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'Unconventional' experiments in biology and medicine with optimized design based on quantum-like correlations

机译:基于量子样相关性的优化设计的生物学和医学实验的“非常规”实验

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摘要

In previous articles, a description of 'unconventional' experiments (e.g. in vitro or clinical studies based on high dilutions, 'memory of water' or homeopathy) using quantum-like probability was proposed. Because the mathematical formulations of quantum logic are frequently an obstacle for physicians and biologists, a modified modeling that rests on classical probability is described in the present article. This modeling is inspired from a relational interpretation of quantum physics that applies not only to microscopic objects, but also to macroscopic structures, including experimental devices and observers. In this framework, any outcome of an experiment is not an absolute property of the observed system as usually considered but is expressed relatively to an observer. A team of interacting observers is thus described from an external view point based on two principles: the outcomes of experiments are expressed relatively to each observer and the observers agree on outcomes when they interact with each other. If probability fluctuations are also taken into account, correlations between 'expected' and observed outcomes emerge. Moreover, quantum-like correlations are predicted in experiments with local blind design but not with centralized blind design. No assumption on 'memory' or other physical modification of water is necessary in the present description although such hypotheses cannot be formally discarded.
机译:在先前的文章中,提出了使用量子样概率对“非常规”实验的描述(例如,基于高稀释度的体外或临床研究,“水记忆”或顺势疗法)。由于量子逻辑的数学公式通常是医师和生物学家的障碍,因此本文中描述了一种基于经典概率的修改模型。该建模的灵感来自对量子物理学的关系解释,该解释不仅适用于微观对象,还适用于宏观结构,包括实验设备和观察者。在此框架中,实验的任何结果都不是通常考虑的观察到系统的绝对特性,而是对观察者相对表达的。因此,从一个基于两个原则的外部观察点来描述一个相互作用的观察者团队:实验的结果相对表达,相对表达,而观察者相互互动时的结果一致。如果还考虑了概率波动,则会出现“预期”和观察到的结果之间的相关性。此外,在局部盲目设计的实验中预测了量子样相关性,但没有集中式盲目设计。尽管不能正式丢弃此类假设,但在本描述中,在当前描述中没有任何对水的物理修饰的假设。

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