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Optical imaging of plastic changes induced by fear conditioning in the auditory cortex

机译:恐惧皮层中听觉调节引起的可塑性变化的光学成像

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摘要

The plastic changes in the auditory cortex induced by a fear conditioning, through pairing a sound (CS) with an electric foot-shock (US), were investigated using an optical recording method with voltage sensitive dye, RH795. In order to investigate the effects of association learning, optical signals in the auditory cortex in response to CS (12 kHz pure tone) and non-CS (4, 8, 16 kHz pure tone) were recorded before and after normal and sham conditioning. As a result, the response area to CS enlarged only in the conditioning group after the conditioning. Additionally, the rise time constant of the auditory response to CS significantly decreased and the relative peak value and the decay time constant of the auditory response to CS significantly increased after the conditioning. This study introduces an optical approach to the investigation of fear conditioning, representational plasticity, and the cholinergic system. The findings are synthesized in a model of the synaptic mechanisms that underlie cortical plasticity.
机译:通过将声音(CS)与电击脚(US)配对使用恐惧感条件引起的听觉皮层的塑性变化,该研究使用了带有电压敏感染料RH795的光学记录方法。为了研究联想学习的效果,在正常和假调之前和之后,分别记录响应CS(12 kHz纯音)和非CS(4、8、16 kHz纯音)的听觉皮层中的光信号。结果,仅在调理后的调理组中对CS的响应区域扩大。另外,在调节后,对CS的听觉响应的上升时间常数显着降低,并且对CS的听觉响应的相对峰值和衰减时间常数显着增加。这项研究介绍了一种光学方法来研究恐惧条件,代表性可塑性和胆碱能系统。这些发现是在皮质可塑性基础的突触机制模型中综合的。

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