Thalamus sends information about arousal but not valence to the amygdala

丘脑向杏仁核发送有关唤醒的信息,但不发送有关效价的信息

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作者:Chris A Leppla #, Laurel R Keyes #, Gordon Glober, Gillian A Matthews, Kanha Batra, Maya Jay, Yu Feng, Hannah S Chen, Fergil Mills, Jeremy Delahanty, Jacob M Olson, Edward H Nieh, Praneeth Namburi, Craig Wildes, Romy Wichmann, Anna Beyeler, Eyal Y Kimchi, Kay M Tye

Conclusion

We conclude that the MGN-BLA projector population acts as both filter and transferer of information by relaying information about the salience of cues to the amygdala, but these signals are not valence-specified.

Methods

Here, we use optogenetics and in vivo electrophysiological recordings to dissect the MGN-BLA circuit and explore the specific subpopulations for evidence of learning and synthesis of information that could impact downstream BLA encoding. We employ various machine learning techniques to investigate function within neural subpopulations. We introduce a novel method to investigate tonic changes across trial-by-trial structure, which offers an alternative approach to traditional trial-averaging techniques.

Results

We find that the MGN appears to encode arousal but not valence, unlike the BLA which encodes for both. We find that the MGN and the BLA appear to react differently to expected and unexpected outcomes; the BLA biased responses toward reward prediction error and the MGN focused on anticipated punishment. We uncover evidence of tonic changes by visualizing changes across trials during inter-trial intervals (baseline epochs) for a subset of cells.

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