变化越少,不变越多:受损的神经可塑性是神经精神病学药物开发的关键目标。

Q3 Neuroscience
Joshua T Kantrowitz, Daniel C Javitt
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引用次数: 0

摘要

神经精神残疾与对临床干预(如可塑性)做出反应的能力下降有关。然而,有关可塑性的生物标志物和干预策略的研究却很少。在本章中,我们将重点讨论序列频率辨别任务(SFDT),该任务对早期听觉加工(EAP)和听觉学习的损伤非常敏感,并且对阅读障碍和精神分裂症的研究最为深入。在 SFDT 中,参与者会看到重复的成对音调("参考 "和 "测试"),然后指出哪个音调的音调更高。SFDT过程中的可塑性主要取决于前额叶 "认知控制 "区域与低级感知和运动区域之间的相互作用,这种相互作用可通过fMRI和时频事件相关电位(TF-ERP)方法检测到。此外,皮层和纹状体之间的相互作用也有助于深入了解谷氨酸/多巴胺的相互作用机制。SFDT任务已被用于开发N-甲基-D-天冬氨酸受体(NMDAR)靶向药物,这些药物可显著调节感觉和前运动神经生理活动。音调处理缺陷在精神分裂症的神经和社会认知功能受损中起着关键作用,并可能导致阅读障碍中的类似损伤。因此,SFDT 可能是开发旨在改善各种神经精神疾病的神经和社会认知功能缺陷的治疗方法的理想选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Less Things Change, the More They Remain the Same: Impaired Neural Plasticity as a Critical Target for Drug Development in Neuropsychiatry.

Neuropsychiatric disability is related to reduced ability to change in response to clinical interventions, e.g., plasticity. Study of biomarkers and interventional strategies for plasticity, however, are sparse. In this chapter, we focus on the serial frequency discrimination task (SFDT), which is sensitive to impairments in early auditory processing (EAP) and auditory learning and has been most thoroughly studied in dyslexia and schizophrenia. In the SFDT, participants are presented with repeated paired tones ("reference" and "test") and indicate which tone is higher in pitch. Plasticity during the SFDT is critically dependent upon interactions between prefrontal "cognitive control" regions, and lower-level perceptual and motor regions that may be detected using both fMRI and time-frequency event-related potential (TF-ERP) approaches. Additionally, interactions between the cortex and striatum give insights into glutamate/dopamine interaction mechanisms. The SFDT task has been utilized in the development of N-methyl-D-aspartate receptor (NMDAR) targeted medications, which significantly modulate sensory and premotor neurophysiological activity. Deficits in pitch processing play a critical role in impaired neuro- and social cognitive function in schizophrenia and may contribute to similar impairments in dyslexia. Thus, the SFDT may be ideal for development of treatments aimed at amelioration of neuro- and social cognitive deficits across neuropsychiatric disorders.

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来源期刊
Advances in neurobiology
Advances in neurobiology Neuroscience-Neurology
CiteScore
2.80
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