1):154-60. doi: 10.1016/j.neuroimage.2010.07.029. Epub 2010 Jul 16.
Dopaminergic projections to primary sensorimotor cortex (SMC) have been described anatomically, but their functional role is unknown. The objective here was to characterize how dopamine modulates the somatosensory evoked potential (SEP) and its receptive field in SMC. SEPs were evoked by median and tibial nerve stimulation and recorded using thin-film multielectrode arrays implanted epidurally over the caudal sensorimotor cortex of rats. SEP amplitudes and receptive fields were measured before and after intracortical injection of a D1- (SCH 23390) or a D2-receptor antagonist (raclopride). Both increased maximum SEP amplitudes by 107.5% and 82.1%, respectively (p<0.01), while vehicle application had no effect (5.9% change). SEP latencies and receptive fields remained unchanged. Dopamine antagonists increase the excitability of sensorimotor cortex to afferent signals. Dopamine, therefore, expectedly reduces SMC excitability thereby improving sensory signal-to-noise ratio. Dopaminergic modulation may render SMC circuitry more effective in processing sensory information from different sources.
多巴胺能投射到初级感觉运动皮层(SMC)在解剖学上已有描述,但它们的功能作用尚不清楚。本研究的目的是描述多巴胺如何调节 SMC 中的体感诱发电位(SEP)及其感受野。SEP 通过正中神经和胫神经刺激产生,并使用硬膜外植入的薄型多电极阵列记录大鼠尾部感觉运动皮层的 SEP。在皮层内注射 D1-(SCH 23390)或 D2-受体拮抗剂(raclopride)前后测量 SEP 幅度和感受野。两种药物分别使最大 SEP 幅度增加 107.5%和 82.1%(p<0.01),而载体应用则无影响(变化 5.9%)。SEP 潜伏期和感受野保持不变。多巴胺拮抗剂增加了感觉运动皮层对传入信号的兴奋性。因此,多巴胺预期会降低 SMC 的兴奋性,从而提高感觉信号噪声比。多巴胺能调制可能使 SMC 回路在处理来自不同来源的感觉信息时更有效。