首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >THE NEUROBIOLOGY OF SELF-GENERATED THOUGHT FROM CELLS TO SYSTEMS: INTEGRATING EVIDENCE FROM LESION STUDIES, HUMAN INTRACRANIAL ELECTROPHYSIOLOGY, NEUROCHEMISTRY, AND NEUROENDOCRINOLOGY
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THE NEUROBIOLOGY OF SELF-GENERATED THOUGHT FROM CELLS TO SYSTEMS: INTEGRATING EVIDENCE FROM LESION STUDIES, HUMAN INTRACRANIAL ELECTROPHYSIOLOGY, NEUROCHEMISTRY, AND NEUROENDOCRINOLOGY

机译:从细胞到系统的自体产生的神经病学:来自病变研究,人类颅内电生理学,神经化学和神经内分泌学的综合证据

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Investigation of the neural basis of self-generated thought is moving beyond a simple identification with default network activation toward a more comprehensive view recognizing the role of the frontoparietal control network and other areas. A major task ahead is to unravel the functional roles and temporal dynamics of the widely distributed brain regions recruited during self-generated thought. We argue that various other neuroscientific methods -including lesion studies, human intracranial electrophysiology, and manipulation of neurochemistry - have much to contribute to this project. These diverse data have yet to be synthesized with the growing understanding of self-generated thought gained from neuroimaging, however. Here, we highlight several areas of ongoing inquiry and illustrate how evidence from other methodologies corroborates, complements, and clarifies findings from functional neuroimaging. Each methodology has particular strengths: functional neuroimaging reveals much about the variety of brain areas and networks reliably recruited. Lesion studies point to regions critical to generating and consciously experiencing self-generated thought. Human intracranial electrophysiology illuminates how and where in the brain thought is generated and where this activity subsequently spreads. Finally, measurement and manipulation of neurotransmitter and hormone levels can clarify what kind of neurochemical milieu drives or facilitates self-generated cognition. Integrating evidence from multiple complementary modalities will be a critical step on the way to improving our understanding of the neurobiology of functional and dysfunctional forms of self-generated thought. (C) 2016 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:对自我产生的思想的神经基础的研究正在从对默认网络激活的简单识别转向对额叶额叶控制网络和其他领域的作用的更全面的认识。未来的主要任务是弄清在自我产生的思维过程中募集的广泛分布的大脑区域的功能角色和时间动态。我们认为,其他各种神经科学方法-包括病变研究,人类颅内电生理学和神经化学操作-也可以为该项目做出很大贡献。然而,随着对从神经影像学获得的自我生成的思想的日益了解,这些多样化的数据尚待综合。在这里,我们重点介绍了正在研究的几个领域,并说明了其他方法的证据如何证实,补充和阐明功能性神经影像学的发现。每种方法都有其独特的优势:功能性神经影像学可以揭示许多关于可靠招募的大脑区域和网络的信息。病变研究指出了对产生和有意识地经历自我产生的思想至关重要的区域。人类颅内电生理学阐明了大脑中思想的产生方式和位置以及该活动随后传播的位置。最后,对神经递质和激素水平的测量和操作可以阐明哪种神经化学环境可以驱动或促进自我生成的认知。整合来自多种互补方式的证据将是改善我们对自我生成的思维的功能和功能失调形式的神经生物学理解的关键步骤。 (C)2016年IBRO。由Elsevier Ltd.出版。保留所有权利。

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