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人类听觉皮层的功能图谱:对一名因下丘创伤导致听觉失认症患者的功能磁共振成像研究

Functional Mapping of the Human Auditory Cortex: fMRI Investigation of a Patient with Auditory Agnosia from Trauma to the Inferior Colliculus.

作者信息

Poliva Oren, Bestelmeyer Patricia E G, Hall Michelle, Bultitude Janet H, Koller Kristin, Rafal Robert D

机构信息

*Wolfson Centre for Clinical and Cognitive Neuroscience, School of Psychology, Bangor University, Bangor, Wales, United Kingdom †School of Psychology, University of Bath, Bath, United Kingdom.

出版信息

Cogn Behav Neurol. 2015 Sep;28(3):160-80. doi: 10.1097/WNN.0000000000000072.

Abstract

OBJECTIVE

To use functional magnetic resonance imaging to map the auditory cortical fields that are activated, or nonreactive, to sounds in patient M.L., who has auditory agnosia caused by trauma to the inferior colliculi.

BACKGROUND

The patient cannot recognize speech or environmental sounds. Her discrimination is greatly facilitated by context and visibility of the speaker's facial movements, and under forced-choice testing. Her auditory temporal resolution is severely compromised. Her discrimination is more impaired for words differing in voice onset time than place of articulation. Words presented to her right ear are extinguished with dichotic presentation; auditory stimuli in the right hemifield are mislocalized to the left.

METHODS

We used functional magnetic resonance imaging to examine cortical activations to different categories of meaningful sounds embedded in a block design.

RESULTS

Sounds activated the caudal sub-area of M.L.'s primary auditory cortex (hA1) bilaterally and her right posterior superior temporal gyrus (auditory dorsal stream), but not the rostral sub-area (hR) of her primary auditory cortex or the anterior superior temporal gyrus in either hemisphere (auditory ventral stream).

CONCLUSIONS

Auditory agnosia reflects dysfunction of the auditory ventral stream. The ventral and dorsal auditory streams are already segregated as early as the primary auditory cortex, with the ventral stream projecting from hR and the dorsal stream from hA1. M.L.'s leftward localization bias, preserved audiovisual integration, and phoneme perception are explained by preserved processing in her right auditory dorsal stream.

摘要

目的

运用功能磁共振成像技术描绘患者M.L.对声音有反应或无反应的听觉皮层区域。M.L.因下丘损伤患有听觉失认症。

背景

该患者无法识别言语或环境声音。在有语境以及说话者面部动作可见的情况下,以及在强制选择测试中,她的辨别能力会得到极大帮助。她的听觉时间分辨率严重受损。与发音部位不同的单词相比,她对语音起始时间不同的单词的辨别能力受损更严重。向她右耳呈现的单词在双耳分听时会消失;右半视野中的听觉刺激会被错误定位于左侧。

方法

我们使用功能磁共振成像技术,通过组块设计来检测对不同类别的有意义声音的皮层激活情况。

结果

声音双侧激活了M.L.初级听觉皮层(hA1)的尾侧亚区以及她右侧颞上回后部(听觉背侧通路),但未激活其初级听觉皮层的头侧亚区(hR)或任何一个半球的颞上回前部(听觉腹侧通路)。

结论

听觉失认症反映了听觉腹侧通路的功能障碍。听觉腹侧和背侧通路早在初级听觉皮层就已分离,腹侧通路从hR投射,背侧通路从hA1投射。M.L.向左的定位偏差、保留的视听整合以及音素感知可通过其右侧听觉背侧通路中保留的处理过程来解释。

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