Déli Éva, Peters James F, Kisvárday Zoltán
Department of Anatomy, Histology, and Embryology, University of Debrecen, 4032 Debrecen, Hungary.
Department of Electrical & Computer Engineering, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.
Entropy (Basel). 2022 Oct 20;24(10):1498. doi: 10.3390/e24101498.
The neural systems' electric activities are fundamental for the phenomenology of consciousness. Sensory perception triggers an information/energy exchange with the environment, but the brain's recurrent activations maintain a resting state with constant parameters. Therefore, perception forms a closed thermodynamic cycle. In physics, the Carnot engine is an ideal thermodynamic cycle that converts heat from a hot reservoir into work, or inversely, requires work to transfer heat from a low- to a high-temperature reservoir (the reversed Carnot cycle). We analyze the high entropy brain by the endothermic reversed Carnot cycle. Its irreversible activations provide temporal directionality for future orientation. A flexible transfer between neural states inspires openness and creativity. In contrast, the low entropy resting state parallels reversible activations, which impose past focus via repetitive thinking, remorse, and regret. The exothermic Carnot cycle degrades mental energy. Therefore, the brain's energy/information balance formulates motivation, sensed as position or negative emotions. Our work provides an analytical perspective of positive and negative emotions and spontaneous behavior from the free energy principle. Furthermore, electrical activities, thoughts, and beliefs lend themselves to a temporal organization, an orthogonal condition to physical systems. Here, we suggest that an experimental validation of the thermodynamic origin of emotions might inspire better treatment options for mental diseases.
神经系统的电活动是意识现象学的基础。感官感知引发与环境的信息/能量交换,但大脑的循环激活维持着参数恒定的静息状态。因此,感知形成一个封闭的热力学循环。在物理学中,卡诺热机是一种理想的热力学循环,它将来自高温热源的热量转化为功,或者反过来,需要功才能将热量从低温热源传递到高温热源(逆卡诺循环)。我们通过吸热的逆卡诺循环来分析高熵大脑。其不可逆激活为未来取向提供时间方向性。神经状态之间的灵活转换激发开放性和创造力。相比之下,低熵静息状态类似于可逆激活,通过重复思考、悔恨和遗憾施加对过去的关注。放热的卡诺循环会消耗精神能量。因此,大脑的能量/信息平衡形成动机,表现为焦虑或负面情绪。我们的工作从自由能原理提供了对正负情绪和自发行为的分析视角。此外,电活动、思想和信念有助于形成时间组织,这是与物理系统正交的条件。在这里,我们建议对情绪的热力学起源进行实验验证可能会为精神疾病带来更好的治疗选择。