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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >The effects of temperature on signalling in ocellar neurons of the desert locust, Schistocerca gregaria
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The effects of temperature on signalling in ocellar neurons of the desert locust, Schistocerca gregaria

机译:温度对沙漠蝗虫血吸虫卵细胞神经元信号传导的影响

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In Schistocerca gregaria ocellar pathways, large second-order L-neurons use graded potentials to communicate signals from the ocellar retina to third-order neurons in the protocerebrum. A third-order neuron, DNI, converts graded potentials into axonal spikes that have been shown in experiments at room temperature to be sparse and precisely timed. I investigated effects of temperature changes that a locust normally experiences on these signals. With increased temperature, response latency decreases and frequency responses of the neurons increase. Both the graded potential responses in the two types of neuron and the spikes in DNI report greater detail about a fluctuating light stimulus. Over a rise from 22 to 35°C the power spectrum of the L-neuron response encompasses higher frequencies and its information capacity increases from about 600 to 1,700 bits/s. DNI generates spikes more often during a repeated stimulus but at all temperatures it reports rapid decreases in light rather than providing a continual measure of light intensity. Information rate carried by spike trains increases from about 50 to 185 bits/s. At warmer temperatures, increased performance by ocellar interneurons may contribute to improved aerobatic performance by delivering spikes earlier and in response to smaller, faster light stimuli.
机译:在灰色血吸虫的卵泡囊通路中,大型的二阶L-神经元利用梯度电位将信号从卵母细胞视网膜传递至原大脑中的三阶神经元。三阶神经元DNI将分级电势转换为轴突突峰,在室温下的实验中显示该轴突突峰稀疏且精确计时。我研究了蝗虫通常经历的温度变化对这些信号的影响。随着温度升高,响应潜伏期减少,神经元的频率响应增加。两种神经元中的分级电位响应以及DNI中的尖峰都报告了有关波动光刺激的更多详细信息。在从22°C升高到35°C时,L-神经元响应的功率谱包含更高的频率,其信息容量从大约600比特/秒增加到1,700比特/秒。 DNI在重复刺激期间更经常产生尖峰,但在所有温度下,DNI都会报告光线迅速下降,而不是提供连续的光强度度量。尖峰序列承载的信息速率从大约50比特/秒增加到185比特/秒。在较暖的温度下,通过早期传递尖峰并响应较小,较快的光刺激,眼球中间神经元提高的性能可能有助于改善特技飞行性能。

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