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Engaging in a tone-detection task differentially modulates neural activity in the auditory cortex amygdala and striatum

机译:进行声调检测任务会差异性调节听觉皮层杏仁核和纹状体中的神经活动。

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摘要

The relationship between attention and sensory coding is an area of active investigation. Previous studies have revealed that an animal’s behavioral state can play a crucial role in shaping the characteristics of neural responses in the auditory cortex (AC). However, behavioral modulation of auditory response in brain areas outside the AC is not well studied. In this study, we used the same experimental paradigm to examine the effects of attention on neural activity in multiple brain regions including the primary auditory cortex (A1), posterior auditory field (PAF), amygdala (AMY), and striatum (STR). Single-unit spike activity was recorded while cats were actively performing a tone-detection task or passively listening to the same tones. We found that tone-evoked neural responses in A1 were not significantly affected by task-engagement; however, those in PAF and AMY were enhanced, and those in STR were suppressed. The enhanced effect was associated with an improvement of accuracy of tone detection, which was estimated from the spike activity. Additionally, the firing rates of A1 and PAF neurons decreased upon motor response (licking) during the detection task. Our results suggest that attention may have different effects on auditory responsive brain areas depending on their physiological functions.
机译:注意和感觉编码之间的关系是积极研究的领域。先前的研究表明,动物的行为状态在塑造听觉皮层(AC)的神经反应特征方面起着至关重要的作用。然而,在AC以外的大脑区域,听觉反应的行为调节尚未得到很好的研究。在这项研究中,我们使用相同的实验范式来检验注意力对多个大脑区域(包括初级听觉皮层(A1),后听觉场(PAF),杏仁核(AMY)和纹状体(STR))的神经活动的影响。在猫主动执行音调检测任务或被动聆听相同音调时记录了单个单位的尖峰活动。我们发现,任务参与对A1的语气诱发神经反应没有显着影响。但是,PAF和AMY中的那些增强,而STR中的那些被抑制。增强的效果与音调检测精度的提高有关,这是从尖峰活动估计的。此外,在检测任务期间,随着运动反应(舔),A1和PAF神经元的放电速率降低。我们的结果表明,注意力可能对听觉响应性大脑区域有不同的影响,具体取决于它们的生理功能。

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