Ehlis A-C, Ringel T M, Plichta M M, Richter M M, Herrmann M J, Fallgatter A J
Laboratory for Psychophysiology and Functional Imaging, Department of Psychiatry, Psychosomatics, and Psychotherapy, University of Wuerzburg, Fuechsleinstrabetae 15, 97080 Wuerzburg, Germany.
Neuroscience. 2009 Mar 31;159(3):1032-43. doi: 10.1016/j.neuroscience.2009.01.015. Epub 2009 Jan 19.
Sensory gating refers to the ability of cerebral networks to inhibit responding to irrelevant environmental stimuli, a mechanism that protects the brain from information overflow. The reduction of the P50 amplitude (an early component of the event-related potential/ERP in electrophysiological recordings) after repeated occurrence of a particular acoustic stimulus is one means to quantitatively assess gating mechanisms. Even though P50 suppression has been extensively investigated, neuroimaging studies on the cortical correlates of auditory sensory gating are so far very sparse. Near-infrared spectroscopy (NIRS) is an optical imaging technique perfectly suitable for the investigation of auditory paradigms, since it involves virtually no noise. We conducted a simultaneous NIRS-ERP measurement to assess cortical correlates of auditory sensory gating in humans. The multi-channel NIRS recording indicated a specific activation of prefrontal and temporo-parietal cortices during conditions of increased sensory gating (dual-click trials). Combining the hemodynamic data with an electrophysiological index of the "gating quality" (gating quotient Q) revealed a positive correlation between the amount of sensory gating and the strength of the hemodynamic response during dual-clicks in the left prefrontal and temporal cortices. The results are in line with previous findings and confirm a possible inhibitory influence of the prefrontal cortex on primary auditory cortices.
感觉门控是指大脑网络抑制对无关环境刺激做出反应的能力,这是一种保护大脑免受信息过载的机制。在特定听觉刺激重复出现后,事件相关电位(ERP)电生理记录中P50波幅(ERP的早期成分)的降低是定量评估门控机制的一种方法。尽管对P50抑制进行了广泛研究,但迄今为止,关于听觉感觉门控的皮层相关性的神经影像学研究非常稀少。近红外光谱(NIRS)是一种光学成像技术,非常适合用于研究听觉范式,因为它几乎不产生噪音。我们进行了同步NIRS-ERP测量,以评估人类听觉感觉门控的皮层相关性。多通道NIRS记录表明,在感觉门控增强的条件下(双击试验),前额叶和颞顶叶皮层有特定激活。将血流动力学数据与“门控质量”的电生理指标(门控商Q)相结合,发现在左侧前额叶和颞叶皮层双击期间,感觉门控量与血流动力学反应强度之间呈正相关。这些结果与先前的发现一致,并证实了前额叶皮层对初级听觉皮层可能存在抑制作用。