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Titlebook: Mathematical Modeling in Renal Physiology; Anita T. Layton,Aurélie Edwards Book 2014 Springer-Verlag Berlin Heidelberg 2014 92C30, 92B99.b

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書目名稱Mathematical Modeling in Renal Physiology
編輯Anita T. Layton,Aurélie Edwards
視頻videohttp://file.papertrans.cn/627/626338/626338.mp4
概述Written by experts in academia.Provides the mathematical and biological basis needed to understand transport phenomena in the kidney.First book of this kind on the market
叢書名稱Lecture Notes on Mathematical Modelling in the Life Sciences
圖書封面Titlebook: Mathematical Modeling in Renal Physiology;  Anita T. Layton,Aurélie Edwards Book 2014 Springer-Verlag Berlin Heidelberg 2014 92C30, 92B99.b
描述.With the availability of high speed computers and advances in computational techniques, the application of mathematical modeling to biological systems is expanding. This comprehensive and richly illustrated volume provides up-to-date, wide-ranging material on the mathematical modeling of kidney physiology, including clinical data analysis and practice exercises. Basic concepts and modeling techniques introduced in this volume can be applied to other areas (or organs) of physiology..The models presented describe the main homeostatic functions performed by the kidney, including blood filtration, excretion of water and salt, maintenance of electrolyte balance and regulation of blood pressure. Each chapter includes an introduction to the basic relevant physiology, a derivation of the essential conservation equations and then a discussion of a series of mathematical models, with increasing level of complexity..This volume will be of interest to biological and mathematical scientists, as well as physiologists and nephrologists, who would like an introduction to mathematical techniques that can be applied to renal transport and function. The material is written for students who have had
出版日期Book 2014
關(guān)鍵詞92C30, 92B99; biology; differential equations; kidney; mathematical modeling; physiology
版次1
doihttps://doi.org/10.1007/978-3-642-27367-4
isbn_softcover978-3-642-27366-7
isbn_ebook978-3-642-27367-4Series ISSN 2193-4789 Series E-ISSN 2193-4797
issn_series 2193-4789
copyrightSpringer-Verlag Berlin Heidelberg 2014
The information of publication is updating

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Anita T. Layton,Aurélie Edwards most forms of self-help are outlawed, inequality between adversaries discourages negotiation, and informal sanctions tend to be ineffective (Abel, 1984). At the same time, most lay judges have been eliminated, lawyers dominate legislatures and administrative agencies, and it is both difficult and u
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Anita T. Layton,Aurélie Edwardsdoes little more than sustain the status quo, while discussion of injustice would force an examination of concrete events rather than abstract ideals and interrupt the oscillation between government programs to cure law and order problems and government programs to address questions of social injust
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of discipline accumulation and limited financial allocation. As a result, they are in a weak position in the homogenized higher education system, so they are in urgent need of breaking through and finding a suitable development path. It is a better strategy to solve the competitive disadvantage of
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2193-4789 and nephrologists, who would like an introduction to mathematical techniques that can be applied to renal transport and function. The material is written for students who have had 978-3-642-27366-7978-3-642-27367-4Series ISSN 2193-4789 Series E-ISSN 2193-4797
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Electrophysiology of Renal Vascular Smooth Muscle Cells, the general properties of ion channels. We then focus on Ca. signaling in vascular smooth muscle cells, and formulate equations that represent Ca. transport via ion channels, Ca. buffering, and Ca. sequestration in intracellular stores. Finally, we describe models that link variations in intracellular Ca. to the contractile force.
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