BIOKYBERNETIKA II: Thermodynamics, Functional Physiology, Process Control, and Society Impact

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Bol A MultiScale BioMathematics calls for lasting collaboration of Young Science-Talented & Ambitious in researching human body as a self-controlled system of physiological processes that evolve in person´s pursuit of operational goals. Its holistic, coherent, and comprehensive mathematical definition will be conducive to an algorithmic medicine. Core theory grounds axiomatic functional dynamics in cell biology and introduces a structure-function-energy paradigm. Explicit mathematical analysis of hierarchical organization in proteins shows how local chiral or binding features aggregate into higher-order structures and highly cooperative functional behavior. Spatiotemporal population dynamics model invasion of proliferating agents (viruses, tumor cells) and emergent patterns (waves, clusters, sustainable yields) in epidemic control, urban planning, invasive plant control, and fishery. Hepatic clearance, hormonal rhythmicity, magnetoencephalography, intracytoplasmic sperm injection videos, and optimal adaptive cancer therapy are further mathematical modeling applications. Interested are researchers and advanced practitioners who seek mechanistic, model-based tools for analyzing regulation and intervention in human health and medicine. BIOKYBERNETIKA books present an infusion of mathematics into medicine, advance holistic models of physiology with applications from cellular structures to societal factors.

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A MultiScale BioMathematics calls for lasting collaboration of Young Science-Talented & Ambitious in researching human body as a self-controlled system of physiological processes that evolve in person´s pursuit of operational goals. Its holistic, coherent, and comprehensive mathematical definition will be conducive to an algorithmic medicine. Core theory grounds axiomatic functional dynamics in cell biology and introduces a structure-function-energy paradigm. Explicit mathematical analysis of hierarchical organization in proteins shows how local chiral or binding features aggregate into higher-order structures and highly cooperative functional behavior. Spatiotemporal population dynamics model invasion of proliferating agents (viruses, tumor cells) and emergent patterns (waves, clusters, sustainable yields) in epidemic control, urban planning, invasive plant control, and fishery. Hepatic clearance, hormonal rhythmicity, magnetoencephalography, intracytoplasmic sperm injection videos, and optimal adaptive cancer therapy are further mathematical modeling applications. Interested are researchers and advanced practitioners who seek mechanistic, model-based tools for analyzing regulation and intervention in human health and medicine. BIOKYBERNETIKA books present an infusion of mathematics into medicine, advance holistic models of physiology with applications from cellular structures to societal factors.

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Pagina's: 498, Editie: Eerste editie, Hardcover, De Gruyter


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Merk De Gruyter
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  • 9783119144803
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