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气质与精神疾病之间作为动态阶段和转变的连续体。

The Continuum Between Temperament and Mental Illness as Dynamical Phases and Transitions.

作者信息

Sulis William

机构信息

Collective Intelligence Laboratory, Department of Psychiatry and Behavioural Neuroscience, McMaster University, Hamilton, ON, Canada.

出版信息

Front Psychiatry. 2021 Jan 18;11:614982. doi: 10.3389/fpsyt.2020.614982. eCollection 2020.

Abstract

The full range of biopsychosocial complexity is mind-boggling, spanning a vast range of spatiotemporal scales with complicated vertical, horizontal, and diagonal feedback interactions between contributing systems. It is unlikely that such complexity can be dealt with by a single model. One approach is to focus on a narrower range of phenomena which involve fewer systems but still cover the range of spatiotemporal scales. The suggestion is to focus on the relationship between temperament in healthy individuals and mental illness, which have been conjectured to lie along a continuum of neurobehavioral regulation involving neurochemical regulatory systems (e.g., monoamine and acetylcholine, opiate receptors, neuropeptides, oxytocin), and cortical regulatory systems (e.g., prefrontal, limbic). Temperament and mental illness are quintessentially dynamical phenomena, and need to be addressed in dynamical terms. A meteorological metaphor suggests similarities between temperament and chronic mental illness and climate, between individual behaviors and weather, and acute mental illness and frontal weather events. The transition from normative temperament to chronic mental illness is analogous to climate change. This leads to the conjecture that temperament and chronic mental illness describe distinct, high level, dynamical phases. This suggests approaching biopsychosocial complexity through the study of dynamical phases, their order and control parameters, and their phase transitions. Unlike transitions in physical systems, these biopsychosocial phase transitions involve information and semiotics. The application of complex adaptive dynamical systems theory has led to a host of markers including geometrical markers (periodicity, intermittency, recurrence, chaos) and analytical markers such as fluctuation spectroscopy, scaling, entropy, recurrence time. Clinically accessible biomarkers, in particular heart rate variability and activity markers have been suggested to distinguish these dynamical phases and to signal the presence of transitional states. A particular formal model of these dynamical phases will be presented based upon the process algebra, which has been used to model information flow in complex systems. In particular it describes the dual influences of energy and information on the dynamics of complex systems. The process algebra model is well-suited for dealing with the particular dynamical features of the continuum, which include transience, contextuality, and emergence. These dynamical phases will be described using the process algebra model and implications for clinical practice will be discussed.

摘要

生物心理社会的复杂性全方位令人难以置信,它跨越了广泛的时空尺度,各相关系统之间存在复杂的垂直、水平和对角反馈相互作用。如此复杂的情况不太可能由单一模型来处理。一种方法是聚焦于范围更窄的现象,这些现象涉及的系统较少,但仍涵盖时空尺度范围。建议聚焦于健康个体的气质与精神疾病之间的关系,人们推测它们处于涉及神经化学调节系统(如单胺和乙酰胆碱、阿片受体、神经肽、催产素)和皮质调节系统(如前额叶、边缘系统)的神经行为调节连续统上。气质和精神疾病本质上是动态现象,需要从动态角度来探讨。一个气象隐喻表明气质与慢性精神疾病和气候之间、个体行为与天气之间、急性精神疾病与锋面天气事件之间存在相似性。从正常气质到慢性精神疾病的转变类似于气候变化。这就引发了这样的推测:气质和慢性精神疾病描述了不同的、高层次的动态阶段。这表明可通过研究动态阶段、其顺序和控制参数以及它们的相变来探讨生物心理社会的复杂性。与物理系统中的转变不同,这些生物心理社会相变涉及信息和符号学。复杂自适应动力系统理论的应用产生了许多标志物,包括几何标志物(周期性、间歇性、递归性、混沌)和分析标志物,如波动光谱学、标度、熵、递归时间。有人建议使用临床上可获取的生物标志物,特别是心率变异性和活动标志物来区分这些动态阶段并指示过渡状态的存在。将基于过程代数提出这些动态阶段的一个特定形式模型,该模型已被用于对复杂系统中的信息流进行建模。特别是它描述了能量和信息对复杂系统动态的双重影响。过程代数模型非常适合处理连续统的特定动态特征,这些特征包括短暂性、情境性和涌现性。将使用过程代数模型描述这些动态阶段,并讨论其对临床实践的影响。

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