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Progressive plasticity of auditory cortex during appetitive operant conditioning

机译:竞争性手术条件下听觉皮层的可塑性

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In stimulus-response-outcome learning, different regions in the cortico-basal ganglia network are progressively involved according to the stage of learning. However, the involvement of sensory cortex remains ellusive even though massive cortical projections to the striatum imply its significant role in this learning. Here we show that the global tonotopic representation in the auditory cortex changed progressively depending on the stage of training in auditory operant conditioning. At the early stage, tone-responsive areas mainly in the core cortex expanded, while both the core and belt cortices shrank at the late stage as behavior became conditioned. Taken together with previous findings, this progressive global plasticity from the core to belt cortices suggests differentiated roles in these areas: the core cortex serves as a filter to better identify auditory objects for hierarchical computation within the belt cortex, while the belt stores auditory objects and affects decision making through direct projections to limbic system and higher association cortex. Thus, the progressive plasticity in the present study reflects a shift from identification to storage of a behaviorally relevant auditory object, which is potentially associated with a habitual behavior.
机译:在刺激-反应-结果学习中,根据学习阶段的不同,皮质-基底神经节网络中的不同区域逐渐参与。然而,即使大量的皮层投射到纹状体暗示其在该学习中的重要作用,感觉皮层的参与仍然难以捉摸。在这里,我们显示,听觉皮层中的全局声音表达会根据听觉操作员条件训练的阶段而逐渐变化。在早期阶段,主要在核心皮层的音调响应区域扩展,而随着行为变得有条件,在后期核心和皮层皮质都收缩。结合以前的发现,这种从芯到带皮层的逐步的整体可塑性暗示了在这些领域的不同作用:芯带用作过滤器,以更好地识别听觉对象,以便在带皮层内进行分层计算,而带存储听觉对象和通过直接预测边缘系统和更高的联想皮层来影响决策。因此,本研究中的进行性可塑性反映了从行为相关听觉对象的识别到存储的转变,这可能与习惯行为有关。

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