Hyotan-machi ENT Clinic, Japan.
Neurosci Lett. 2011 Apr 15;493(3):136-9. doi: 10.1016/j.neulet.2011.02.026. Epub 2011 Feb 18.
The olfactory and trigeminal systems play a role in the sensation of odors. The intrinsic optical signal (IOS) imaging method allows visualization of the neuronal activity. The IOS was measured after the nasal epithelium had been exposed to olfactory (H(2)S) and trigeminal (CO(2)) stimuli. The IOS was measured in the area of the middle turbinate. The response patterns of H(2)S and CO(2) on the middle turbinate were different, and some overlap between regions of activation was also observed. The response to CO(2) (20%) on the medial side of the middle turbinate was significantly higher than the response on the lateral side. In contrast, the response to H(2)S (5.6 ppm) was greater on the lateral side than on the medial side. There were no significant differences in response between the medial and lateral sides of the middle turbinate to stimuli of lower concentration (H(2)S 2.8 ppm, CO(2) 5% and 10%). These data suggest that the middle turbinate has regions which are sensitive to both olfactory and trigeminal stimuli.
嗅觉和三叉神经系统在气味感知中发挥作用。固有光学信号(IOS)成像方法可用于可视化神经元活动。在鼻腔上皮暴露于嗅觉(H 2 S)和三叉神经(CO 2 )刺激后,测量 IOS。在中鼻甲区域测量 IOS。H 2 S 和 CO 2 在中鼻甲上的反应模式不同,并且还观察到激活区域之间的一些重叠。中鼻甲内侧对 CO 2 (20%)的反应明显高于外侧的反应。相比之下,中鼻甲外侧对 H 2 S(5.6 ppm)的反应大于内侧。对于较低浓度的刺激(H 2 S 2.8 ppm、CO 2 5%和 10%),中鼻甲内侧和外侧的反应之间没有显着差异。这些数据表明,中鼻甲有对嗅觉和三叉神经刺激都敏感的区域。