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Multisensory Speech Perception Without the Left Superior Temporal Sulcus

机译:多用户言语感知没有左左颞沟

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摘要

Converging evidence suggests that the left superior temporal sulcus (STS) is a critical site for multisensory integration of auditory and visual information during speech perception. We report a patient, SJ, who suffered a stroke that damaged the left tempo-parietal area, resulting in mild anomic aphasia. Structural MRI showed complete destruction of the left middle and posterior STS, as well as damage to adjacent areas in the temporal and parietal lobes. Surprisingly, SJ demonstrated preserved multisensory integration measured with two independent tests. First, she perceived the McGurk effect, an illusion that requires integration of auditory and visual speech. Second, her perception of morphed audiovisual speech with ambiguous auditory or visual information was significantly influenced by the opposing modality. To understand the neural basis for this preserved multisensory integration, blood-oxygen level dependent functional magnetic resonance imaging (BOLD fMRI) was used to examine brain responses to audiovisual speech in SJ and 23 healthy age-matched controls. In controls, bilateral STS activity was observed. In SJ, no activity was observed in the damaged left STS but in the right STS, more cortex was active in SJ than in any of the normal controls. Further, the amplitude of the BOLD response in right STS response to McGurk stimuli was significantly greater in SJ than in controls. The simplest explanation of these results is a reorganization of SJ's cortical language networks such that the right STS now subserves multisensory integration of speech.
机译:融合证据表明,左上级颞轴(STS)是语音感知期间听觉和视觉信息的多思考和视觉信息的关键位点。我们举报了一个患者SJ,遭受了一种损坏左速度地区的脑卒中,导致了温和的异常失语症。结构MRI显示出左中部和后部的完全破坏,以及颞叶中相邻区域的损坏。令人惊讶的是,SJ用两个独立的测试测量了保留的多思干集成。首先,她感到欣赏麦克科效应,这是一个需要整合听觉和视觉演讲的幻觉。其次,她对具有含糊不清听觉或视觉信息的传感视听演讲的看法受到反对方式的显着影响。为了了解这种保存的多思考集成的神经基础,血氧水平依赖性功能磁共振成像(大胆FMRI)用于检查SJ和23个健康年龄匹配对照中对视听言论的大脑响应。在对照中,观察到双侧STS活性。在SJ中,在损坏的左旋ST中没有观察到任何活动,但在正确的STS中,SJ中的更多皮质在任何正常对照中都是活跃的。此外,在SJ中,右STS对McGurk刺激的响应的粗响应的幅度明显大于控制。这些结果的最简单解释是SJ的皮质语言网络的重组,使得右侧STS现在为来自的多义集成的语音集成。

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