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首页> 外文期刊>Journal of Neuroscience Methods >Calcium imaging of multiple neurons in freely behaving C. elegans
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Calcium imaging of multiple neurons in freely behaving C. elegans

机译:自由表现线虫中多个神经元的钙成像

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Caenorhabditis elegans is a popular model organism to study how neural circuits and genes regulate behavior. To reliably correlate circuit function with behavior, it is important to record neuronal activity in freely behaving worms. As neural circuits are composed of multiple neurons that cooperate to process information, it is highly desirable to simultaneously record the activity of multiple neurons in the circuitry. However, such a system has not been available in C. elegans. Here, we report the CARIBN II (. Calcium Ratiometric Imaging of Behaving Nematodes version II) system. This system provides smoother data collection and more importantly permits simultaneous imaging of calcium transients from multiple neurons in freely behaving worms. Using this system, we imaged the activity of AVA and RIM, two key neurons in the locomotion circuitry that regulate backward movement (reversal) in locomotion behavior. We found that AVA activity increases while RIM activity decreases during the same reversal events in spontaneous locomotion, consistent with the recent report that the AVA and RIM are involved in promoting the initiation of reversals. The CARIBN II system provides a valuable tool for dissecting the neural basis of behavior in C. elegans.
机译:秀丽隐杆线虫是一种流行的模型生物,用于研究神经回路和基因如何调节行为。为了可靠地将电路功能与行为相关联,重要的是记录自由行为的蠕虫中的神经元活动。由于神经回路由协作以处理信息的多个神经元组成,因此非常需要同时记录电路中多个神经元的活动。但是,这种系统在秀丽隐杆线虫中尚不可用。在这里,我们报告CARIBN II(行为线虫的钙比例成像II版)系统。该系统提供了更平滑的数据收集,更重要的是,它允许对自由行为的蠕虫中多个神经元的钙瞬变进行同步成像。使用该系统,我们对AVA和RIM的活动进行了成像,这是运动回路中的两个关键神经元,它们调节运动行为中的向后运动(逆转)。我们发现在自发运动的相同逆转事件中,AVA活性增加而RIM活性降低,这与最近的报道一致,即AVA和RIM参与促进逆转的启动。 CARIBN II系统为剖析秀丽隐杆线虫行为的神经基础提供了有价值的工具。

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