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浓度和嗅吸流速对大鼠嗅觉电图的影响。

Effects of concentration and sniff flow rate on the rat electroolfactogram.

作者信息

Scott John W, Acevedo Humberto P, Sherrill Lisa

机构信息

Department of Cell Biology, 405 N Whitehead Biomedical Research Building, 615 Michael Street, Emory University School of Medicine, Atlanta, GA 30322-3030, USA.

出版信息

Chem Senses. 2006 Jul;31(6):581-93. doi: 10.1093/chemse/bjj063. Epub 2006 Jun 1.

Abstract

Previous reports using the electroolfactogram (EOG) to study the spatial and temporal aspects of response in the rodent olfactory epithelium had focused on high odorant concentrations that gave large responses. This investigation has used lower concentrations to test the difference between responses in the rat dorsomedial and lateral recesses with a range of nasal flow rates and a range of chemical properties. The responses to a highly polar, more hydrophilic odorant changed more steeply with flow rate than responses to a very nonpolar, hydrophobic odorant. With low flow rates there was a response delay in the lateral recess, which is consistent with the models indicating lower flow rates in that region. We observed significant volume conduction effects in which large responses in the dorsomedial region obscured smaller initial portions of the lateral responses. These effects could be removed by destroying the dorsomedial response with a high concentration of a low molecular weight ester. We caution that investigators of EOG recordings from the intact epithelium must attend to the possible presence of volume conduction, which can be assessed by attention to the selectivity of odorant response, response waveform, and response latency.

摘要

以往使用电嗅觉图(EOG)研究啮齿动物嗅觉上皮反应的空间和时间方面的报告,都集中在能产生大反应的高气味浓度上。本研究使用较低浓度来测试大鼠背内侧和外侧隐窝在一系列鼻气流速率和一系列化学性质下的反应差异。与对一种非常非极性的疏水性气味剂的反应相比,对一种高极性、更亲水性气味剂的反应随气流速率变化更为陡峭。在低气流速率下,外侧隐窝存在反应延迟,这与表明该区域气流速率较低的模型一致。我们观察到显著的容积传导效应,即背内侧区域的大反应掩盖了外侧反应较小的初始部分。通过用高浓度的低分子量酯破坏背内侧反应,可以消除这些效应。我们提醒,对完整上皮进行EOG记录的研究人员必须注意可能存在的容积传导,这可以通过关注气味剂反应的选择性、反应波形和反应潜伏期来评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40e9/2225541/21dcb67a2686/nihms-38218-f0001.jpg

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