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A Complex Nonlinear Dynamic Systems Perspective on Ayurveda and Ayurvedic Research

机译:阿育吠陀和阿育吠陀研究的复杂非线性动力学系统

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摘要

The fields of complexity theory and nonlinear dynamic systems (NDS) are relevant for analyzing the theory and practice of Ayurvedic medicine from a Western scientific perspective. Ayurvedic definitions of health map clearly onto the tenets of both systems and complexity theory and focus primarily on the preservation of organismic equanimity. Health care research informed by NDS and complexity theory would prioritize (1) ascertaining patterns reflected in whole systems as opposed to isolating components; (2) relationships and dynamic interaction rather than static end-points; (3) transitions, change and cumulative effects, consistent with delivery of therapeutic packages in the reality of the clinical setting; and (4) simultaneously exploring both local and global levels of healing phenomena. NDS and complexity theory are useful in examining nonlinear transitions between states of health and illness; the qualitative nature of shifts in health status; and looking at emergent properties and behaviors stemming from interactions between organismic and environmental systems. Complexity and NDS theory also demonstrate promise for enhancing the suitability of research strategies applied to Ayurvedic medicine through utilizing core concepts such as initial conditions, emergent properties, fractal patterns, and critical fluctuations. In the Ayurvedic paradigm, multiple scales and their interactions are addressed simultaneously, necessitating data collection on change patterns that occur on continuums of both time and space, and are viewed as complementary rather than isolated and discrete. Serious consideration of Ayurvedic clinical understandings will necessitate new measurement options that can account for the relevance of both context and environmental factors, in terms of local biology and the processual features of the clinical encounter. Relevant research design issues will need to address clinical tailoring strategies and provide mechanisms for mapping patterns of change that account for the contiguous, self-replicating, cumulative, and synergistic theories associated with successful Ayurvedic treatment approaches.
机译:复杂性理论和非线性动力系统(NDS)领域与从西方科学角度分析阿育吠陀医学的理论和实践有关。阿育吠陀对健康的定义清楚地反映了系统和复杂性理论的宗旨,并且主要关注于保持机体安定。以NDS和复杂性理论为基础的医疗研究将优先考虑(1)确定反映在整个系统中的模式,而不是隔离组件; (2)关系和动态交互,而不是静态端点; (3)过渡,变化和累积效应,与临床环境中的治疗包的交付相一致; (4)同时探索局部和整体水平的治愈现象。 NDS和复杂性理论可用于检查健康和疾病状态之间的非线性转换;健康状况变化的质性;并研究由于有机体和环境系统之间的相互作用而产生的新出现的特性和行为。复杂性和NDS理论还显示出有望通过利用诸如初始条件,突现特性,分形模式和临界波动等核心概念来增强应用于阿育吠陀医学的研究策略的适用性。在阿育吠陀范式中,同时处理多个尺度及其相互作用,因此有必要收集有关在时空连续体上发生的变化模式的数据,这些变化模式被视为互补的,而不是孤立的和离散的。对阿育吠陀临床理解的认真考虑将需要新的测量方法,这些方法应能够根据当地生物学和临床过程的过程特征来考虑环境和环境因素的相关性。相关的研究设计问题将需要解决临床剪裁策略,并提供映射变化模式的机制,这些变化模式说明了与成功的阿育吠陀治疗方法有关的连续,自我复制,累积和协同的理论。

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