Department of Cellular and Molecular Physiology, Yale University School of Medicine , New Haven, Connecticut 06520.
Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06520; Interdepartmental Neuroscience Program, Yale University, New Haven, Connecticut 06520.
eNeuro. 2016 Aug 23;3(4). doi: 10.1523/ENEURO.0080-16.2016. eCollection 2016 Jul-Aug.
Contrast enhancement mediated by lateral inhibition within the nervous system enhances the detection of salient features of visual and auditory stimuli, such as spatial and temporal edges. However, it remains unclear how mechanisms for temporal contrast enhancement in the olfactory system can enhance the detection of odor plume edges during navigation. To address this question, we delivered to Drosophila melanogaster flies pulses of high odor intensity that induce sustained peripheral responses in olfactory sensory neurons (OSNs). We use optical electrophysiology to directly measure electrical responses in presynaptic terminals and demonstrate that sustained peripheral responses are temporally sharpened by the combined activity of two types of inhibitory GABA receptors to generate contrast-enhanced voltage responses in central OSN axon terminals. Furthermore, we show how these GABA receptors modulate the time course of innate behavioral responses after odor pulse termination, demonstrating an important role for temporal contrast enhancement in odor-guided navigation.
在神经系统中,侧抑制介导的对比增强增强了对视觉和听觉刺激的显著特征的检测,例如空间和时间边缘。然而,目前尚不清楚嗅觉系统中用于时间对比增强的机制如何增强在导航过程中对气味羽流边缘的检测。为了解决这个问题,我们向黑腹果蝇果蝇(Drosophila melanogaster)传递了高气味强度的脉冲,这些脉冲会在嗅觉感觉神经元(OSN)中诱导持续的外周反应。我们使用光学电生理学直接测量突触前末梢的电反应,并证明持续的外周反应通过两种类型的抑制性 GABA 受体的联合活动被时间锐化,从而在中枢 OSN 轴突末梢中产生对比增强的电压反应。此外,我们展示了这些 GABA 受体如何调节气味脉冲终止后先天行为反应的时间进程,证明了时间对比增强在气味导向导航中的重要作用。