Hefei National Laboratory for Physical Sciences at the Microscale, and School of Life Sciences, University of Science and Technology of China, Hefei 230027, China; Auditory Research Laboratory, School of Life Sciences, University of Science and Technology of China, Hefei 230027, China.
Faculty of Psychology, Southwest University, Chongqing 400175, China.
Neuroscience. 2018 Feb 21;372:246-254. doi: 10.1016/j.neuroscience.2017.12.025. Epub 2017 Dec 28.
In a complex linguistic environment, while speech sounds can greatly vary, some shared features are often invariant. These invariant features constitute so-called abstract auditory rules. Our previous study has shown that with auditory sensory intelligence, the human brain can automatically extract the abstract auditory rules in the speech sound stream, presumably serving as the neural basis for speech comprehension. However, whether the sensory intelligence for extraction of abstract auditory rules in speech is inherent or experience-dependent remains unclear. To address this issue, we constructed a complex speech sound stream using auditory materials in Mandarin Chinese, in which syllables had a flat lexical tone but differed in other acoustic features to form an abstract auditory rule. This rule was occasionally and randomly violated by the syllables with the rising, dipping or falling tone. We found that both Chinese and foreign speakers detected the violations of the abstract auditory rule in the speech sound stream at a pre-attentive stage, as revealed by the whole-head recordings of mismatch negativity (MMN) in a passive paradigm. However, MMNs peaked earlier in Chinese speakers than in foreign speakers. Furthermore, Chinese speakers showed different MMN peak latencies for the three deviant types, which paralleled recognition points. These findings indicate that the sensory intelligence for extraction of abstract auditory rules in speech sounds is innate but shaped by language experience.
在复杂的语言环境中,语音可以有很大的变化,但有些共享的特征通常是不变的。这些不变的特征构成了所谓的抽象听觉规则。我们之前的研究表明,人类大脑通过听觉感知智能,可以自动从语音流中提取抽象的听觉规则,这些规则可能是言语理解的神经基础。然而,提取语音中抽象听觉规则的感知智能是天生的还是依赖于经验的,目前尚不清楚。为了解决这个问题,我们使用汉语普通话的听觉材料构建了一个复杂的语音流,其中音节具有平调,但在其他声学特征上有所不同,从而形成了一个抽象的听觉规则。这个规则偶尔会被带有升调、降调或降调的音节随机违反。我们发现,中外说话者在被动范式的全头记录中,通过 mismatch negativity (MMN) 都可以在非注意阶段检测到语音流中抽象听觉规则的违反。然而,中国说话者的 MMN 峰值比外国说话者更早。此外,中国说话者对三种偏差类型的 MMN 峰值潜伏期不同,这与识别点平行。这些发现表明,提取语音中抽象听觉规则的感知智能是天生的,但受语言经验的影响。