如果宏观和微观(量子尺度)事件背后的统计数据根本不同,这会影响癌症的生物学吗?

Anderson Km, Patel Mk
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引用次数: 0

摘要

收稿日期:2019年5月15日;录用日期:2019年6月05日;在我们的“宏观”世界里,一个行动之后往往会有一个平等和相反的反应,这是不言而喻的。在“微观”领域(化学、生物、量子环境),这种反应经常被模仿。例如,应激癌细胞可以表现出对治疗的增强抗性,并产生替代遗传/表观遗传反应,从而增加增殖和医生未预料到的发育/增殖事件。这些考虑为考虑这些和其他可能的后果缺氧或其他细胞应激的确定性,或随机,随机癌细胞对应激的反应提供了背景。根据一些说法,随机指的是一个变量,随机指的是一个过程或系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
If the statistics underlying macroscopic and microscopic (quantum scale) events were to fundamentally differ would this affect the biology of cancer?
Received: May 15, 2019; Accepted: June 05, 2019; Published: June 10, 2019 In our “macroscopic” world it is a truism that an action is often followed by an equal and opposite reaction. In the “microscopic” realms (chemical, biological, quantum environments), that response often is mimicked. For example, stressed cancer cells can exhibit enhanced resistance to therapy and development of alternate genetic/epigenetic responses that increase proliferation and developmental / proliferative events unanticipated by the physician. These considerations provide a background for considering these and other possible consequences to hypoxia or other cellular stresses by deterministic, or by random, stochastic cancer cell responses to stresses. According to some, random refers to a variable, stochastic to a process or system.
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