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optoPAD a closed-loop optogenetics system to study the circuit basis of feeding behaviors

机译:optoPAD一种闭环光遗传学系统用于研究进给行为的电路基础

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摘要

The regulation of feeding plays a key role in determining the fitness of animals through its impact on nutrition. Elucidating the circuit basis of feeding and related behaviors is an important goal in neuroscience. We recently used a system for closed-loop optogenetic manipulation of neurons contingent on the feeding behavior of Drosophila to dissect the impact of a specific subset of taste neurons on yeast feeding. Here, we describe the development and validation of this system, which we term the optoPAD. We use the optoPAD to induce appetitive and aversive effects on feeding by activating or inhibiting gustatory neurons in closed-loop – effectively creating virtual taste realities. The use of optogenetics allowed us to vary the dynamics and probability of stimulation in single flies and assess the impact on feeding behavior quantitatively and with high throughput. These data demonstrate that the optoPAD is a powerful tool to dissect the circuit basis of feeding behavior, allowing the efficient implementation of sophisticated behavioral paradigms to study the mechanistic basis of animals’ adaptation to dynamic environments.
机译:喂养的调节通过影响营养来决定动物的适应性,起着关键作用。阐明进食和相关行为的回路基础是神经科学的重要目标。我们最近使用了一种系统,用于视果蝇摄食行为而定的神经元闭环光遗传学操作,以剖析味觉神经元特定子集对酵母菌摄食的影响。在这里,我们描述了该系统的开发和验证,我们称之为optoPAD。我们使用optoPAD通过在闭环中激活或抑制味觉神经元来诱导进食的厌恶效应-有效地创造了虚拟的味觉现实。光遗传学的使用使我们能够改变单蝇的动力学和刺激可能性,并定量和高通量地评估对饲喂行为的影响。这些数据表明,optoPAD是剖析喂养行为的回路基础的强大工具,可以有效实施复杂的行为范例,以研究动物适应动态环境的机制基础。

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