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Dopamine enhances signal-to-noise ratio in cortical-brainstem encoding of aversive stimuli

机译:多巴胺增强厌恶刺激的皮质-脑干编码中的信噪比。

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摘要

Despite abundant evidence that dopamine (DA) modulates medial prefrontal cortex (mPFC) activity to mediate diverse behavioral functions,, the precise circuit computations remain elusive. One potentially unifying model by which DA can underlie a diversity of functions is to modulate the signal-to-noise ratio (SNR) in subpopulations of mPFC neurons, where neural activity conveying sensory information (signal) is amplified relative to spontaneous firing (noise). Here, we demonstrate that DA increases the SNR of responses to aversive stimuli in mPFC neurons projecting to the dorsal periaqueductal gray (dPAG). Using electrochemical approaches, we reveal the precise time course of pinch-evoked DA release in the mPFC, and show that mPFC DA biases behavioral responses to aversive stimuli. Activation of mPFC-dPAG neurons is sufficient to drive place avoidance and defensive behaviors. mPFC-dPAG neurons displayed robust shock-induced excitations, as visualized by single-cell, projection-defined microendoscopic calcium imaging. Finally, photostimulation of DA terminals in the mPFC revealed an increase in SNR in mPFC-dPAG responses to aversive stimuli. Together, these data highlight how mPFC DA can route sensory information in a valence-specific manner to different downstream circuits.
机译:尽管有大量证据表明多巴胺(DA)调节内侧前额叶皮层(mPFC)的活性以介导各种行为功能,但精确的电路计算仍然难以捉摸。 DA可以作为多种功能基础的一种潜在统一模型是调节mPFC神经元的亚群中的信噪比(SNR),其中传递感觉信息(信号)的神经活动相对于自发发射(噪音)放大。在这里,我们证明DA可以提高投射到导水管周围灰色(dPAG)的mPFC神经元中对厌恶刺激的响应的SNR。使用电化学方法,我们揭示了捏捏诱发的DA在mPFC中释放的精确时间过程,并表明mPFC DA偏向了对厌恶刺激的行为响应。 mPFC-dPAG神经元的激活足以驱动避空和防御行为。 mPFC-dPAG神经元显示出强大的休克诱发的兴奋作用,如单细胞,投影定义的微内镜钙成像所显示的。最后,mPFC中DA末端的光刺激显示,mPFC-dPAG对厌恶刺激的反应中SNR升高。这些数据一起突出显示了mPFC DA如何以特定价的方式将感官信息传递到不同的下游电路。

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