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Exploring Biocomplexity in Cancer: A Comprehensive Review
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作者 Andras Szasz Gyula Peter Szigeti 《Open Journal of Biophysics》 2024年第2期154-238,共85页
Living objects have complex internal and external interactions. The complexity is regulated and controlled by homeostasis, which is the balance of multiple opposing influences. The environmental effects finally guide ... Living objects have complex internal and external interactions. The complexity is regulated and controlled by homeostasis, which is the balance of multiple opposing influences. The environmental effects finally guide the self-organized structure. The living systems are open, dynamic structures performing random, stationary, stochastic, self-organizing processes. The self-organizing procedure is defined by the spatial-temporal fractal structure, which is self-similar both in space and time. The system’s complexity appears in its energetics, which tries the most efficient use of the available energies;for that, it organizes various well-connected networks. The controller of environmental relations is the Darwinian selection on a long-time scale. The energetics optimize the healthy processes tuned to the highest efficacy and minimal loss (minimalization of the entropy production). The organism is built up by morphogenetic rules and develops various networks from the genetic level to the organism. The networks have intensive crosstalk and form a balance in the Nash equilibrium, which is the homeostatic state in healthy conditions. Homeostasis may be described as a Nash equilibrium, which ensures energy distribution in a “democratic” way regarding the functions of the parts in the complete system. Cancer radically changes the network system in the organism. Cancer is a network disease. Deviation from healthy networking appears at every level, from genetic (molecular) to cells, tissues, organs, and organisms. The strong proliferation of malignant tissue is the origin of most of the life-threatening processes. The weak side of cancer development is the change of complex information networking in the system, being vulnerable to immune attacks. Cancer cells are masters of adaptation and evade immune surveillance. This hiding process can be broken by electromagnetic nonionizing radiation, for which the malignant structure has no adaptation strategy. Our objective is to review the different sides of living complexity 展开更多
关键词 Complexity Networks SMALL-WORLD Genetic Mutations self-ORGANIZING self-symmetry Energetic Balance Entropy Nash Equilibrium Games Evolution CANCER Therapy
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自发性对称破缺下的“反管理”研究 被引量:8
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作者 孙新波 张大鹏 +1 位作者 张浩 钱雨 《管理学报》 CSSCI 北大核心 2017年第7期973-981,共9页
针对管理研究的自发性对称破缺现象,首次将自发性对称破缺机制引入管理研究中,并通过对西方管理研究破缺现象的认知,以及对东西方管理词源含义的比较,对"反哲学"和企业管理实践进行思考,凝练"反管理"的基本构念和... 针对管理研究的自发性对称破缺现象,首次将自发性对称破缺机制引入管理研究中,并通过对西方管理研究破缺现象的认知,以及对东西方管理词源含义的比较,对"反哲学"和企业管理实践进行思考,凝练"反管理"的基本构念和内在机理。然后,基于此,利用式盘对"反管理"进行系统设计并建构了"反管理式盘"研究工具。研究结果表明,反管理式盘由内向外的"层展"体现了整体生成论的科学逻辑,其独立的"式层"体现了原子还原论的科学逻辑,揭示了管理研究"我(东方)和你(西方)统一"的趋势,是一种涵盖东西方管理模式的新管理范式。 展开更多
关键词 自发性对称破缺 反管理 自身自发现 自身反发现 反身自发现 反身反发现 反管理式盘
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对影响计量泵精度和耐磨性因素的理论研究 被引量:3
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作者 覃科人 孙杰 +1 位作者 金珊 王翘楚 《石油化工应用》 CAS 2007年第4期24-26,共3页
对灌注机关键部件——计量泵进行理论分析,借助C++bulider开发的计算工具研究了计量配合尺寸、形状及工作条件对其精度和寿命的影响;着重分析对中效应对提高精度和减小磨损的影响。为研究计量泵提供了模型或框架;为设计模拟实验提供理... 对灌注机关键部件——计量泵进行理论分析,借助C++bulider开发的计算工具研究了计量配合尺寸、形状及工作条件对其精度和寿命的影响;着重分析对中效应对提高精度和减小磨损的影响。为研究计量泵提供了模型或框架;为设计模拟实验提供理论基础,并指导参数的选择。 展开更多
关键词 计量泵 C++BUILDER 对中效应
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