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听觉系统中体感与运动相关信息的整合。

Integration of somatosensory and motor-related information in the auditory system.

作者信息

Lohse Michael, Zimmer-Harwood Paul, Dahmen Johannes C, King Andrew J

机构信息

Department of Physiology, Anatomy & Genetics, University of Oxford, Oxford, United Kingdom.

出版信息

Front Neurosci. 2022 Oct 18;16:1010211. doi: 10.3389/fnins.2022.1010211. eCollection 2022.

Abstract

An ability to integrate information provided by different sensory modalities is a fundamental feature of neurons in many brain areas. Because visual and auditory inputs often originate from the same external object, which may be located some distance away from the observer, the synthesis of these cues can improve localization accuracy and speed up behavioral responses. By contrast, multisensory interactions occurring close to the body typically involve a combination of tactile stimuli with other sensory modalities. Moreover, most activities involving active touch generate sound, indicating that stimuli in these modalities are frequently experienced together. In this review, we examine the basis for determining sound-source distance and the contribution of auditory inputs to the neural encoding of space around the body. We then consider the perceptual consequences of combining auditory and tactile inputs in humans and discuss recent evidence from animal studies demonstrating how cortical and subcortical areas work together to mediate communication between these senses. This research has shown that somatosensory inputs interface with and modulate sound processing at multiple levels of the auditory pathway, from the cochlear nucleus in the brainstem to the cortex. Circuits involving inputs from the primary somatosensory cortex to the auditory midbrain have been identified that mediate suppressive effects of whisker stimulation on auditory thalamocortical processing, providing a possible basis for prioritizing the processing of tactile cues from nearby objects. Close links also exist between audition and movement, and auditory responses are typically suppressed by locomotion and other actions. These movement-related signals are thought to cancel out self-generated sounds, but they may also affect auditory responses via the associated somatosensory stimulation or as a result of changes in brain state. Together, these studies highlight the importance of considering both multisensory context and movement-related activity in order to understand how the auditory cortex operates during natural behaviors, paving the way for future work to investigate auditory-somatosensory interactions in more ecological situations.

摘要

整合来自不同感觉模态信息的能力是许多脑区神经元的一个基本特征。由于视觉和听觉输入通常源自同一外部物体,而该物体可能位于距观察者一定距离之外,这些线索的整合可以提高定位准确性并加快行为反应。相比之下,在身体附近发生的多感觉相互作用通常涉及触觉刺激与其他感觉模态的组合。此外,大多数涉及主动触摸的活动都会产生声音,这表明这些模态中的刺激经常同时被体验到。在这篇综述中,我们研究了确定声源距离的依据以及听觉输入对身体周围空间神经编码的贡献。然后我们考虑了人类中听觉和触觉输入相结合的感知后果,并讨论了动物研究的最新证据,这些证据展示了皮层和皮层下区域如何共同作用来介导这些感觉之间的交流。这项研究表明,体感输入在听觉通路的多个层面与声音处理相互作用并对其进行调节,从脑干中的耳蜗核到皮层。已经确定了涉及从初级体感皮层到听觉中脑输入的神经回路,这些回路介导了触须刺激对听觉丘脑皮层处理的抑制作用,为优先处理来自附近物体的触觉线索提供了可能的基础。听觉和运动之间也存在紧密联系,听觉反应通常会被运动和其他动作所抑制。这些与运动相关的信号被认为可以抵消自身产生的声音,但它们也可能通过相关的体感刺激或由于脑状态的变化而影响听觉反应。总之,这些研究强调了考虑多感觉背景和与运动相关活动的重要性,以便理解听觉皮层在自然行为中是如何运作的,为未来在更生态的情境中研究听觉-体感相互作用的工作铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93ea/9622781/a445bca30518/fnins-16-1010211-g001.jpg

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