Causal Contributions of the Domain-General (Multiple Demand) and the Language-Selective Brain Networks to Perceptual and Semantic Challenges in Speech Comprehension.

IF 3.6 Q1 LINGUISTICS
Neurobiology of Language Pub Date : 2022-12-16 eCollection Date: 2022-01-01 DOI:10.1162/nol_a_00081
Lucy J MacGregor, Rebecca A Gilbert, Zuzanna Balewski, Daniel J Mitchell, Sharon W Erzinçlioğlu, Jennifer M Rodd, John Duncan, Evelina Fedorenko, Matthew H Davis
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Abstract

Listening to spoken language engages domain-general multiple demand (MD; frontoparietal) regions of the human brain, in addition to domain-selective (frontotemporal) language regions, particularly when comprehension is challenging. However, there is limited evidence that the MD network makes a functional contribution to core aspects of understanding language. In a behavioural study of volunteers (n = 19) with chronic brain lesions, but without aphasia, we assessed the causal role of these networks in perceiving, comprehending, and adapting to spoken sentences made more challenging by acoustic-degradation or lexico-semantic ambiguity. We measured perception of and adaptation to acoustically degraded (noise-vocoded) sentences with a word report task before and after training. Participants with greater damage to MD but not language regions required more vocoder channels to achieve 50% word report, indicating impaired perception. Perception improved following training, reflecting adaptation to acoustic degradation, but adaptation was unrelated to lesion location or extent. Comprehension of spoken sentences with semantically ambiguous words was measured with a sentence coherence judgement task. Accuracy was high and unaffected by lesion location or extent. Adaptation to semantic ambiguity was measured in a subsequent word association task, which showed that availability of lower-frequency meanings of ambiguous words increased following their comprehension (word-meaning priming). Word-meaning priming was reduced for participants with greater damage to language but not MD regions. Language and MD networks make dissociable contributions to challenging speech comprehension: Using recent experience to update word meaning preferences depends on language-selective regions, whereas the domain-general MD network plays a causal role in reporting words from degraded speech.

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通用领域(多重需求)和语言选择脑网络对语音理解中的感知和语义挑战的因果贡献。
除了领域选择性(额颞叶)语言区域外,聆听口语还涉及人类大脑的领域通用多重需求(MD;额顶叶)区域,尤其是在理解具有挑战性的情况下。然而,目前只有有限的证据表明 MD 网络对理解语言的核心方面做出了功能性贡献。在一项针对患有慢性脑损伤但没有失语症的志愿者(n = 19)的行为研究中,我们评估了这些网络在感知、理解和适应因声学退化或词汇语义模糊而变得更具挑战性的口语句子中的因果作用。我们在训练前和训练后通过单词报告任务测量了对声学降级(噪声编码)句子的感知和适应能力。MD 而非语言区域受损较严重的参与者需要更多的声码器通道才能实现 50% 的单词报告,这表明他们的感知能力受损。训练后,感知能力有所改善,反映出对声学退化的适应,但适应与病变位置或程度无关。句子连贯判断任务测量了对语义模糊的口语句子的理解能力。准确率很高,而且不受病变位置或程度的影响。随后的词语联想任务测量了对语义模糊的适应性,结果显示,在理解模糊词语后,低频词义的可用性增加(词义引申)。语言区而非 MD 区受损较严重的参与者的词义引物会减少。语言网络和 MD 网络对具有挑战性的言语理解做出了不同的贡献:利用最近的经验来更新词义偏好取决于语言选择区域,而一般领域的 MD 网络则在从退化的语音中报告单词时起着因果作用。
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来源期刊
Neurobiology of Language
Neurobiology of Language Social Sciences-Linguistics and Language
CiteScore
5.90
自引率
6.20%
发文量
32
审稿时长
17 weeks
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