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Assessing the photosensitivity of the compound eye in firefly photuris sp: An electrophysiological approach

机译:评估萤火虫Photuris SP中复合眼的光敏性:电生理方法

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In previous studies, regional structural variations in the firefly compound eye were described [1],[2]. These variations prompted us to conduct electrophysiological experiments to record and correlate neural activity in the optic lobes of Photuris firefly evoked in response to light flash directed at specific region of the compound eye. Electrophysiology was used to relate activity in the firefly visual neuro-sensory system to the eye structure. Electrophysiological responses obtained from optic lobes of the nocturnal Photuris fireflies in response to wavelength and region specific stimuli showed that they have a maximum spectral sensitivity in the green spectrum (λ central = 540 nm). These findings suggested variations of visual performance across the eye of the Photuris sp. firefly. The variation in the visually-evoked potential (EP) recordings from optic lobes (OL) in response to fixed intensity of light stimuli was not related to the facet size of the omitidial lens except in the central region. This study illustrates the effectiveness of applying a bioengineering system for analyzing visual performance in the compound eyes which reflect their visual behavior and specialization.
机译:在以前的研究中,萤火虫复眼区域的结构变化进行了描述[1],[2]。这些变化促使我们在类Photuris的视叶响应于针对复眼特定区域中的光闪光萤火虫诱发进行电生理实验来记录和关联的神经活动。电生理学使用在萤火虫视觉神经感觉系统的眼结构为涉及活性。响应于波长和区域特异性刺激从夜间类Photuris萤火虫视叶获得电生理反应显示,它们具有在绿色光谱中的最大光谱感光度(λ中央= 540纳米)。这些结果表明的跨类Photuris SP的眼睛视觉性能的变化。萤火虫。在从响应于光刺激固定强度视叶(OL)的视觉诱发电位(EP)录音变异不相关的omitidial透镜的小面尺寸除了在中心区域中。这项研究是应用生物工程系统的复眼反映他们的视觉行为和专业化分析的视觉表现的有效性。

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