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Responsiveness of human nasal mucosa to trigeminal stimuli depends on the site of stimulation.

机译:人鼻粘膜对三叉神经刺激的反应性取决于刺激的部位。

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摘要

There is evidence that functionally different areas can be distinguished within the nasal mucosa with regard to stimulation site and stimulus properties. The aim of the present study was the comparison of electrophysiological and psychophysical measures obtained in response to mechanical and chemosomatosensory stimulation of two different regions of the nasal mucosa. A total of 40 volunteers participated in this study (age range 21-36 years). Chemosomatosensory event-related potentials (ERPs) were recorded using gaseous CO2 as stimulant, while somatosensory ERPs were recorded in response to intranasal mechanical stimuli (air puffs). Stimuli were released to the anterior portion and to the posterior portion of the nasal cavity. A significant interaction between stimulus properties and site of stimulation could be detected after analysis of ERP parameters and intensity ratings. Thus, the chemosensory stimulus was perceived as stronger in the anterior portion of the nasal cavity whereas this was not the case for mechanosensory stimuli. In addition, mechanosensory stimuli were found to evoke ERPs with shorter latencies. These results underline the idea that the respiratory mucosa should not be seen as a homogeneous tissue. It exhibits varying sensitivities to trigeminal stimulation depending on stimulus quality and site of stimulation. Hence, perception of chemosensory stimuli seems to be most accurate in the anterior portion of the nasal cavity, while sensitivity to mechanical stimuli appears to be highest in the posterior portion. In addition, these differences within the respiratory mucosa may contribute to differences in the perception of orthonasal and retronasal odorous stimulation.
机译:有证据表明,就刺激部位和刺激特性而言,鼻粘膜内可区分出功能不同的区域。本研究的目的是比较对鼻粘膜两个不同区域的机械和化学感官刺激所获得的电生理和心理物理指标。共有40名志愿者参加了这项研究(年龄21-36岁)。使用气态二氧化碳作为刺激物记录化学感官事件相关电位(ERP),同时记录响应鼻内机械刺激(吹气)的体感ERPs。刺激被释放到鼻腔的前部和后部。分析ERP参数和强度等级后,可以检测到刺激属性和刺激部位之间的显着相互作用。因此,在鼻腔的前部感觉到化学感觉刺激较强,而机械感觉刺激则不是这种情况。此外,发现机械感官刺激可以唤起较短潜伏期的ERP。这些结果强调了不应将呼吸道粘膜视为均匀组织的想法。它对三叉神经刺激表现出不同的敏感性,具体取决于刺激质量和刺激部位。因此,化学感觉刺激的感觉在鼻腔的前部似乎是最准确的,而对机械刺激的敏感性似乎在后部是最高的。另外,呼吸道粘膜内的这些差异可能导致对鼻和鼻后气味刺激的感知的差异。

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