Understanding cingulotomy's therapeutic effect in OCD through computer models.

IF 2.6 3区 医学 Q2 BEHAVIORAL SCIENCES
Frontiers in Integrative Neuroscience Pub Date : 2023-01-10 eCollection Date: 2022-01-01 DOI:10.3389/fnint.2022.889831
Mohamed A Sherif, Aryandokht Fotros, Benjamin D Greenberg, Nicole C R McLaughlin
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Abstract

Cingulotomy is therapeutic in OCD, but what are the possible mechanisms? Computer models that formalize cortical OCD abnormalities and anterior cingulate cortex (ACC) function can help answer this. At the neural dynamics level, cortical dynamics in OCD have been modeled using attractor networks, where activity patterns resistant to change denote the inability to switch to new patterns, which can reflect inflexible thinking patterns or behaviors. From that perspective, cingulotomy might reduce the influence of difficult-to-escape ACC attractor dynamics on other cortical areas. At the functional level, computer formulations based on model-free reinforcement learning (RL) have been used to describe the multitude of phenomena ACC is involved in, such as tracking the timing of expected outcomes and estimating the cost of exerting cognitive control and effort. Different elements of model-free RL models of ACC could be affected by the inflexible cortical dynamics, making it challenging to update their values. An agent can also use a world model, a representation of how the states of the world change, to plan its actions, through model-based RL. OCD has been hypothesized to be driven by reduced certainty of how the brain's world model describes changes. Cingulotomy might improve such uncertainties about the world and one's actions, making it possible to trust the outcomes of these actions more and thus reduce the urge to collect more sensory information in the form of compulsions. Connecting the neural dynamics models with the functional formulations can provide new ways of understanding the role of ACC in OCD, with potential therapeutic insights.

Abstract Image

通过计算机模型了解鞘膜切开术对强迫症的治疗效果。
扣带回切除术对强迫症有治疗作用,但其可能的机制是什么?将强迫症皮质异常和前扣带回皮质(ACC)功能形式化的计算机模型有助于回答这个问题。在神经动力学层面,强迫症的大脑皮层动力学模型采用了吸引子网络(attractor networks),其中抗改变的活动模式表示无法切换到新的模式,这可能反映了僵化的思维模式或行为。从这个角度来看,脑皮质切除术可能会减少难以摆脱的 ACC 吸引子动力学对其他皮质区域的影响。在功能层面,基于无模型强化学习(RL)的计算机公式已被用于描述 ACC 所涉及的多种现象,如跟踪预期结果的时间以及估计施加认知控制和努力的成本。ACC 的无模型 RL 模型中的不同元素可能会受到缺乏灵活性的大脑皮层动态的影响,从而使更新它们的值具有挑战性。通过基于模型的 RL,代理也可以使用世界模型(世界状态如何变化的表示)来计划其行动。据推测,强迫症的驱动因素是大脑世界模型描述变化的确定性降低。脑脊髓切除术可能会改善这种对世界和自身行动的不确定性,使人们更信任这些行动的结果,从而减少以强迫症形式收集更多感官信息的冲动。将神经动力学模型与功能公式联系起来,可以为理解 ACC 在强迫症中的作用提供新的方法,并带来潜在的治疗启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Integrative Neuroscience
Frontiers in Integrative Neuroscience Neuroscience-Cellular and Molecular Neuroscience
CiteScore
4.60
自引率
2.90%
发文量
148
审稿时长
14 weeks
期刊介绍: Frontiers in Integrative Neuroscience publishes rigorously peer-reviewed research that synthesizes multiple facets of brain structure and function, to better understand how multiple diverse functions are integrated to produce complex behaviors. Led by an outstanding Editorial Board of international experts, this multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide. Our goal is to publish research related to furthering the understanding of the integrative mechanisms underlying brain functioning across one or more interacting levels of neural organization. In most real life experiences, sensory inputs from several modalities converge and interact in a manner that influences perception and actions generating purposeful and social behaviors. The journal is therefore focused on the primary questions of how multiple sensory, cognitive and emotional processes merge to produce coordinated complex behavior. It is questions such as this that cannot be answered at a single level – an ion channel, a neuron or a synapse – that we wish to focus on. In Frontiers in Integrative Neuroscience we welcome in vitro or in vivo investigations across the molecular, cellular, and systems and behavioral level. Research in any species and at any stage of development and aging that are focused at understanding integration mechanisms underlying emergent properties of the brain and behavior are welcome.
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