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Principles of exercise testing and i...
~
Wasserman, Karlman.
Principles of exercise testing and interpretationincluding pathophysiology and clinical applications /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Principles of exercise testing and interpretationKarlman Wasserman ... [et al.].
其他題名:
including pathophysiology and clinical applications /
其他作者:
Wasserman, Karlman.
出版者:
Philadelphia :Wolters Kluwer Health/Lippincott Williams & Wilkins,c2012.
面頁冊數:
1 online resource (xiii, 572 p.) :col. ill.
標題:
Exercise tests.
電子資源:
http://ovidsp.ovid.com/ovidweb.cgi?T=JS&NEWS=N&PAGE=booktext&DF=bookdb&AN=01439422/5th_Edition&XPATH=/PG(0)
ISBN:
9781609138998 (hardback : alk. paper)
Principles of exercise testing and interpretationincluding pathophysiology and clinical applications /
Principles of exercise testing and interpretation
including pathophysiology and clinical applications /[electronic resource] :Karlman Wasserman ... [et al.]. - 5th ed. - Philadelphia :Wolters Kluwer Health/Lippincott Williams & Wilkins,c2012. - 1 online resource (xiii, 572 p.) :col. ill.
Includes bibliographical references and index.
"In this fifth edition of Principles of Exercise Testing and Interpretation, as in earlier editions, we attempt to develop conceptual advances in the physiology and pathophysiology of exercise, particularly as related to the practice of medicine. The underlying theme of the book continues to be the recognition that the most important requirement for exercise performance is transport of oxygen to support the bioenergetic processes in the muscle cells (including, of course, the heart) and elimination of the carbon dioxide formed as a byproduct of exercise metabolism. Thus, appropriate cardiovascular and ven- tilatory responses are required to match those of muscle respiration in meeting the energy demands of exercise. As depicted by the logo on the book cover, normal exercise performance requires an efficient coupling of external to internal (cellular) respiration. Appropriate treatment of exercise intolerance requires that patients' symptoms be thought of in terms of a gas exchange defect between the cell and the environment. The defect may be in the lungs, heart, peripheral or pulmonary circulations, the muscles themselves, or there may be a combination of defects. Thus, we describe the pathophysiology in gas transport and exchange that affect any site in the cardio- respiratory coupling between the lungs and the muscles. We illustrate how cardiopulmonary exercise testing can provide the means for a critical evaluation by the clinician-scientist of the functional competency of each component in the coupling of cellular to external respiration, including the cardiovascular system. To achieve this, clinical cases are used to illustrate the wide spectrum of pathophysiology capable of causing exercise intolerance"--Provided by publisher.
ISBN: 9781609138998 (hardback : alk. paper)Subjects--Topical Terms:
210826
Exercise tests.
LC Class. No.: RC683.5.E94 / P75 2012
Dewey Class. No.: 616.1/20754
National Library of Medicine Call No.: WG 141.5.F9 / P957 2012
Principles of exercise testing and interpretationincluding pathophysiology and clinical applications /
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"In this fifth edition of Principles of Exercise Testing and Interpretation, as in earlier editions, we attempt to develop conceptual advances in the physiology and pathophysiology of exercise, particularly as related to the practice of medicine. The underlying theme of the book continues to be the recognition that the most important requirement for exercise performance is transport of oxygen to support the bioenergetic processes in the muscle cells (including, of course, the heart) and elimination of the carbon dioxide formed as a byproduct of exercise metabolism. Thus, appropriate cardiovascular and ven- tilatory responses are required to match those of muscle respiration in meeting the energy demands of exercise. As depicted by the logo on the book cover, normal exercise performance requires an efficient coupling of external to internal (cellular) respiration. Appropriate treatment of exercise intolerance requires that patients' symptoms be thought of in terms of a gas exchange defect between the cell and the environment. The defect may be in the lungs, heart, peripheral or pulmonary circulations, the muscles themselves, or there may be a combination of defects. Thus, we describe the pathophysiology in gas transport and exchange that affect any site in the cardio- respiratory coupling between the lungs and the muscles. We illustrate how cardiopulmonary exercise testing can provide the means for a critical evaluation by the clinician-scientist of the functional competency of each component in the coupling of cellular to external respiration, including the cardiovascular system. To achieve this, clinical cases are used to illustrate the wide spectrum of pathophysiology capable of causing exercise intolerance"--Provided by publisher.
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