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Cortical circuits for silent speechreading in deaf and hearing people.

机译:用于聋哑人和听觉人的无声语音朗读的皮质回路。

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This fMRI study explored the functional neural organisation of seen speech in congenitally deaf native signers and hearing non-signers. Both groups showed extensive activation in perisylvian regions for speechreading words compared to viewing the model at rest. In contrast to earlier findings, activation in left middle and posterior portions of superior temporal cortex, including regions within the lateral sulcus and the superior and middle temporal gyri, was greater for deaf than hearing participants. This activation pattern survived covarying for speechreading skill, which was better in deaf than hearing participants. Furthermore, correlational analysis showed that regions of activation related to speechreading skill varied with the hearing status of the observers. Deaf participants showed a positive correlation between speechreading skill and activation in the middle/posterior superior temporal cortex. In hearing participants, however, more posterior and inferior temporal activation (including fusiform and lingual gyri) was positively correlated with speechreading skill. Together, these findings indicate that activation in the left superior temporal regions for silent speechreading can be modulated by both hearing status and speechreading skill.
机译:这项功能性MRI研究探索了先天性聋自然语者和非语者所见语音的功能神经组织。与在静止状态下观看模型相比,两组在perisylvian区域都显示出广泛的语音朗读激活功能。与早期的发现相反,聋人的上颞颞叶左侧中部和后部的激活(包括外侧沟和上,中颞回中的区域)比听觉参与者的激活更大。这种激活模式在语音阅读技能的变化中幸存下来,在聋哑人中比在听者中更好。此外,相关分析表明,与语音阅读技能相关的激活区域随观察者的听力状态而变化。聋哑参与者在中/后颞上皮层的语音阅读技能与激活之间显示出正相关。然而,在听觉参与者中,更多的后和下颞部激活(包括梭形和舌状回)与语音阅读能力呈正相关。总之,这些发现表明,可以通过听觉状态和语音阅读技能来调节左上颞区的无声语音阅读激活。

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