Cingulate cortex facilitates auditory perception under challenging listening conditions

Kelsey L. Anbuhl, Marielisa Diez Castro, Nikki A. Lee, Vivian S. Lee, Dan H. Sanes
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Abstract

We often exert greater cognitive resources (i.e., listening effort) to understand speech under challenging acoustic conditions. This mechanism can be overwhelmed in those with hearing loss, resulting in cognitive fatigue in adults, and potentially impeding language acquisition in children. However, the neural mechanisms that support listening effort are uncertain. Evidence from human studies suggest that the cingulate cortex is engaged under difficult listening conditions, and may exert top-down modulation of the auditory cortex (AC). Here, we asked whether the gerbil cingulate cortex (Cg) sends anatomical projections to the AC that facilitate perceptual performance. To model challenging listening conditions, we used a sound discrimination task in which stimulus parameters were presented in either Easy or Hard blocks (i.e., long or short stimulus duration, respectively). Gerbils achieved statistically identical psychometric performance in Easy and Hard blocks. Anatomical tracing experiments revealed a strong, descending projection from layer 2/3 of the Cg1 subregion of the cingulate cortex to superficial and deep layers of primary and dorsal AC. To determine whether Cg improves task performance under challenging conditions, we bilaterally infused muscimol to inactivate Cg1, and found that psychometric thresholds were degraded for only Hard blocks. To test whether the Cg-to-AC projection facilitates task performance, we chemogenetically inactivated these inputs and found that performance was only degraded during Hard blocks. Taken together, the results reveal a descending cortical pathway that facilitates perceptual performance during challenging listening conditions.
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扣带皮层在具有挑战性的听力条件下促进听觉感知
在具有挑战性的声学条件下,我们经常使用更多的认知资源(即听力努力)来理解语音。这种机制在听力损失的人身上可能会被淹没,导致成年人的认知疲劳,并可能阻碍儿童的语言习得。然而,支持倾听努力的神经机制是不确定的。来自人类研究的证据表明,扣带皮层在困难的听力条件下参与,并可能对听觉皮层(AC)施加自上而下的调节。在这里,我们询问沙鼠扣带皮层(Cg)是否向AC发送了促进感知表现的解剖投影。为了模拟具有挑战性的听力条件,我们使用了一个声音识别任务,其中刺激参数分为简单或困难块(即分别为长或短刺激持续时间)。沙鼠在简单和困难的积木中取得了统计上相同的心理测试成绩。解剖追踪实验显示,从扣带皮层Cg1亚区2/3层到初级和背侧AC的浅层和深层有一个强烈的下降投影。为了确定Cg是否能在具有挑战性的条件下提高任务表现,我们双侧注入muscimol来灭活Cg1,并发现心理测量阈值仅在硬块中降低。为了测试Cg-to-AC投射是否促进了任务性能,我们从化学上停用了这些输入,发现性能仅在Hard block期间下降。综上所述,研究结果揭示了在具有挑战性的听力条件下,大脑皮层有一条下行通路促进了感知表现。
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