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Semantic retrieval of spoken words with an obliterated initial phoneme in a sentence context.

机译:在句子上下文中使用已删除的初始音素来语义检索口头单词。

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摘要

Perception of a phoneme may occur even when the speech sound is missing (e.g., when an extraneous noise replaces the sound). This phenomenon, called phonemic restoration, has been observed to depend on the type of distortion. It requires a replacing sound that provides acoustic input to the auditory system, since the restoration has not been found when a speech sound was replaced by silence. We examined the brain activation underlying speech processing when the word's initial phoneme was completely replaced by a silent gap. Event-related potentials (ERPs) and reaction times (RTs) were measured as indicators of semantic processing of sentence final words. Slower voice onset times during repetition of the manipulated words as compared to normal words indicated increased difficulty in retrieving their meaning. The N400, which is related to the increased demands of the semantic integration of words, was elicited by less expected words as compared to highly expected ones. For manipulated words, the N400 waselicited at the same latency than for normal words, with respect to the onset of the remaining word fragment. The amplitude of the N400 was not increased, nor did it last longer, thereby indicating successful retrieval of the word's meaning based on the semantic context and remaining phonetic information. Thus, semantic retrieval does not seem to require the word's initial phoneme to be present in a sentence context. The results suggest that both context-driven expectancy (top-down) and stimulus-driven processes (bottom-up) are utilized in word processing and contribute to the overall N400 response.
机译:即使缺少语音(例如,当外部噪音代替声音时),也可能会发生音素的感知。已经观察到这种现象,称为音素恢复,取决于失真的类型。它需要一种替代声音来向听觉系统提供声学输入,因为当语音被静音替代时还没有找到恢复的方法。当单词的初始音素完全由无声间隙代替时,我们检查了语音处理背后的大脑激活。测量与事件相关的电位(ERP)和反应时间(RTs)作为句子最后单词的语义处理指标。与普通单词相比,在重复操作单词期间较慢的语音开始时间表明获取其含义的难度增加。 N400与单词语义整合的需求增加有关,与期望值较高的单词相比,N400是由期望值较低的单词引起的。对于操作的单词,就其余单词片段的开始而言,N400的延迟与正常单词的延迟相同。 N400的幅度没有增加,也没有持续更长的时间,因此表明可以根据语义上下文和剩余的语音信息成功检索单词的含义。因此,语义检索似乎并不要求单词的初始音素出现在句子上下文中。结果表明,上下文驱动的期望值(自上而下)和刺激驱动的过程(自下而上)都被用于文字处理中,并有助于整个N400响应。

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