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Speech sound discrimination training improves auditory cortex responses in a rat model of autism

机译:语音辨别训练可改善自闭症大鼠模型的听觉皮层反应

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摘要

Children with autism often have language impairments and degraded cortical responses to speech. Extensive behavioral interventions can improve language outcomes and cortical responses. Prenatal exposure to the antiepileptic drug valproic acid (VPA) increases the risk for autism and language impairment. Prenatal exposure to VPA also causes weaker and delayed auditory cortex responses in rats. In this study, we document speech sound discrimination ability in VPA exposed rats and document the effect of extensive speech training on auditory cortex responses. VPA exposed rats were significantly impaired at consonant, but not vowel, discrimination. Extensive speech training resulted in both stronger and faster anterior auditory field (AAF) responses compared to untrained VPA exposed rats, and restored responses to control levels. This neural response improvement generalized to non-trained sounds. The rodent VPA model of autism may be used to improve the understanding of speech processing in autism and contribute to improving language outcomes.
机译:自闭症儿童通常会出现语言障碍,并且皮质的言语反应下降。广泛的行为干预可以改善语言结果和皮层反应。产前暴露于抗癫痫药丙戊酸(VPA)会增加自闭症和语言障碍的风险。产前暴露于VPA也会导致大鼠听觉皮层反应减弱和延迟。在这项研究中,我们记录了VPA暴露大鼠的语音识别能力,并记录了广泛的语音训练对听觉皮层反应的影响。暴露于VPA的大鼠在辅音(而非元音)辨别下明显受损。与未经训练的VPA暴露大鼠相比,广泛的言语训练导致更强和更快的前听觉场(AAF)反应,并且恢复了对对照水平的反应。这种神经反应的改善普遍适用于未经训练的声音。孤独症的啮齿动物VPA模型可用于提高对孤独症中语音处理的理解,并有助于改善语言结果。

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