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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Neural specializations for speech and pitch: moving beyond the dichotomies
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Neural specializations for speech and pitch: moving beyond the dichotomies

机译:语音和音调的神经专长:超越二分法

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The idea that speech processing relies on unique, encapsulated, domain-specific mechanisms has been around for some time. Another well-known idea, often espoused as being in opposition to the first proposal, is that processing of speech sounds entails general-purpose neural mechanisms sensitive to the acoustic features that are present in speech. Here, we suggest that these dichotomous views need not be mutually exclusive. Specifically, there is now extensive evidence that spectral and temporal acoustical properties predict the relative specialization of right and left auditory cortices, and that this is a parsimonious way to account not only for the processing of speech sounds, but also for non-speech sounds such as musical tones. We also point out that there is equally compelling evidence that neural responses elicited by speech sounds can differ depending on more abstract, linguistically relevant properties of a stimulus (such as whether it forms part of one's language or not). Tonal languages provide a particularly valuable window to understand the interplay between these processes. The key to reconciling these phenomena probably lies in understanding the interactions between afferent pathways that carry stimulus information, with top-down processing mechanisms that modulate these processes. Although we are still far from the point of having a complete picture, we argue that moving forward will require us to abandon the dichotomy argument in favour of a more integrated approach.
机译:语音处理依赖于唯一的,封装的,特定于域的机制的想法已经存在了一段时间。另一个众所周知的想法(通常被推崇与第一个建议相反)是,语音的处理需要对语音中存在的声学特征敏感的通用神经机制。在这里,我们建议这些二分的观点不必相互排斥。具体而言,现在有大量证据表明,频谱和时间的声学特性可以预测左右听觉皮层的相对专业性,这是一种不拘一格的方式,不仅可以处理语音,还可以处理非语音。作为音乐音调。我们还指出,同样有令人信服的证据表明,语音刺激引起的神经反应可能会有所不同,具体取决于刺激的更抽象的,与语言相关的属性(例如,是否构成一种语言的一部分)。音调语言为理解这些过程之间的相互作用提供了一个特别有价值的窗口。调和这些现象的关键可能在于理解携带刺激信息的传入途径之间的相互作用,以及通过自上而下的处理机制来调节这些过程。尽管我们距离全面了解还很遥远,但我们认为,向前迈进将需要我们放弃二分法论点,而采用更综合的方法。

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