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Intense Threat Switches Dorsal Raphe Serotonin Neurons to a Paradoxical Operational Mode

机译:强烈的威胁将背Ra肌5-羟色胺神经元切换为反常的操作模式

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摘要

Survival depends on the selection of behaviors adaptive for the current environment. For example, a mouse should run from a rapidly looming hawk but should freeze if the hawk is coasting across the sky. Although serotonin has been implicated in adaptive behavior, environmental regulation of its functional role remains poorly understood. We found that stimulation of dorsal raphe serotonin neurons suppressed movement in low- and moderate-threat environments but induced escape behavior in high-threat environments, and that movement-related dorsal raphe serotonin neural dynamics inverted in high-threat environments. Stimulation of dorsal raphe GABA neurons promoted movement in negative but not positive environments, and movement-related GABA neural dynamics inverted between positive and negative environments. Thus, dorsal raphe circuits switch between distinct operational modes to promote environment-specific adaptive behaviors.
机译:生存取决于对当前环境适应的行为选择。例如,鼠标应从快速隐约可见的鹰上奔跑,但如果鹰在天空中滑行,则应冻结。尽管5-羟色胺与适应行为有关,但对其功能作用的环境调节仍知之甚少。我们发现刺激背缝血清素神经元抑制了中低威胁环境下的运动,但诱导了高威胁环境下的逃逸行为,而运动相关背缝血清素神经元动力学在高威胁环境下发生了反转。背缝GABA神经元的刺激促进了在阴性但不是阳性环境中的运动,并且与运动相关的GABA神经动力学在阳性和阴性环境之间反转。因此,背栅电路在不同的操作模式之间切换,以促进特定于环境的适应行为。

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