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首页> 外文期刊>Neuron >Functional Segregation of Cortical Regions Underlying Speech Timing and Articulation
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Functional Segregation of Cortical Regions Underlying Speech Timing and Articulation

机译:语音时序和发音基础下的皮质区域功能隔离

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摘要

Spoken language is a central part of our everyday lives, but the precise roles that individual cortical regions play in the production of speech are often poorly understood. To address this issue, we focally lowered the temperature of distinct cortical regions in awake neurosurgical patients, and we relate this perturbation to changes in produced speech sequences. Using this method, we confirm that speech is highly lateralized, with the vast majority of behavioral effects seen on the left hemisphere. We then use this approach to demonstrate a clear functional dissociation between nearby cortical speech sites. Focal cooling of pars triangularis/pars opercularis (Broca's region) and the ventral portion of the precentral gyrus (speech motor cortex) resulted in the manipulation of speech timing and articulation, respectively. Our results support a class of models that have proposed distinct processing centers underlying motor sequencing and execution for speech.
机译:口语是我们日常生活的重要组成部分,但是人们对单个皮层区域在言语产生中所起的确切作用却知之甚少。为了解决这个问题,我们着重降低了处于清醒状态的神经外科患者的不同皮质区域的温度,并将这种扰动与产生的语音序列的变化联系起来。使用这种方法,我们确认语音高度偏侧化,在左半球上看到了绝大多数的行为影响。然后,我们使用这种方法来证明附近皮层语音站点之间的功能明确分离。三角杆/舌骨短肌(Broca's区域)和中央前回的腹侧部分(语音运动皮层)的局部冷却分别导致了语音定时和发音的操纵。我们的结果支持一类模型,这些模型已经提出了基于语音的电机排序和执行的不同处理中心。

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