By Michael A. Matthay, David H. Ingbar
This complete reference illuminates contemporary breakthroughs in figuring out the pathogenesis, pathophysiology, and determination of pulmonary edema, and highlights new healing innovations for handling sufferers with accompanying acute respiration failure. Pooling the event of greater than forty foreign specialists within the box, Pulmonary Edema ·reviews state of the art equipment and expertise for measuring transvascular fluid stability and protein flux within the lung ·presents the radiographic, medical, and laboratory beneficial properties of pulmonary edema in seriously unwell sufferers ·outlines the alveolar epithelial fluid shipping means of the alveolar epithelium in removal edema fluid from the lung ·explains how sepsis, pneumonia, aspiration, and significant trauma give a contribution to pulmonary edema ·assesses new ways for treating either hydrostatic and increased-permeability pulmonary edema ·discusses the capability function of aquaporins within the formation and determination of pulmonary edema ·describes how confident strain air flow may possibly magnify the measure of acute lung damage ·details the mechanisms for elimination of extra fluid and protein from the airspaces and interstitium of the lung ·examines approaching scientific purposes of modern uncomplicated findings in treating pulmonary edema and acute breathing misery syndrome ·and extra! that includes greater than 2700 references, drawings, images, and equations, Pulmonary Edema is appropriate for pulmonary illness, serious care, and surgical severe care experts, chest physicians, breathing physiologists, cardiologists, breathing therapists, anesthesiologists, anatomists, cellphone biologists, cardiothoracic surgeons, basic internists, pediatricians, and graduate and scientific institution scholars in those disciplines.
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Extra info for Pulmonary edema
Matthay I. Introduction431II. Structure and Function of the Alveolar Epithelium 432III. Regulation of Alveolar Fluid Clearance439IV. Alveolar Epithelial Function Under Pathological Conditions442V. Biophysical Properties of Na+ Channels in Alveolar Epithelial Cells457Yi Guo, Michael D. DuVall, and Sadis Matalon I. Introduction457II. Epithelial Na+ Channels458III. Evidence for the Existence of Na+ Channels in Alveolar Epithelial Cells460IV. Purification, Characterization, and Reconstitution of Na+ Channel Proteins in Lipid Bilayers 468V.
Visiting Scientist, Cardiovascular Research Institute, University of California at San Francisco, San Francisco, California Lorraine B. D. Postdoctoral Fellow, Department of Pulmonary and Critical Care, Cardiovascular Research Institute, University of California at San Francisco, San Francisco, California Christine H. D. Assistant Professor, Department of Medicine, University of Minnesota School of Medicine, Minneapolis, Minnesota Jeanine P. D. Physiological Basis of Pulmonary Edema1Jahar Bhattacharya I.
DuVall, and Sadis Matalon I. Introduction457II. Epithelial Na+ Channels458III. Evidence for the Existence of Na+ Channels in Alveolar Epithelial Cells460IV. Purification, Characterization, and Reconstitution of Na+ Channel Proteins in Lipid Bilayers 468V. Molecular Cloning of Putative Na+ Channel Components470VI. Na,K-ATPase and the Clearance of Pulmonary Edema Fluid477David H. Ingbar, Christine H. Wendt, and Edward D. Crandall I. Introduction477II. Structure of Na,K-ATPase478III. Regulation of Na,K-ATPase481IV.