Gu Chanyuan, Bi Hong-Yan
CAS Key Laboratory of Behavioral Science, Center for Brain Science and Learning Difficulties, Institute of Psychology, Chinese Academy of Sciences, Beijing, 100101, China; Department of Psychology, University of Chinese Academy of Sciences, Beijing, 100049, China.
CAS Key Laboratory of Behavioral Science, Center for Brain Science and Learning Difficulties, Institute of Psychology, Chinese Academy of Sciences, Beijing, 100101, China; Department of Psychology, University of Chinese Academy of Sciences, Beijing, 100049, China.
Neurosci Biobehav Rev. 2020 Sep;116:396-405. doi: 10.1016/j.neubiorev.2020.06.032. Epub 2020 Jun 29.
Several previous studies have used mismatch negativity (MMN) to examine the auditory processing deficit in individuals with dyslexia. However, researchers have not clearly determined whether the deficit is general or specific and how it potentially changes with age. Meta-analysis was adopted to quantitatively identify the auditory processing deficit in individuals with dyslexia. By analysing 81 results within 25 publications that employed passive oddball paradigms to explore auditory processing in individuals with dyslexia, we identified that MMN impairment in auditory processing of speech was observed in children (Cohen's d = 0.296) and adults with dyslexia (Cohen's d = 0.486). Besides, adults with dyslexia showed atypical auditory processing of non-speech (Cohen's d = 0.409), which appeared to be related to the types of stimuli. Based on these findings, for individuals with dyslexia, the auditory processing deficit in speech will persist into adulthood, and the auditory processing deficit is general in adults with dyslexia. Because few studies used appropriate non-speech stimuli to examine the auditory processing in children with dyslexia, future studies should focus more on this area.
此前已有多项研究使用失匹配负波(MMN)来检测阅读障碍个体的听觉加工缺陷。然而,研究人员尚未明确确定该缺陷是普遍存在还是具有特异性,以及它如何随年龄变化。本研究采用荟萃分析定量识别阅读障碍个体的听觉加工缺陷。通过分析25篇使用被动oddball范式探究阅读障碍个体听觉加工的文献中的81项结果,我们发现阅读障碍儿童(科恩d值 = 0.296)和成人(科恩d值 = 0.486)在言语听觉加工中均存在MMN损伤。此外,阅读障碍成人在非言语听觉加工方面表现异常(科恩d值 = 0.409),这似乎与刺激类型有关。基于这些发现,对于阅读障碍个体而言,言语听觉加工缺陷会持续到成年期,且阅读障碍成人的听觉加工缺陷具有普遍性。由于很少有研究使用合适的非言语刺激来检测阅读障碍儿童的听觉加工,未来研究应更多地关注这一领域。