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Spatiotemporal Characteristics of Cortical Activities Associated with Articulation of Speech Perception

机译:与言语感知关节相关的皮质活动的时尚特征

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Recently, brain computer interface (BCI) technologies that control external devices with human brain signals have been developed. However, most of the BCI systems, such as P300-speller, can only discriminate among options that have been given in advance. Therefore, the ability to decode the state of a person's perception and recognition, as well as that person's fundamental intention and emotions, from cortical activity is needed to develop a more general-use BCI system. In this study, two experiments were conducted. First, articulations were measured for Japanese monosyllabic utterances masked by several levels of noise. Second, auditory brain magnetic fields evoked by the monosyllable stimuli used in the first experiment were recorded, and neuronal current sources were localized in regions associated with speech perception and recognition - the auditory cortex (BA41), the Wernicke's area (posterior part of BA22), Broca's area (BA22), motor (BA4), and premotor (BA6) areas. Although the source intensity did not systematically change with SNR, the peak latency changed along SNR in the posterior superior temporal gyrus in the right hemisphere. The results suggest that the information associated with articulation is processed in this area.
机译:最近,已经开发出用人脑信号控制外部设备的脑电脑界面(BCI)技术。但是,大多数BCI系统,例如P300拼写,只能在提前给出的选项之间区分。因此,需要解释一个人的感知和识别状态的能力,以及从皮质活动中获得从皮质活动的基本意向和情绪,以发展更通用的BCI系统。在这项研究中,进行了两个实验。首先,测量由几个噪声掩蔽的日本单个单个单个单个单个单个语言的铰接。其次,记录了第一实验中使用的单个型刺激引起的听觉脑磁场,并且神经元电流源在与语音感知和识别相关的区域中局限 - 听觉皮层(BA41),Wernicke的区域(BA22的后部) ,Broca的区域(Ba22),电机(BA4)和Premotor(BA6)区域。虽然源强度没有SNR系统地改变,但峰值延迟沿着右半球后级颞克鲁斯的SNR改变。结果表明,在该领域处理了与关节相关的信息。

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