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Anti-phasic oscillatory development for speech and noise processing in cochlear implanted toddlers
Child Development ( IF 3.9 ) Pub Date : 2024-05-14 , DOI: 10.1111/cdev.14105 Meiyun Wu 1 , Yuyang Wang 2, 3 , Xue Zhao 1 , Tianyu Xin 4 , Kun Wu 1 , Haotian Liu 2, 5 , Shinan Wu 1 , Min Liu 1 , Xiaoke Chai 1 , Jinhong Li 1 , Chaogang Wei 4 , Chaozhe Zhu 1 , Yuhe Liu 2 , Yu-Xuan Zhang 1
Child Development ( IF 3.9 ) Pub Date : 2024-05-14 , DOI: 10.1111/cdev.14105 Meiyun Wu 1 , Yuyang Wang 2, 3 , Xue Zhao 1 , Tianyu Xin 4 , Kun Wu 1 , Haotian Liu 2, 5 , Shinan Wu 1 , Min Liu 1 , Xiaoke Chai 1 , Jinhong Li 1 , Chaogang Wei 4 , Chaozhe Zhu 1 , Yuhe Liu 2 , Yu-Xuan Zhang 1
Affiliation
Human brain demonstrates amazing readiness for speech and language learning at birth, but the auditory development preceding such readiness remains unknown. Cochlear implanted (CI) children (n = 67; mean age 2.77 year ± 1.31 SD; 28 females) with prelingual deafness provide a unique opportunity to study this stage. Using functional near-infrared spectroscopy, it was revealed that the brain of CI children was irresponsive to sounds at CI hearing onset. With increasing CI experiences up to 32 months, the brain demonstrated function, region and hemisphere specific development. Most strikingly, the left anterior temporal lobe showed an oscillatory trajectory, changing in opposite phases for speech and noise. The study provides the first longitudinal brain imaging evidence for early auditory development preceding speech acquisition.
中文翻译:
用于人工耳蜗植入幼儿语音和噪声处理的抗相位振荡开发
人脑在出生时就表现出对言语和语言学习的惊人准备,但在这种准备之前听觉发育仍然未知。患有舌前耳聋的人工耳蜗 (CI) 儿童 (n = 67;平均年龄 2.77 岁± 1.31 SD;28 名女性) 为研究这一阶段提供了独特的机会。使用功能性近红外光谱学,发现 CI 儿童的大脑在 CI 听力开始时对声音没有反应。随着 CI 体验的增加,长达 32 个月,大脑表现出功能、区域和半球特异性发育。最引人注目的是,左前颞叶呈振荡轨迹,语音和噪声以相反的相位变化。该研究为语音习得之前的早期听觉发育提供了第一个纵向脑成像证据。
更新日期:2024-05-14
中文翻译:
用于人工耳蜗植入幼儿语音和噪声处理的抗相位振荡开发
人脑在出生时就表现出对言语和语言学习的惊人准备,但在这种准备之前听觉发育仍然未知。患有舌前耳聋的人工耳蜗 (CI) 儿童 (n = 67;平均年龄 2.77 岁± 1.31 SD;28 名女性) 为研究这一阶段提供了独特的机会。使用功能性近红外光谱学,发现 CI 儿童的大脑在 CI 听力开始时对声音没有反应。随着 CI 体验的增加,长达 32 个月,大脑表现出功能、区域和半球特异性发育。最引人注目的是,左前颞叶呈振荡轨迹,语音和噪声以相反的相位变化。该研究为语音习得之前的早期听觉发育提供了第一个纵向脑成像证据。