抑郁症的适应、行动和情感:来自建构情绪理论的见解。

IF 4 2区 医学 Q2 CHEMISTRY, MEDICINAL
Clare Shaffer, Christiana Westlin, Karen S Quigley, Susan Whitfield-Gabrieli, Lisa Feldman Barrett
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引用次数: 16

摘要

建构情绪理论是一种理解情绪本质的系统神经科学方法。它也是一个通用的理论框架,指导假设的产生,即当大脑不断预测代谢需求并试图在这些需求出现之前满足这些需求时,如何构建行动和经验(称为异稳态)。在这篇综述中,我们介绍了这一框架,并假设适应失调是精神和身体疾病的跨障碍易感性。然后,我们回顾了与以下假设一致的已发表的研究结果:重度抑郁症(MDD)的几种症状,如疲劳、痛苦、环境不敏感、奖励不敏感和运动迟缓,与能量调节的持续性问题有关。我们的方法改变了目前对重度抑郁症的理解,即情绪反应增强与认知控制减弱相结合,并在此过程中,为重度抑郁症的发展、进展、治疗和预防提供了新的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Allostasis, Action, and Affect in Depression: Insights from the Theory of Constructed Emotion.

Allostasis, Action, and Affect in Depression: Insights from the Theory of Constructed Emotion.

The theory of constructed emotion is a systems neuroscience approach to understanding the nature of emotion. It is also a general theoretical framework to guide hypothesis generation for how actions and experiences are constructed as the brain continually anticipates metabolic needs and attempts to meet those needs before they arise (termed allostasis). In this review, we introduce this framework and hypothesize that allostatic dysregulation is a trans-disorder vulnerability for mental and physical illness. We then review published findings consistent with the hypothesis that several symptoms in major depressive disorder (MDD), such as fatigue, distress, context insensitivity, reward insensitivity, and motor retardation, are associated with persistent problems in energy regulation. Our approach transforms the current understanding of MDD as resulting from enhanced emotional reactivity combined with reduced cognitive control and, in doing so, offers novel hypotheses regarding the development, progression, treatment, and prevention of MDD.

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来源期刊
ACS Infectious Diseases
ACS Infectious Diseases CHEMISTRY, MEDICINALINFECTIOUS DISEASES&nb-INFECTIOUS DISEASES
CiteScore
9.70
自引率
3.80%
发文量
213
期刊介绍: ACS Infectious Diseases will be the first journal to highlight chemistry and its role in this multidisciplinary and collaborative research area. The journal will cover a diverse array of topics including, but not limited to: * Discovery and development of new antimicrobial agents — identified through target- or phenotypic-based approaches as well as compounds that induce synergy with antimicrobials. * Characterization and validation of drug target or pathways — use of single target and genome-wide knockdown and knockouts, biochemical studies, structural biology, new technologies to facilitate characterization and prioritization of potential drug targets. * Mechanism of drug resistance — fundamental research that advances our understanding of resistance; strategies to prevent resistance. * Mechanisms of action — use of genetic, metabolomic, and activity- and affinity-based protein profiling to elucidate the mechanism of action of clinical and experimental antimicrobial agents. * Host-pathogen interactions — tools for studying host-pathogen interactions, cellular biochemistry of hosts and pathogens, and molecular interactions of pathogens with host microbiota. * Small molecule vaccine adjuvants for infectious disease. * Viral and bacterial biochemistry and molecular biology.
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