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听努力的皮质组织:功能近红外光谱的新见解。

The cortical organization of listening effort: New insight from functional near-infrared spectroscopy.

机构信息

Brain and Language Center for Neuroimaging, Gallaudet University, Washington, DC, USA.

Department of Psychological Sciences, University of Connecticut, Storrs, CT, USA.

出版信息

Neuroimage. 2021 Oct 15;240:118324. doi: 10.1016/j.neuroimage.2021.118324. Epub 2021 Jul 2.

Abstract

Everyday challenges impact our ability to hear and comprehend spoken language with ease, such as accented speech (source factors), spectral degradation (transmission factors), complex or unfamiliar language use (message factors), and predictability (context factors). Auditory degradation and linguistic complexity in the brain and behavior have been well investigated, and several computational models have emerged. The work here provides a novel test of the hypotheses that listening effort is partially reliant on higher cognitive auditory attention and working memory mechanisms in the frontal lobe, and partially reliant on hierarchical linguistic computation in the brain's left hemisphere. We specifically hypothesize that these models are robust and can be applied in ecologically relevant and coarse-grain contexts that rigorously control for acoustic and linguistic listening challenges. Using functional near-infrared spectroscopy during an auditory plausibility judgment task, we show the hierarchical cortical organization for listening effort in the frontal and left temporal-parietal brain regions. In response to increasing levels of cognitive demand, we found (i) poorer comprehension, (ii) slower reaction times, (iii) increasing levels of perceived mental effort, (iv) increasing levels of brain activity in the prefrontal cortex, (v) hierarchical modulation of core language processing regions that reflect increasingly higher-order auditory-linguistic processing, and (vi) a correlation between participants' mental effort ratings and their performance on the task. Our results demonstrate that listening effort is partly reliant on higher cognitive auditory attention and working memory mechanisms in the frontal lobe and partly reliant on hierarchical linguistic computation in the brain's left hemisphere. Further, listening effort is driven by a voluntary, motivation-based attention system for which our results validate the use of a single-item post-task questionnaire for measuring perceived levels of mental effort and predicting listening performance. We anticipate our study to be a starting point for more sophisticated models of listening effort and even cognitive neuroplasticity in hearing aid and cochlear implant users.

摘要

日常挑战会影响我们轻松聆听和理解口语的能力,例如带有口音的言语(来源因素)、频谱降级(传输因素)、复杂或不熟悉的语言使用(信息因素)以及可预测性(语境因素)。听觉退化和语言在大脑和行为中的复杂性已经得到了充分的研究,并且已经出现了几种计算模型。这里的工作为以下假设提供了一个新的测试:听力努力部分依赖于额叶的高级认知听觉注意力和工作记忆机制,部分依赖于大脑左半球的层次化语言计算。我们特别假设这些模型是稳健的,可以应用于具有严格控制声学和语言听力挑战的生态相关的粗粒度上下文中。我们使用功能近红外光谱技术在听觉似然性判断任务中,在额部和左颞顶叶大脑区域中展示了听力努力的层次皮质组织。随着认知需求的增加,我们发现:(i)理解能力下降;(ii)反应时间变慢;(iii)感知的心理努力水平增加;(iv)前额叶皮层的大脑活动增加;(v)反映出越来越高阶的听觉语言处理的核心语言处理区域的层次调制;(vi)参与者的心理努力评分与任务表现之间存在相关性。我们的结果表明,听力努力部分依赖于额叶的高级认知听觉注意力和工作记忆机制,部分依赖于大脑左半球的层次化语言计算。此外,听力努力是由一个自愿的、基于动机的注意力系统驱动的,我们的结果验证了使用单项任务后问卷调查来衡量感知到的心理努力水平并预测听力表现。我们预计我们的研究将为助听器和人工耳蜗使用者的听力努力甚至认知神经可塑性的更复杂模型奠定基础。

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