Faculty of Medicine, Hebrew University, Jerusalem P.O. Box 1200, Israel.
Department of Medicine, Hadassah Medical Center, Jerusalem P.O. Box 1200, Israel.
Adv Respir Med. 2023 Sep 9;91(5):350-367. doi: 10.3390/arm91050028.
Variability characterizes breathing, cellular respiration, and the underlying quantum effects. Variability serves as a mechanism for coping with changing environments; however, this hypothesis does not explain why many of the variable phenomena of respiration manifest randomness. According to the constrained disorder principle (CDP), living organisms are defined by their inherent disorder bounded by variable boundaries. The present paper describes the mechanisms of breathing and cellular respiration, focusing on their inherent variability. It defines how the CDP accounts for the variability and randomness in breathing and respiration. It also provides a scheme for the potential role of respiration variability in the energy balance in biological systems. The paper describes the option of using CDP-based artificial intelligence platforms to augment the respiratory process's efficiency, correct malfunctions, and treat disorders associated with the respiratory system.
变异性是呼吸、细胞呼吸和潜在量子效应的特征。变异性是应对不断变化的环境的一种机制;然而,这一假设并不能解释为什么呼吸的许多可变现象表现出随机性。根据约束无序原则(CDP),生物体的定义是由其内在的无序性所决定的,这种无序性受可变边界的限制。本文描述了呼吸和细胞呼吸的机制,重点是它们固有的可变性。它定义了 CDP 如何解释呼吸和呼吸中的可变性和随机性。它还提供了一个方案,说明呼吸变异性在生物系统能量平衡中的潜在作用。本文描述了使用基于 CDP 的人工智能平台来提高呼吸过程效率、纠正故障以及治疗与呼吸系统相关的疾病的可能性。
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