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Biventricular function in exercise during autonomic (thoracic epidural) block

Jeroen Wink; Paul Steendijk; Roula Tsonaka; Rob B. P. de Wilde; Hans J. Friedericy; Jerry Braun; Bernadette Th. Veering; Leon P. H. J. Aarts; Patrick F. Wouters
European Journal of Applied Physiology · Vol. 121, Issue 5 · pp. 1405-1418 · 2021

Abstract

Background Blockade of cardiac sympathetic fibers by thoracic epidural anesthesia (TEA) was previously shown to reduce right and left ventricular systolic function and effective pulmonary arterial elastance. At conditions of constant paced heart rate, cardiac output and systemic hemodynamics were unchanged. In this study, we further investigated the effect of cardiac sympathicolysis during physical stress and increased oxygen demand. Methods In a cross-over design, 12 patients scheduled to undergo thoracic surgery performed dynamic ergometric exercise tests with and without TEA. Hemodynamics were monitored and biventricular function was measured by transthoracic two-dimensional and M-mode echocardiography, pulsed wave Doppler and tissue Doppler imaging. Results TEA attenuated systolic RV function (TV Sʹ: − 21%, P < 0.001) and LV function (MV Sʹ: − 14%, P = 0.025), but biventricular diastolic function was not affected. HR (− 11%, P < 0.001), SVI (− 15%, P = 0.006), CI (− 21%, P < 0.001) and MAP (− 12%, P < 0.001) were decreased during TEA, but SVR was not affected. Exercise resulted in significant augmentation of systolic and diastolic biventricular function. During exercise HR, SVI, CI and MAP increased (respectively, + 86%, + 19%, + 124% and + 17%, all P < 0.001), whereas SVR decreased (− 49%, P < 0.001). No significant interactions between exercise and TEA were found, except for RPP ( P = 0.024) and MV E DT ( P = 0.035). Conclusion Cardiac sympathetic blockade by TEA reduced LV and RV systolic function but did not significantly blunt exercise-induced increases in LV and RV function. These data indicate that additional mechanisms besides those controlled by the cardiac sympathetic nervous system are involved in the regulation of cardiac function during dynamic exercise. Trial registration Clinical trial registration: Nederlands Trial Register, NTR 4880 http://www.trialregister.nl/trialreg/admin/rctview.asp?TC=4880 .

Bibliographic Information

JournalEuropean Journal of Applied Physiology
PublisherSpringer
Publication Date2021-05-01
Publication Year2021
Volume121
Issue5
Pages1405-1418
Document TypeJournal Article
Print ISSN1439-6319
eISSN1439-6327
DOI10.1007/s00421-021-04631-6

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NARA Access Coverage1928-01-01~Current
Journal Homepagehttps://www.springer.com/journal/421
Publisher PageOpen Publisher Page
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