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光遗传学超声刺激用于大脑范围内介导丘系依赖性行为的神经活动图谱绘制。

Optogenetic fUSI for brain-wide mapping of neural activity mediating collicular-dependent behaviors.

机构信息

Neuro-Electronics Research Flanders, Leuven, Belgium; Department of Biology, KU Leuven, Leuven, Belgium.

Neuro-Electronics Research Flanders, Leuven, Belgium; Department of Biology, KU Leuven, Leuven, Belgium; VIB, Leuven, Belgium.

出版信息

Neuron. 2021 Jun 2;109(11):1888-1905.e10. doi: 10.1016/j.neuron.2021.04.008. Epub 2021 Apr 29.

DOI:10.1016/j.neuron.2021.04.008
PMID:33930307
Abstract

Neuronal cell types are arranged in brain-wide circuits that guide behavior. In mice, the superior colliculus innervates a set of targets that direct orienting and defensive actions. We combined functional ultrasound imaging (fUSI) with optogenetics to reveal the network of brain regions functionally activated by four collicular cell types. Stimulating each neuronal group triggered different behaviors and activated distinct sets of brain nuclei. This included regions not previously thought to mediate defensive behaviors, for example, the posterior paralaminar nuclei of the thalamus (PPnT), which we show to play a role in suppressing habituation. Neuronal recordings with Neuropixels probes show that (1) patterns of spiking activity and fUSI signals correlate well in space and (2) neurons in downstream nuclei preferentially respond to innately threatening visual stimuli. This work provides insight into the functional organization of the networks governing innate behaviors and demonstrates an experimental approach to explore the whole-brain neuronal activity downstream of targeted cell types.

摘要

神经元细胞类型排列在大脑广泛的回路中,这些回路指导着行为。在小鼠中,上丘支配着一组靶向区域,这些靶向区域指导着定向和防御行为。我们结合功能超声成像(fUSI)和光遗传学,揭示了由四种上丘细胞类型激活的大脑区域的网络。刺激每个神经元群会引发不同的行为,并激活不同的脑核团。这包括以前不被认为介导防御行为的区域,例如丘脑的后旁核(PPnT),我们发现它在抑制习惯化方面发挥作用。使用 Neuropixels 探针进行的神经元记录表明:(1)峰电位活动和 fUSI 信号的空间相关性较好;(2)下游核团的神经元优先对先天威胁性视觉刺激作出反应。这项工作深入了解了支配先天行为的网络的功能组织,并展示了一种实验方法来探索靶向细胞类型下游的全脑神经元活动。

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