Department of Earth, Environmental and Life Sciences (DISTAV), University of Genova, Corso Europa, 26, 16132, Genoa, Italy.
Department of Industrial Engineering, University of Trento, via Sommarive, 9, 38123, Trento, Italy.
J Comput Neurosci. 2022 Nov;50(4):471-484. doi: 10.1007/s10827-022-00826-8. Epub 2022 Jul 11.
Fibromyalgia (FM) is an unsolved central pain processing disturbance. We aim to provide a unifying model for FM pathogenesis based on a loop network involving thalamocortical regions, i.e., the ventroposterior lateral thalamus (VPL), the somatosensory cortex (SC), and the thalamic reticular nucleus (TRN). The dynamics of the loop have been described by three differential equations having neuron mean firing rates as variables and containing Hill functions to model mutual interactions among the loop elements. A computational analysis conducted with MATLAB has shown a transition from monostability to bistability of the loop behavior for a weakening of GABAergic transmission between TRN and VPL. This involves the appearance of a high-firing-rate steady state, which becomes dominant and is assumed to represent pathogenic pain processing giving rise to chronic pain. Our model is consistent with a bulk of literature evidence, such as neuroimaging and pharmacological data collected on FM patients, and with correlations between FM and immunoendocrine conditions, such as stress, perimenopause, chronic inflammation, obesity, and chronic dizziness. The model suggests that critical targets for FM treatment are to be found among immunoendocrine pathways leading to GABA/glutamate imbalance having an impact on the thalamocortical system.
纤维肌痛(FM)是一种未解决的中枢疼痛处理障碍。我们旨在提供一个基于涉及丘脑皮质区域的循环网络的 FM 发病机制的统一模型,即腹后外侧丘脑(VPL)、躯体感觉皮层(SC)和丘脑网状核(TRN)。该循环的动力学已通过三个微分方程进行了描述,这些方程的变量为神经元平均发放率,并包含 Hill 函数,以模拟循环元件之间的相互作用。使用 MATLAB 进行的计算分析表明,对于 TRN 和 VPL 之间 GABA 能传递的减弱,循环行为从单稳定性向双稳定性的转变。这涉及到一个高发放率的稳态的出现,该稳态变得占主导地位,并被认为代表导致慢性疼痛的病理性疼痛处理。我们的模型与大量文献证据一致,例如对 FM 患者进行的神经影像学和药理学数据,以及 FM 与免疫内分泌状况之间的相关性,如应激、围绝经期、慢性炎症、肥胖和慢性头晕。该模型表明,FM 治疗的关键靶点是在导致 GABA/谷氨酸失衡的免疫内分泌途径中,这种失衡对丘脑皮质系统有影响。