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Blood flow dynamics in heart failureBACKGROUND: Exercise intolerance in heart failure (HF) may be due to inadequate vasodilation, augmented vasoconstriction, and/or altered muscle metabolic responses that lead to fatigue. METHODS AND RESULTS: Vascular and metabolic responses to rhythmic forearm exercise were tested in 9 HF patients and 9 control subjects (CTL) during 2 protocols designed to examine the effect of HF on the time course of oxygen delivery versus uptake (protocol 1) and on vasoconstriction during exercise with 50 mm Hg pressure about the forearm to evoke a metaboreflex (protocol 2). In protocol 1, venous lactate and H+ were greater at 4 minutes of exercise in HF versus CTL (P<0.05) despite similar blood flow and oxygen uptake responses. In protocol 2, mean arterial pressure increased similarly in each group during ischemic exercise. In CTL, forearm blood flow and vascular conductance were similar at the end of ischemic and ambient exercise. In HF, forearm blood flow and vascular conductance were reduced during ischemic exercise compared with the ambient trial. CONCLUSIONS: Intrinsic differences in skeletal muscle metabolism, not vasodilatory dynamics, must account for the augmented glycolytic metabolic responses to moderate-intensity exercise in class II and III HF. The inability to increase forearm vascular conductance during ischemic handgrip exercise, despite a normal pressor response, suggests that enhanced vasoconstriction of strenuously exercising skeletal muscle contributes to exertional fatigue in HF.
Document ID
20040141930
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Shoemaker, J. K.
(Pennsylvania State University College of Medicine Hershey, PA, United States)
Naylor, H. L.
Hogeman, C. S.
Sinoway, L. I.
Date Acquired
August 22, 2013
Publication Date
June 15, 1999
Publication Information
Publication: Circulation
Volume: 99
Issue: 23
ISSN: 0009-7322
Subject Category
Life Sciences (General)
Funding Number(s)
CONTRACT_GRANT: R01-AG12227
CONTRACT_GRANT: M01 RR-10732
Distribution Limits
Public
Copyright
Other
Keywords
NASA Discipline Cardiopulmonary
Non-NASA Center

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