Centre of Functionally Integrative Neuroscience, Aarhus University Hospital, Denmark.
Cambridge Psychiatry, Cambridge University, Cambridge, United Kingdom.
PLoS Comput Biol. 2022 Sep 13;18(9):e1010490. doi: 10.1371/journal.pcbi.1010490. eCollection 2022 Sep.
A growing body of evidence highlights the intricate linkage of exteroceptive perception to the rhythmic activity of the visceral body. In parallel, interoceptive inference theories of affective perception and self-consciousness are on the rise in cognitive science. However, thus far no formal theory has emerged to integrate these twin domains; instead, most extant work is conceptual in nature. Here, we introduce a formal model of cardiac active inference, which explains how ascending cardiac signals entrain exteroceptive sensory perception and uncertainty. Through simulated psychophysics, we reproduce the defensive startle reflex and commonly reported effects linking the cardiac cycle to affective behaviour. We further show that simulated 'interoceptive lesions' blunt affective expectations, induce psychosomatic hallucinations, and exacerbate biases in perceptual uncertainty. Through synthetic heart-rate variability analyses, we illustrate how the balance of arousal-priors and visceral prediction errors produces idiosyncratic patterns of physiological reactivity. Our model thus offers a roadmap for computationally phenotyping disordered brain-body interaction.
越来越多的证据强调了外感受知与内脏身体节律活动之间的复杂联系。与此同时,认知科学中关于情感感知和自我意识的内感受推断理论也在兴起。然而,到目前为止,还没有出现一种正式的理论来整合这两个领域;相反,大多数现有工作本质上是概念性的。在这里,我们引入了一个心脏主动推断的形式模型,该模型解释了上升的心脏信号如何使外感受觉感知和不确定性同步。通过模拟心理物理学,我们再现了防御性惊跳反射和常见的报告,将心脏周期与情感行为联系起来。我们进一步表明,模拟的“内感受损伤”会削弱情感预期,引起心身幻觉,并加剧感知不确定性的偏差。通过综合心率变异性分析,我们说明了唤醒先验和内脏预测误差的平衡如何产生独特的生理反应模式。因此,我们的模型为计算表型紊乱的脑-体相互作用提供了路线图。