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Biophysics and Physiology of Carbon Dioxide

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Cover of 'Biophysics and Physiology of Carbon Dioxide'

Table of Contents

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    Book Overview
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    Chapter 1 Chemical Reactions of CO 2 in Water
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    Chapter 2 Facilitation of CO 2 Through Layers with a Spatial Distribution of Carbonic Anhydrase
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    Chapter 3 Facilitated Diffusion of CO 2 and Carbonic Anhydrase Activity
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    Chapter 4 Mechanisms of Facilitated CO 2 and H + Diffusion in Protein Solutions
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    Chapter 5 The Effect of Diffusion Potentials on Facilitated CO 2 Diffusion
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    Chapter 6 Evidence for Facilitated Transport of CO 2 in Muscle Tissue
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    Chapter 7 The Binding of CO 2 to Human Deoxyhemoglobin: An X-Ray Study Using Low-Salt Crystals
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    Chapter 8 The Determination of CO 2 Bound to Hemoglobin as Carbamate
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    Chapter 9 Phylogeny and Physiological Significance of Oxygen-Linked CO 2 Binding in Hemoglobin
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    Chapter 10 The Carbamate Reaction with Proteins: Observation by 13C-NMR and Evaluation of Structural Consequences
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    Chapter 11 The Measurement of the CO 2 Hb Binding Curve of Human Hemoglobin by 13 C-NMR Spectrometry
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    Chapter 12 Formation and Physiological Role of Carbamino Adducts of Angiotensin, Bradykinin, and S-Methylglucagon
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    Chapter 13 Interaction Between Hemoglobins, CO 2 and Anions
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    Chapter 14 The Influence of CO 2 on the First Binding Constant of Oxygen to Human Hemoglobin Ao
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    Chapter 15 Current Concepts of the Mechanism of Action of Carbonic Anhydrase
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    Chapter 16 Some Structural Aspects of Carbonic Anhydrase
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    Chapter 17 Primary Structure of Carbonic Anhydrases
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    Chapter 18 Evolution of Structure and Function in the Carbonic Anhydrase Isozymes of Mammals
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    Chapter 19 Carbonic Anhydrase Activity in Intact Red Cells as Measured by Means of 18 O Exchange Between CO 2 and Water
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    Chapter 20 Crystal Structure of Carbonic Anhydrase
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    Chapter 21 Kinetics and Mechanistic Implications of CO 2 Hydration Activity of Human Erythrocyte Carbonic Anhydrases
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    Chapter 22 Models for Metal Ion Function and Evolution of the Catalytic Step in Carbonic Anhydrase
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    Chapter 23 Consequences of Metal Ion Substitutions in Human Carbonic Anhydrase B. A Carbon-13 Nuclear Magnetic Resonance Comperative Study
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    Chapter 24 Rate-Limiting Steps in the Catalytic Action of Carbonic Anhydrase
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    Chapter 25 The pH-Independence of Carbonic Anhydrase Activity: Apparent pK a Due to Inhibition by HSO 4 −
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    Chapter 26 Role of Buffer in Catalysis of the Hydration of CO 2 by Carbonic Anhydrase
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    Chapter 27 35 Cl and 81 Br Nuclear Magnetic Resonance Studies of Carbonic Anhydrase
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    Chapter 28 NMR Studies of Carbonic Anhydrase
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    Chapter 29 Cl − and HCO 3 − Movements Across the Red Blood Cell Membrane
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    Chapter 30 The Rate-Limiting Event in the Depletion of 18 O from CO 2 in Red Cell Suspensions
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    Chapter 31 Kinetics of CO 2 Uptake by Red Cells
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    Chapter 32 Intravascular End-Capillary CO 2 -H + Disequilibrium
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    Chapter 33 Changes in pH and $${{\text{P}}_{C{O_2}}}$$ with Time in Pulmonary Post-Capillary Blood in Cats
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    Chapter 34 Kinetics of Acid-Base Parameters of Blood After Respiratory and Metabolic Disturbances
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    Chapter 35 Carbonic Anhydrase in Lung Tissue
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    Chapter 36 Pulmonary Capillary Carbonic Anhvdrase
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    Chapter 37 Can CO 2 Be Actively Eliminated by the Lungs?
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    Chapter 38 Experimental Results on Gas-Blood CO 2 Equilibrium in Lungs
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    Chapter 39 Intracapillary CO 2 Gradients
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    Chapter 40 Contribution of Red Cell-Plasma H + Disequilibrium to Alveolar-Blood $${{\text{P}}_{C{O_2}}}$$ Differences During Rebreathing
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    Chapter 41 Diffusion Limitation in Alveolar-Capillary CO 2 Transfer in Human Lungs: Experimental Evidence from Rebreathing Equilibration
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    Chapter 42 Physiological Consequences of Carbonic Anhydrase Inhibition During Rest and Exercise, and on the Bohr Effect
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    Chapter 43 Placental CO 2 Exchange
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    Chapter 44 Transfer of Bicarbonate in a Hemochorial Placenta
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    Chapter 45 Recent Developments in Carbonic Anhydrase Localization: Occurrence of Carbonic Anhydrase in Calcium-Mobilizing Tissues
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    Chapter 46 Arguments for and Against the Histochemical Carbonic Anhydrase Test
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    Chapter 47 Activity and Properties of Carbonic Anhydrase in Striated Muscle
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    Chapter 48 Significance of Carbonic Anhydrase for HCO 3 − Absorption and H + Secretion in Renal Tubules
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    Chapter 49 Formation and Ionic Composition of Cerebrospinal Fluid: The Role of Carbonic Anhydrase
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    Chapter 50 Autoregulation of CSF H + Activity
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    Chapter 51 Transients and Steady State of Chloride-Bicarbonate Relationships of Brain Extra-Cellular Fluid
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Title
Biophysics and Physiology of Carbon Dioxide
Published by
Springer Berlin Heidelberg, March 2013
DOI 10.1007/978-3-642-67572-0
ISBNs
978-3-64-267574-4, 978-3-64-267572-0
Editors

Bauer, Christian, Gros, Gerolf, Bartels, Heinz

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