Spehar Brent P, Tye-Murray Nancy, Sommers Mitchell S
Department of Otolaryngology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Acoust Soc Am. 2008 May;123(5):2858-66. doi: 10.1121/1.2890748.
The ability to integrate information across sensory channels is critical for both within- and between-modality speech processing. The present study evaluated the hypothesis that inter- and intramodal integration abilities are related, in young and older adults. Further, the investigation asked if intramodal integration (auditory+auditory), and intermodal integration (auditory+visual) resist changes as a function of either aging or the presence of hearing loss. Three groups of adults (young with normal hearing, older with normal hearing, and older with hearing loss) were asked to identify words in sentence context. Intramodal integration ability was assessed by presenting disjoint passbands of speech (550-750 and 1650-2250 Hz) to either ear. Integration was indexed by factoring monotic from dichotic scores to control for potential hearing- or age-related influences on absolute performance. Intermodal integration ability was assessed by presenting the auditory and visual signals. Integration was indexed by a measure based on probabilistic models of auditory-visual integration, termed integration enhancement. Results suggested that both types of integration ability are largely resistant to changes with age and hearing loss. In addition, intra- and intermodal integration were shown to be not correlated. As measured here, these findings suggest that there is not a common mechanism that accounts for both inter- and intramodal integration performance.
跨感觉通道整合信息的能力对于模态内和模态间的语音处理都至关重要。本研究评估了一个假设,即在年轻人和老年人中,模态间和模态内的整合能力是相关的。此外,该研究还探讨了模态内整合(听觉+听觉)和模态间整合(听觉+视觉)是否会随着衰老或听力损失的出现而抵抗变化。三组成年人(听力正常的年轻人、听力正常的老年人和听力损失的老年人)被要求在句子语境中识别单词。通过向任意一只耳朵呈现不连续的语音通带(550 - 750赫兹和1650 - 2250赫兹)来评估模态内整合能力。通过从双耳分数中分解出单耳分数来控制对绝对表现的潜在听力或年龄相关影响,以此为整合能力进行索引。通过呈现听觉和视觉信号来评估模态间整合能力。通过基于听觉 - 视觉整合概率模型的一种测量方法(称为整合增强)为整合能力进行索引。结果表明,这两种整合能力在很大程度上都能抵抗年龄和听力损失带来的变化。此外,模态内和模态间的整合被证明是不相关的。以此处测量的结果来看,这些发现表明不存在一种共同机制来解释模态间和模态内的整合表现。