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Identifying neural substrates of competitive interactions and sequence transitions during mechanosensory responses in Drosophila

机译:在<斜视>果蝇中的机械感应响应期间识别竞争性相互作用的神经底物和序列过渡

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Nervous systems have the ability to select appropriate actions and action sequences in response to sensory cues. The circuit mechanisms by which nervous systems achieve choice, stability and transitions between behaviors are still incompletely understood. To identify neurons and brain areas involved in controlling these processes, we combined a large-scale neuronal inactivation screen with automated action detection in response to a mechanosensory cue in Drosophila larva. We analyzed behaviors from 2.9x10 ~(5) larvae and identified 66 candidate lines for mechanosensory responses out of which 25 for competitive interactions between actions. We further characterize in detail the neurons in these lines and analyzed their connectivity using electron microscopy. We found the neurons in the mechanosensory network are located in different regions of the nervous system consistent with a distributed model of sensorimotor decision-making. These findings provide the basis for understanding how selection and transition between behaviors are controlled by the nervous system.
机译:神经系统具有选择适当的动作和动作序列,以响应感觉线索。神经系统实现的选择,稳定性和行为之间的过渡的电路机制仍然不完全理解。为了鉴定参与控制这些过程的神经元和大脑区域,我们将大规模神经元灭活筛网与果蝇幼虫的机械感染提示相结合,以自动化动作检测。我们分析了2.9x10〜(5)幼虫的行为,并确定了66条候选线路,其中有25个用于行动之间的竞争性互动。我们进一步详细描述了这些线中的神经元并使用电子显微镜分析它们的连接。我们发现机械感性网络中的神经元位于神经系统的不同区域,与传感器决策的分布式模型一致。这些发现为了解行为如何由神经系统控制的选择和转换提供了依据。

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