首页> 美国卫生研究院文献>The Journal of Physiology >Efferent control of stimulus access to the hamster vomeronasal organ.
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Efferent control of stimulus access to the hamster vomeronasal organ.

机译:传出控制进入仓鼠犁鼻器的刺激。

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摘要

Previous workers had identified the vomeronasal organ, on anatomical evidence, as an accessory olfactory organ, present in most terrestrial vertebrates. Lesion experiments had demonstrated its importance in sexual behaviour in the hamster. Howevever, the sequestered position of the vomeronasal receptor epithelium within the organ raised questions concerning the access of olfactory stimuli. Using electrophysiological and pharmacological methods we have now demonstrated the following. 1. A pumping mechanism exists, powered by vasomotor movements, which can suck stimulus substances into the vonmeronasal organ. 2. A mechanism also exists for the active expulsion of the contents of the vomeronasal organ. 3. These mechanisms are activated by fibres running in the nasopalatine nerve. 4. The suction mechanism is controlled by sympathetic, probably adrenergic, fibres from the superior cervical sympathetic ganglion. Control of the expulsion mechanism has not been definitely established but does not appear to be sympathetic. 5. The vomeronasal organ can be adequately stimulated by activation of the pumping mechanism in the presence of odour. 6. Odour responses of single units in the accessory olfactory bulb have been recorded for the first time. 7. The time course of neuronal response in the accessory olfactory bulb is more rapid than predicted by many authors. The response is sufficiently fast that the vomeronasal system cannot be ruled out as a possible sensory pathway in many odour related behaviours. Possible modes of action of the pumping mechanism in awake animals are discussed.
机译:先前的工作人员已经从解剖学上的角度将犁鼻鼻器官识别为大多数陆生脊椎动物中存在的辅助嗅觉器官。病变实验证明了其在仓鼠性行为中的重要性。然而,犁鼻器受体上皮的隔离位置在器官内引起了关于嗅觉刺激的进入的问题。现在,我们使用电生理学和药理学方法论证了以下内容。 1.存在一种由血管舒缩运动驱动的泵送机制,可以将刺激性物质吸入到口鼻器官中。 2.还存在主动驱除犁鼻鼻器官内容物的机制。 3.这些机制被鼻ala神经中的纤维激活。 4.抽吸机制由上颈交感神经节的交感神经纤维控制,可能是肾上腺素能。尚未明确建立驱逐机制的控制权,但似乎没有同情心。 5.在有异味的情况下,通过激活抽气机制可以充分刺激犁鼻器器官。 6.首次记录了附件嗅球中单个装置的气味响应。 7.副嗅球中神经元反应的时程比许多作者所预测的要快。反应足够快,以致于不能将犁鼻系统作为许多与气味有关的行为中可能的感觉途径。讨论了清醒动物中泵送机制的可能作用方式。

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