Temperature and the temporal resolving power of fly photoreceptors.

B Tatler, D C O'Carroll, S B Laughlin
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引用次数: 75

Abstract

A hot head gives an insect a clearer view of a moving world because warming reduces motion blur by accelerating photoreceptor responses. Over a natural temperature range, 19-34 degrees C, the speed of response of blowfly (Calliphora vicina) photoreceptors more than doubles, to produce the fastest functional responses recorded from an ocular photoreceptor. This acceleration increases temporal resolving power, as indicated by the corner frequency of the response power spectrum. When light adapted, the corner frequency increases from 53 Hz to 119 Hz with a Q10 of 1.9, and when dark adapted from 8 Hz to 32 Hz with a Q10 of 3.0. Temperature sensitivity originates in the phototransduction cascade, and is associated with signal amplification. The temperature sensitivity of photoreceptors must be taken into account when studying the mechanisms, function and ecology of vision, and gives a distinct advantage to insects that thermoregulate.

蝇光感受器的温度和时间分辨能力。
热的头部可以让昆虫更清楚地看到运动中的世界,因为变暖通过加速感光器的反应来减少运动模糊。在19-34摄氏度的自然温度范围内,苍蝇(Calliphora vicina)的光感受器的反应速度增加了一倍以上,以产生从眼部光感受器记录的最快的功能反应。这种加速增加了时间分辨能力,如响应功率谱的拐角频率所示。当光适应时,角频率从53 Hz增加到119 Hz, Q10为1.9;当暗适应时,角频率从8 Hz增加到32 Hz, Q10为3.0。温度敏感性起源于光导级联,并与信号放大有关。光感受器的温度敏感性在研究视觉的机制、功能和生态学时必须加以考虑,并使具有温度调节功能的昆虫具有明显的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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