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Assistive Hearing Technology for Deaf and Hard-of-Hearing Spoken Language Learners

机译:聋人和听力困难的口语学习者的辅助听力技术

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Radical advancements in hearing technology in the last 30 years have offered some deaf and hard-of-hearing (DHH) children the adequate auditory access necessary to acquire spoken language with high-quality early intervention. However, meaningful achievement gaps in reading and spoken language persist despite the engineering marvel of modern hearing aids and cochlear implants. Moreover, there is enormous unexplained variability in spoken language and literacy outcomes. Aspects of signal processing in both hearing aids and cochlear implants are discussed as they relate to spoken language outcomes in preschool and school-age children. In suggesting areas for future research, a case is made for not only expanding the search for mechanisms of influence on outcomes outside of traditional device- and child-related factors, but also for framing the search within Biopsychosocial systems theories. This theoretical approach incorporates systems of risk factors across many levels, as well as the bidirectional and complex ways in which factors influence each other. The combination of sophisticated hearing technology and a fuller understanding of the complex environmental and biological factors that shape development will help maximize spoken language outcomes in DHH children and contribute to laying the groundwork for successful literacy and academic development.
机译:在过去的30年中,听力技术的突飞猛进的发展为一些聋哑和听力困难(DHH)的孩子提供了通过高质量的早期干预来获得口语所必需的充足听觉通道。然而,尽管现代助听器和人工耳蜗在工程上令人赞叹,但在阅读和口语方面仍然存在有意义的成就差距。此外,口头语言和扫盲结果存在巨大的无法解释的差异。讨论了助听器和人工耳蜗中信号处理的各个方面,因为它们与学龄前和学龄儿童的口语结果有关。在提出未来研究领域的建议时,不仅要扩大对传统装置和儿童相关因素以外影响结果的影响机制的研究范围,而且要在生物心理社会系统理论框架内寻求框架。这种理论方法结合了跨多个级别的风险因素系统,以及因素相互影响的双向和复杂方式。先进的听力技术与对影响发展的复杂环境和生物学因素的全面理解相结合,将有助于最大程度地提高DHH儿童的口语成绩,并为成功的扫盲和学术发展奠定基础。

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