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Bipolar disorder dynamics: affective instabilities relaxation oscillations and noise

机译:双相情感障碍动力学:情感不稳定松弛振动和噪声

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摘要

Bipolar disorder is a chronic, recurrent mental illness characterized by extreme episodes of depressed and manic mood, interspersed with less severe but highly variable mood fluctuations. Here, we develop a novel mathematical approach for exploring the dynamics of bipolar disorder. We investigate how the dynamics of subjective experience of mood in bipolar disorder can be understood using a relaxation oscillator (RO) framework and test the model against mood time-series fluctuations from a set of individuals with bipolar disorder. We show that variable mood fluctuations in individuals diagnosed with bipolar disorder can be driven by the coupled effects of deterministic dynamics (captured by ROs) and noise. Using a statistical likelihood-based approach, we show that, in general, mood dynamics are described by two independent ROs with differing levels of endogenous variability among individuals. We suggest that this sort of nonlinear approach to bipolar disorder has neurobiological, cognitive and clinical implications for understanding this mental illness through a mechacognitive framework.
机译:躁郁症是一种慢性复发性精神疾病,其特征在于情绪低落和躁狂的极端发作,并散布着较不严重但高度可变的情绪波动。在这里,我们开发了一种新颖的数学方法来探索躁郁症的动态。我们调查如何使用松弛振荡器(RO)框架来理解躁郁症的主观情绪体验的动力学,并针对一组躁郁症患者的情绪时间序列波动测试该模型。我们表明,被诊断为躁郁症的个体的情绪波动可能由确定性动力学(由RO捕获)和噪声的耦合效应驱动。使用基于统计似然的方法,我们表明,总体而言,情绪动态是由两个独立的RO来描述的,它们具有不同水平的个体内源变异性。我们建议这种针对双相情感障碍的非线性方法对于通过机械认知框架理解这种精神疾病具有神经生物学,认知和临床意义。

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