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多模态方法测量听力努力度:听觉任务需求对生理测量的影响及其关系的系统评价

A Multimodal Approach to Measuring Listening Effort: A Systematic Review on the Effects of Auditory Task Demand on Physiological Measures and Their Relationship.

机构信息

Amsterdam UMC location Vrije Universiteit Amsterdam, Otolaryngology-Head and Neck Surgery, Ear & Hearing, Amsterdam Public Health Research Institute, Amsterdam, The Netherlands.

Department of Biological Psychology, Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.

出版信息

Ear Hear. 2024;45(5):1089-1106. doi: 10.1097/AUD.0000000000001508. Epub 2024 Jun 17.

Abstract

OBJECTIVES

Listening effort involves the mental effort required to perceive an auditory stimulus, for example in noisy environments. Prolonged increased listening effort, for example due to impaired hearing ability, may increase risk of health complications. It is therefore important to identify valid and sensitive measures of listening effort. Physiological measures have been shown to be sensitive to auditory task demand manipulations and are considered to reflect changes in listening effort. Such measures include pupil dilation, alpha power, skin conductance level, and heart rate variability. The aim of the current systematic review was to provide an overview of studies to listening effort that used multiple physiological measures. The two main questions were: (1) what is the effect of changes in auditory task demand on simultaneously acquired physiological measures from various modalities? and (2) what is the relationship between the responses in these physiological measures?

DESIGN

Following Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines, relevant articles were sought in PubMed, PsycInfo, and Web of Science and by examining the references of included articles. Search iterations with different combinations of psychophysiological measures were performed in conjunction with listening effort-related search terms. Quality was assessed using the Appraisal Tool for Cross-Sectional Studies.

RESULTS

A total of 297 articles were identified from three databases, of which 27 were included. One additional article was identified from reference lists. Of the total 28 included articles, 16 included an analysis regarding the relationship between the physiological measures. The overall quality of the included studies was reasonable.

CONCLUSIONS

The included studies showed that most of the physiological measures either show no effect to auditory task demand manipulations or a consistent effect in the expected direction. For example, pupil dilation increased, pre-ejection period decreased, and skin conductance level increased with increasing auditory task demand. Most of the relationships between the responses of these physiological measures were nonsignificant or weak. The physiological measures varied in their sensitivity to auditory task demand manipulations. One of the identified knowledge gaps was that the included studies mostly used tasks with high-performance levels, resulting in an underrepresentation of the physiological changes at lower performance levels. This makes it difficult to capture how the physiological responses behave across the full psychometric curve. Our results support the Framework for Understanding Effortful Listening and the need for a multimodal approach to listening effort. We furthermore discuss focus points for future studies.

摘要

目的

听力努力是指感知听觉刺激所需的心理努力,例如在嘈杂的环境中。例如,由于听力能力受损,长时间增加的听力努力可能会增加健康并发症的风险。因此,识别有效的、敏感的听力努力测量方法很重要。生理测量已被证明对听觉任务需求的操作敏感,并被认为反映了听力努力的变化。这些测量包括瞳孔扩张、α 功率、皮肤电导率和心率变异性。本系统评价的目的是提供使用多种生理测量方法的听力努力研究概述。两个主要问题是:(1)听觉任务需求变化对来自不同模态的同时获得的生理测量有什么影响?(2)这些生理测量的反应之间有什么关系?

设计

根据系统评价和荟萃分析的首选报告项目(PRISMA)指南,在 PubMed、PsycInfo 和 Web of Science 中搜索相关文章,并检查纳入文章的参考文献。与听力努力相关的搜索词一起,对不同组合的心理生理测量进行了搜索迭代。使用横断面研究评估工具评估质量。

结果

从三个数据库中总共确定了 297 篇文章,其中 27 篇被纳入。从参考文献中又确定了 1 篇文章。在总共纳入的 28 篇文章中,有 16 篇文章对生理测量之间的关系进行了分析。纳入研究的总体质量是合理的。

结论

纳入的研究表明,大多数生理测量要么对听觉任务需求的操作没有影响,要么在预期的方向上有一致的影响。例如,瞳孔扩张增加,射血前期缩短,皮肤电导率随着听觉任务需求的增加而增加。这些生理测量反应之间的大多数关系都是无意义的或微弱的。生理测量对听觉任务需求的操作敏感性不同。已确定的知识空白之一是,纳入的研究大多使用高性能水平的任务,导致生理变化在较低性能水平下的代表性不足。这使得难以捕捉生理反应在整个心理测量曲线上的行为。我们的结果支持努力聆听的理解框架,并需要采用多模态方法来测量聆听努力。我们还讨论了未来研究的重点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d64/11325958/7b9c24fb61f3/aud-45-1089-g001.jpg

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