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311.
New experiments were performed within a systematic investigationof the discriminative properties of olfactory receptor cellsin the frog. Extracellular spike responses of receptor unitswere recorded during stimulation with 39 different odorants.Several general properties of the olfactory receptors, alreadydescribed, were confirmed. The overall selectivity was foundto be lower than in previous studies. Enantiomeric forms ofcitronellol and carvone were discriminated by several receptorcells, mainly in quantitative terms. In a series of eight cycloketones,each compound was the best stimulus for at least one receptorcell and some receptor cells had several ‘best stimuli’.Five odorants were delivered at two concentrations. All thereceptors responding to the lowest concentration also respondedto the highest one.  相似文献   
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Electrical activity was recorded from single cells in the olfactorybulb when electrically stimulating the medial and lateral olfactorytract and when stimulating the olfactory epithelium with aminoacids. Bulbar units excited by stimulation of the medial olfactorytract were found in the medial and middle parts of the bulb.Neurones in the dorso-lateral part of the bulb were excitedby stimulation of lateral tract. Units inhibited by stimulationof the lateral or medial olfactory tracts had a reversed distributionwith the majority found in the medial or lateral parts of thebulb respectively. The chemicals tested induced changes in thedischarge of units mainly situated in the lateral part of thebulb.  相似文献   
316.
Delaleu  J.C.; Holley  A. 《Chemical senses》1980,5(3):205-218
The effects of the thiol-specific reagent N-ethylmaleimide (NEM)used in the vapour phase have been tested on the olfactory epitheliumof the frog when recording the electro-olfactogram (EOG) andspike activity from single receptor cells. The reagent was deliveredalone or mixed with the odorant isoamyl acetate. At low concentrationthe reagent induced slow potentials resembling simple EOGs.At higher concentrations (20% of the saturated vapour) threenegative and one positive slow components were observed in theresponse. A complex relationship was found between the amplitudeof the slow potential and the concentration of the reagent.Repeated stimulations at high concentration caused the suppressionof the negative voltage transients and the development of thepositive component. NEM vapour elicited spike discharges insome of the recorded units, with the responses resembling thoseevoked by usual odorants. After long-lasting stimulations (30 sec) with NEM, the receptorsfailed to respond to both reagent and odorant. This suppressionof response could be partly prevented by exposing the olfactoryepithelium to the odorant vapour before and during the exposureto the reagent (protection). The results indicate that NEM acts on the olfactory epitheliumin several ways, including an odorant-like action on olfactoryreceptor sites. An effect on the supporting cells is also suggested.Hypotheses for explaining the protection mechanism are considered.  相似文献   
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