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Modern Trends in Biothermokinetics

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Cover of 'Modern Trends in Biothermokinetics'

Table of Contents

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    Book Overview
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    Chapter 1 Frontiers in the Mathematical Description of “Biothermokinetic” Phenomena
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    Chapter 2 Monitoring a Heterogeneous Coupled System Using Soluble and Biologically Localized Firefly Luciferase as a Probe for Bulk and Local [ ATP ]
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    Chapter 3 Control of Cytochrome C Oxidase: Kinetic, Thermodynamic or Allosteric?
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    Chapter 4 Mechanism of Bupivacaine Uncoupling in Rat Heart Mitochondria
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    Chapter 5 Mosaic Non-Equilibrium Thermodynamics as a Tool in the Study of Oxidative Phosphorylation
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    Chapter 6 The Redox State of Cytochromes as a New Tool to Assess the Thermodynamic State of Mitochondria
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    Chapter 7 Thermodynamic Response Paradigm and Its Application to Oxidative Phosphorylation
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    Chapter 8 A Model Study on the Interrelation between the Transmembrane Potential and pH Difference Across the Mitochondrial Inner Membrane
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    Chapter 9 Comparison of Retinal-Based and Chlorophyll-Based Photosynthesis: A Biothermokinetic Description of Photochemical Reaction Centers
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    Chapter 10 Regulation of Energy Flux of Yeast during Steady State and Oscillatory Growth
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    Chapter 11 Free-Energy Coupling Mediated by Dynamic Interactions between Membrane Proteins
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    Chapter 12 Characterization of Energy-Dependent Phosphate Uptake by Blue-Green Alga Anacystis Nidulans : Adaptation to External Phosphate Levels Obeys a Linear Flow-Force Relation
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    Chapter 13 Brownian Dynamics Simulation of Charged Membrane Components: Implications for their Lateral Distribution and Voltage Dependence of Ion Transport through Membranes
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    Chapter 14 Evolutionary Strategies and the Optimization of Carrier Models
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    Chapter 15 Mathematical Model of the Creatine Kinase Reaction Coupled to Adenine Nucleotide Translocation and Oxidative Phosphorylation
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    Chapter 16 Critical Regulation of Multienzyme Complexes: A Kinetic Model for the Mammalian Pyruvate Dehydrogenase Complex
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    Chapter 17 The Analysis of Flux in Substrate Cycles
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    Chapter 18 Estimation of Enzymatic Flux Rates from Kinetic Isotope Experiments
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    Chapter 19 When Going Backwards Means Progress: On the Solution of Biochemical Inverse Problems Using Artificial Neural Networks
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    Chapter 20 Quality Assessment of a Metabolic Model and Systems Analysis of Citric Acid Production by Aspergillus Niger
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    Chapter 21 Steady-State Measurements and Identifiability of Regulatory Patterns in Metabolic Studies
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    Chapter 22 A Biochemical “NAND” Gate and Assorted Circuits
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    Chapter 23 Dynamic Modeling of Cell, Substrate, and Product Concentrations and pH in E . Coli -Containing Agar Membranes
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    Chapter 24 The Interpretation of Flow Cytometry Profiles in Terms of Gene Dosage and Gene Expression
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    Chapter 25 Invention of a Useful Transcriptional Regulation System Using Mechanistic Mathematic Modeling
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    Chapter 26 Tumor Progression and Catastrophe Theory
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    Chapter 27 Biochemical Neuron: Application to Neural Network Studies and Practical Implementation of Device
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    Chapter 28 Example of the Use of Computers to Study the Variability of Seed Development of a Parasitic Weed, Striga hermonthica (Del.) Benth. (Scrophulariaceae), after Treatment by Herbicide
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    Chapter 29 Responses of Metabolic Systems to Large Changes in Enzyme Activities
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    Chapter 30 An Extension of Metabolic Control Analysis to Larger Parameter Perturbations by Inclusion of Second-Order Effects
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    Chapter 31 A Control Analysis of Metabolic Regulation
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    Chapter 32 Regulation and Homeostasis in Metabolic Control Theory: Interplay between Fluctuations of Variables and Parameter Changes
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    Chapter 33 Sum of the Flux Control Coefficients: What is it Equal to in Different Systems?
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    Chapter 34 Control Analysis of Metabolic Channeling
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    Chapter 35 Path Analysis in General Control Theory
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    Chapter 36 Phenomenological Kinetics and the Top-Down Approach to Metabolic Control Analysis
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    Chapter 37 A Modular Approach to the Description of the Control of Connected Metabolic Systems
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    Chapter 38 Control Analysis of Isoenzymic Pathways: Application of Directed Graphs and Electrical Analogs
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    Chapter 39 Derivation of a General Matrix Method for the Calculation of Control Coefficients
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    Chapter 40 Internal Regulation. The C·E = I = E·C Square-Matrix Method Illustrated for a Simple Case of a Complex Pathway
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    Chapter 41 Multiplicity of Control
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    Chapter 42 Control of Threonine Biosynthesis in E . Coli
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    Chapter 43 Control Coefficients in Cellular Cation Homeostasis: A Model Analysis
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    Chapter 44 Experimental Discrimination between Proton Leak across the Mitochondrial Membrane and Slip in the Proton Pumps of the Electron Transport Chain
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    Chapter 45 Does Redox Slip Contribute Significantly to Mitochondrial Respiration?
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    Chapter 46 Mechanistic Stoichiometry of Yeast Mitochondrial Oxidative Phosphorylation: A Behavior of Working Engine
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    Chapter 47 Mitochondrial Creatine Kinase: Biothermokinetics of the Reaction and Its Role in the Regulation of Energy Fluxes in Muscle Cells in Vivo
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    Chapter 48 Effect of Macromolecules on ADP-Channeling into Mitochondria
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    Chapter 49 Control of ATP Flux in Rat Muscle Mitochondria
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    Chapter 50 Control of Respiration of Mitochondria from Euglena gracilis Determined by Means of Metabolic Control Analysis: Comparison of Oxidation of Matrix-and Cytosolic NADH
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    Chapter 51 Top Down Metabolic Control Analysis of Oxidative Phosphorylation at Different Rates in Potato Tuber Mitochondria
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    Chapter 52 The Influence of Phosphate on the Distribution of Flux Control among the Enzymes of Oxidative Phosphorylation in Rat Skeletal Muscle Mitochondria
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    Chapter 53 The Molecular Basis of Threshold Effects Observed in Mitochondrial Diseases
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    Chapter 54 Control of Respiration in Heart Mitochondria: Comparative Study of Oxidation of Succinate and NAD-Dependent Substrates
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    Chapter 55 Mechanisms of the Effects of Hypothyroidism and Hyperthyroidism in Rats on Respiration Rate in Isolated Hepatocytes
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    Chapter 56 Substrate and Calcium Dependence of the Pyridine Nucleotide and Flavine Redox State in Rat Heart Mitochondria Respiring at Different Metabolic States
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    Chapter 57 Modification of Mitochondrial Metabolism by Amino Acid-Induced Cell Swelling
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    Chapter 58 Estimation of the Mechanism of Peptide Binding to HLA Class II Molecules
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    Chapter 59 Shift of a Peptide Bond Equilibrium towards Synthesis Catalyzed by α-Chymotrypsin
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    Chapter 60 Modulation of Cellular Energy State and DNA Supercoiling in E . coli
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    Chapter 61 Cascade Control of Ammonia Assimilation
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    Chapter 62 Photovoltage Measurements as a Probe of Light Distribution and Ion Movements around the Photosynthetic Apparatus
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    Chapter 63 Neural Networks Applied to Cell Signaling and Chemical Communication in Cell Networks
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    Chapter 64 Synchronization of Glycolytic Oscillations in Intact Yeast Cells
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    Chapter 65 Control in Electrophysiology and Intracellular Signal Transduction
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    Chapter 66 Structure-Function Relationship of Magainins. Studies in Liposomal Model Systems
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    Chapter 67 The Communication between the Mitochondrial and Cytosolic Branches of Energy Metabolism
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    Chapter 68 Calculation of Metabolic Fluxes by Mathematical Modeling of Carbon-13 Distribution in Metabolites. I. Presentation of the Mathematical Model
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    Chapter 69 Calculation of Metabolic Fluxes by Mathematical Modeling of Carbon-13 Distribution in Metabolites. II. Application to the Study of C6 Cell Metabolism
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    Chapter 70 MLAB: An Advanced System for Mathematical and Statistical Modeling
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    Chapter 71 SIMFIT - A Computer Package for Simulation, Curve Fitting and Statistical Analysis Using Life Science Models
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    Chapter 72 Optimal Design for Model Discrimination: Choosing the Best Spacing and Density of Design Points
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    Chapter 73 GEPASI: A User Oriented Metabolic Simulator
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    Chapter 74 Object Oriented Simulation of Metabolic Processes
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    Chapter 75 MetaCon - A Computer Program for the Algebraic Evaluation of Control Coefficients of Metabolic Networks
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    Chapter 76 Champagne in Holland: An Experiment in Oenology
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Title
Modern Trends in Biothermokinetics
Published by
Springer US, December 2012
DOI 10.1007/978-1-4615-2962-0
ISBNs
978-1-4613-6288-3, 978-1-4615-2962-0
Editors

Schuster, Stefan, Rigoulet, Michel, Ouhabi, Rachid, Mazat, Jean-Pierre

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 7 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Japan 1 14%
Latvia 1 14%
France 1 14%
Unknown 4 57%

Demographic breakdown

Readers by professional status Count As %
Professor 2 29%
Researcher 2 29%
Unknown 3 43%
Readers by discipline Count As %
Computer Science 2 29%
Biochemistry, Genetics and Molecular Biology 1 14%
Agricultural and Biological Sciences 1 14%
Physics and Astronomy 1 14%
Unknown 2 29%