Deli Eva, Peters James, Kisvárday Zoltán
Institute for Consciousness Studies (ICS), Benczur ter 9, Nyiregyhaza 4400, Hungary.
Department of Electrical and Computer Engineering, University of Manitoba, 75A Chancellor's Circle, Winnipeg, MB R3T 5V6, Canada.
Comput Struct Biotechnol J. 2021 Jan 12;19:784-793. doi: 10.1016/j.csbj.2021.01.008. eCollection 2021.
There is a general expectation that the laws of classical physics must apply to biology, particularly the neural system. The evoked cycle represents the brain's energy/information exchange with the physical environment through stimulus. Therefore, the thermodynamics of emotions might elucidate the neurological origin of intellectual evolution, and explain the psychological and health consequences of positive and negative emotional states based on their energy profiles. We utilized the Carnot cycle and Landauer's principle to analyze the energetic consequences of the brain's resting and evoked states during and after various cognitive states. Namely, positive emotional states can be represented by the reversed Carnot cycle, whereas negative emotional reactions trigger the Carnot cycle. The two conditions have contrasting energetic and entropic aftereffects with consequences for mental energy. The mathematics of the Carnot and reversed Carnot cycles, which can explain recent findings in human psychology, might be constructive in the scientific endeavor in turning psychology into hard science.
人们普遍期望经典物理学定律必须适用于生物学,尤其是神经系统。诱发周期代表大脑通过刺激与物理环境进行的能量/信息交换。因此,情绪的热力学可能会阐明智力进化的神经学起源,并根据其能量特征解释积极和消极情绪状态的心理和健康后果。我们利用卡诺循环和兰道尔原理来分析大脑在各种认知状态期间和之后的静息和诱发状态的能量后果。具体而言,积极情绪状态可以用逆卡诺循环来表示,而消极情绪反应则触发卡诺循环。这两种情况在能量和熵方面有相反的后效应,对精神能量产生影响。卡诺循环和逆卡诺循环的数学可以解释人类心理学中的最新发现,这可能有助于将心理学转变为硬科学的科学努力。