蟑螂触角叶肾小球温度和嗅觉信息的整合。

R Zeiner, H Tichy
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引用次数: 30

摘要

蟑螂触角叶上的单个神经元不仅对变暖、变冷和柠檬油的气味做出反应,而且还将同时发生的温度和嗅觉刺激的反应整合在一起。与单独呈现的温度刺激相比,这种整合导致神经元活动的增加或减少。温暖方向和寒冷方向的温度变化的平均增益分别为9.5 (imp s(-1))摄氏度(-1)和10.2 (imp s(-1))摄氏度(-1)。因此,当温度升高0.1摄氏度或降低0.09摄氏度时,平均神经元的脉冲频率会升高1 imp s(-1)。对响应散点的检查表明,区分两个温暖或两个寒冷刺激所需的差异为0.5摄氏度。对温暖气味和寒冷气味刺激组合的增强反应获得了相似的增益和分辨能力值。所描述的神经元有:(1)局部中间神经元支配分布在触角叶内的多个肾小球;(2)投射神经元从距离触角叶表面140-280微米处的单个肾小球收集信息,并提供与蘑菇体萼和原大脑外侧叶的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of temperature and olfactory information in cockroach antennal lobe glomeruli.

Individual neurons in the antennal lobe of the cockroach not only respond to warming, cooling and the odor of lemon oil but they also integrate the responses to simultaneously occurring temperature and olfactory stimuli. This integration results in an increase or decrease of the neuron's activity as compared to its responses to the temperature stimuli presented alone. The mean gain for a change in temperature in the warm and cold direction is 9.5 (imp s(-1)) degrees C(-1) and 10.2 (imp s(-1)) degrees C(-1), respectively. Thus, the average neuron elevates its impulse frequency by 1 imp s(-1) when temperature is increased by 0.1 degree C or decreased by 0.09 degree C. Examination of response scatter reveals that the difference required between two warm or two cold stimuli to be discriminated is 0.5 degree C. Similar values for gain and resolving power are obtained for the enhanced responses to the warm-odor and the cold-odor stimulus combinations. The neurons described are: (1) local interneurons innervating a number of glomeruli distributed within the antennal lobe, and (2) projection neurons collecting information from single glomeruli at 140-280 microm from the surface of the antennal lobe and providing links with the calyces of the mushroom bodies and the lateral lobe of the protocerebrum.

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