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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Physical and perceptual factors shape the neural mechanisms that integrate audiovisual signals in speech comprehension.
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Physical and perceptual factors shape the neural mechanisms that integrate audiovisual signals in speech comprehension.

机译:身体和知觉因素决定了在语音理解中整合视听信号的神经机制。

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摘要

Face-to-face communication challenges the human brain to integrate information from auditory and visual senses with linguistic representations. Yet the role of bottom-up physical (spectrotemporal structure) input and top-down linguistic constraints in shaping the neural mechanisms specialized for integrating audiovisual speech signals are currently unknown. Participants were presented with speech and sinewave speech analogs in visual, auditory, and audiovisual modalities. Before the fMRI study, they were trained to perceive physically identical sinewave speech analogs as speech (SWS-S) or nonspeech (SWS-N). Comparing audiovisual integration (interactions) of speech, SWS-S, and SWS-N revealed a posterior-anterior processing gradient within the left superior temporal sulcus/gyrus (STS/STG): Bilateral posterior STS/STG integrated audiovisual inputs regardless of spectrotemporal structure or speech percept; in left mid-STS, the integration profile was primarily determined by the spectrotemporal structure of the signals; more anterior STS regions discarded spectrotemporal structure and integrated audiovisual signals constrained by stimulus intelligibility and the availability of linguistic representations. In addition to this "ventral" processing stream, a "dorsal" circuitry encompassing posterior STS/STG and left inferior frontal gyrus differentially integrated audiovisual speech and SWS signals. Indeed, dynamic causal modeling and Bayesian model comparison provided strong evidence for a parallel processing structure encompassing a ventral and a dorsal stream with speech intelligibility training enhancing the connectivity between posterior and anterior STS/STG. In conclusion, audiovisual speech comprehension emerges in an interactive process with the integration of auditory and visual signals being progressively constrained by stimulus intelligibility along the STS and spectrotemporal structure in a dorsal fronto-temporal circuitry.
机译:面对面的交流挑战了人类的大脑,将来自听觉和视觉的信息与语言表示相结合。然而,自下而上的物理(光谱时结构)输入和自上而下的语言约束在塑造专门用于集成视听语音信号的神经机制中的作用目前尚不清楚。向参与者展示了视觉,听觉和视听形式的语音和正弦波语音类似物。在进行功能磁共振成像研究之前,他们受过训练以感知物理上相同的正弦波语音类似物,如语音(SWS-S)或非语音(SWS-N)。比较语音,SWS-S和SWS-N的视听整合(交互作用),发现左上颞沟/回(STS / STG)内的后处理梯度:双边后STS / STG整合视听输入,而与时空结构无关或语音感知;在左STS中部,积分分布主要由信号的光谱时结构决定。更多的前STS区域放弃了时空结构和受听觉可理解性以及语言表示形式的可用性所限制的整合视听信号。除了此“腹部”处理流外,还包括一个“后”电路,该电路包含后STS / STG和左下额回的差分集成视听语音和SWS信号。的确,动态因果建模和贝叶斯模型比较为包含腹侧和背侧流的并行处理结构提供了有力的证据,并通过语音清晰度训练增强了前后STS / STG之间的连通性。总之,视听语音理解是在互动过程中出现的,听觉和视觉信号的整合逐渐受到沿额颞叶背侧颞叶STS和频谱时态结构的刺激性和可理解性的限制。

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