The Effects of Hypothermia on Myocardial Oxygen Consumption and Transmural Coronary Blood Flow in the Potassium-arrested Heart
- 1 July 1979
- journal article
- research article
- Published by Wolters Kluwer Health in Annals of Surgery
- Vol. 190 (1) , 106-116
- https://doi.org/10.1097/00000658-197907000-00022
Abstract
Hypothermia remains the primary adjunct employed to lower cellular metabolism during various cardiac procedures. In these experiments, left ventricular myocardial oxygen consumption (MVO2) and transmural blood flow (TBF) were measured during cardiopulmonary bypass with the range of temperatures used clinically. Determinations were made in empty beating normothermic hearts and after potassium cardioplegia at 37, 32, 28, 22, 18, and 15° (K+ = 15–37 meq/L: Hct 25 volumes %). Oxygen content of the total coronary sinus collection was compared with a large volume arterial sample using a Lex-O2-Con-TL analyzer (vs Van Slyke, R = 0.98). Transmural blood flow was measured at each temperature using microspheres (8μ), and perfusion was maintained at 80 mmHg. Asystole (37°) alone decreased MVO2 from 5.18 ± 0.55 to 1.85 ± 0.20 ml O2/min/100 g of left ventricle or approximately 65% (p < 0.001). With progressive cooling to 15° an additional 82% decrement in oxygen uptake occurred during asystole (p < 0.001). During asystole at 37° the decrease in MVO2 was reflected mainly by a large decrement (p < 0.01) in TBF (1.27 ± 0.19 to 0.74 ± 0.17 ml/min/g of mean left ventricular flow). However, with cooling below 32°, the arteriovenous oxygen difference narrowed progressively (p < 0.001) while TBF paradoxically returned to control levels. Endocardial/epicardial flow ratios were not altered by cooling. These data not only confirm earlier reports describing a sequential drop in MVO2 with incremental myocardial cooling, but also establish MVO2 levels for perfused hearts arrested by potassium at lower temperatures (18–15°). Moreover, as transmural blood flow becomes independent of metabolic necessity during hypothermia, coronary autoregulation appears to be impaired, possibly affecting detrimental tissue over perfusion.This publication has 32 references indexed in Scilit:
- The Circulation of the Fetus in UteroCirculation Research, 1967
- Ventricular performance, pressure-volume relationships, and O2 consumption during hypothermiaAmerican Journal of Physiology-Legacy Content, 1964
- Effect of cardiac cooling on coronary vascular resistance in normothermic dogsAmerican Journal of Physiology-Legacy Content, 1960
- High energy phosphate levels in the human heart during potassium citrate arrest and selective hypothermic arrest.1960
- Myocardial oxygen consumption and coronary blood flow in hypothermiaAmerican Journal of Physiology-Legacy Content, 1959
- Oxygen Uptake of the Nonworking Left VentricleCirculation Research, 1958
- Effect of Hypothermia on Oxygen Consumption and Energy Utilization of HeartCirculation Research, 1956
- METABOLISM OF RAT HEART SLICES, WITH SPECIAL REFERENCE TO EFFECTS OF TEMPERATURE AND ANOXIAAmerican Journal of Physiology-Legacy Content, 1950
- Reactions of isolated systemic and coronary arteriesThe Journal of Physiology, 1927
- The gaseous metabolism of the mammalian heartThe Journal of Physiology, 1907