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A roadmap for the development and validation of event-related potential biomarkers in schizophrenia research.精神分裂症研究中事件相关电位生物标志物的开发和验证的路线图。
Biol Psychiatry. 2011 Jul 1;70(1):28-34. doi: 10.1016/j.biopsych.2010.09.021. Epub 2010 Dec 15.
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Developing constructs for psychopathology research: research domain criteria.发展精神病理学研究的结构:研究领域标准。
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Toward new approaches to psychotic disorders: the NIMH Research Domain Criteria project.迈向精神障碍的新治疗方法:美国国立精神卫生研究所研究领域标准项目
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Research domain criteria (RDoC): toward a new classification framework for research on mental disorders.研究领域标准(RDoC):迈向精神障碍研究的新分类框架
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Impaired response selection in schizophrenia: evidence from the P3 wave and the lateralized readiness potential.精神分裂症中反应选择受损:来自P3波和侧化准备电位的证据。
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Neurophysiological biomarkers for drug development in schizophrenia.精神分裂症药物研发中的神经生理学生物标志物
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Influence of cognitive control and mismatch on the N2 component of the ERP: a review.认知控制和失配对事件相关电位N2成分的影响:综述
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Feature processing during visual search in normal aging: electrophysiological evidence.正常衰老过程中视觉搜索的特征处理:电生理证据。
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在电生理记录中同时操纵正交神经系统:用于同时评估多个神经认知维度的 MONSTER 方法。

Manipulation of orthogonal neural systems together in electrophysiological recordings: the MONSTER approach to simultaneous assessment of multiple neurocognitive dimensions.

机构信息

Center for Mind & Brain and Department of Psychology, University of California, Davis, CA 95618, USA.

出版信息

Schizophr Bull. 2012 Jan;38(1):92-102. doi: 10.1093/schbul/sbr147. Epub 2011 Nov 10.

DOI:10.1093/schbul/sbr147
PMID:22080495
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3245583/
Abstract

Event-related potentials (ERPs) are a powerful tool in understanding and evaluating cognitive, affective, motor, and sensory processing in both healthy and pathological samples. A typical ERP recording session takes considerable time but is designed to isolate only 1-2 components. Although this is appropriate for most basic science purposes, it is an inefficient approach for measuring the broad set of neurocognitive functions that may be disrupted in a neurological or psychiatric disease. The present study provides a framework for more efficiently evaluating multiple neural processes in a single experimental paradigm through the manipulation of functionally orthogonal dimensions. We describe the general MONSTER (Manipulation of Orthogonal Neural Systems Together in Electrophysiological Recordings) approach and explain how it can be adapted to investigate a variety of neurocognitive domains, ERP components, and neural processes of interest. We also demonstrate how this approach can be used to assess group differences by providing data from an implementation of the MONSTER approach in younger (18-30 y of age) and older (65-85 y of age) adult samples. This specific implementation of the MONSTER framework assesses 4 separate neural processes in the visual domain: (1) early sensory processing, using the C1 wave; (2) shifts of covert attention, with the N2pc component; (3) categorization, with the P3 component; and (4) self-monitoring, with the error-related negativity. Although the MONSTER approach is primarily described in the context of ERP experiments, it could also be adapted easily for use with functional magnetic resonance imaging.

摘要

事件相关电位(ERPs)是理解和评估健康和病理样本中的认知、情感、运动和感觉处理的有力工具。典型的 ERP 记录会话需要相当长的时间,但设计目的仅隔离 1-2 个成分。虽然这对于大多数基础科学目的是合适的,但对于测量可能在神经或精神疾病中受到干扰的广泛神经认知功能来说,这是一种低效的方法。本研究通过操纵功能正交维度,为在单个实验范式中更有效地评估多个神经过程提供了一个框架。我们描述了一般的 MONSTER(在电生理记录中一起操纵正交神经系统)方法,并解释了如何适应各种神经认知领域、ERP 成分和感兴趣的神经过程的研究。我们还通过提供在年轻(18-30 岁)和老年(65-85 岁)成年样本中实施 MONSTER 方法的数据,展示了如何使用这种方法来评估组间差异。该 MONSTER 框架的具体实施在视觉领域评估了 4 个单独的神经过程:(1)使用 C1 波进行早期感觉处理;(2)使用 N2pc 成分进行隐蔽注意转移;(3)使用 P3 成分进行分类;(4)使用错误相关负波进行自我监控。虽然 MONSTER 方法主要在 ERP 实验的背景下进行描述,但也可以轻松地适应与功能磁共振成像一起使用。