Studies were performed on 16 cats to evaluate the potential protective effects of Gallopamil on brain ischemia. Brain energy state was determined by 31P NMR and lactate concentration was determined by 1H NMR. Double-tuned surface coils (tuned to 35.8 and 88.4, respectively) were placed on the head a
The effect of cardiopulmonary bypass on brain and heart metabolism: A 31P NMR study
✍ Scribed by Julie A. Swain; Robert C. Robbins; Robert S. Balaban; Thomas J. McDonald Jr.; Benjamin Schneider; Robert C. Groom
- Publisher
- John Wiley and Sons
- Year
- 1990
- Tongue
- English
- Weight
- 519 KB
- Volume
- 15
- Category
- Article
- ISSN
- 0740-3194
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✦ Synopsis
Abstract
The development of a large animal preparation using ^31^P nuclear magnetic resonance (NMR) spectroscopy for the study of cerebral and myocardial metabolism during cardiopulmonary bypass (CPB) is reported. The effect of normothermic CPB on myocardial and cerebral metabolism was evaluated. Adolescent sheep were used which have low levels of 2,3 ‐diphosphoglycerate, a compound which can interfere with the calculation ofintra‐cellular pH and inorganic phosphate content. CPB was performed using standard procedures modified for the presence of a high magnetic field and limited access to the animal. High quality ^31^P NMR data were obtained from the brains and hearts of these animals before and during normothermic CPB. These results demonstrate that the initiation of normothermic CPB does not change high energy phosphate levels or intracellular pH. In particular, the decreased myocardial oxygen demand associated with CPB is not associated with improvement in the levels of adenosine triphosphate or phosphocreatine. The measurements of energy metabolism and intracellular pH of the brain and heart during CPB were possible within the constraints of the NMR experiment without compromising the CPB procedure. Combining NMR and CPB techniques permits future studies of cerebral and myocardial metabolism, especially those relating to ischemia. © 1990 Academic Press, Inc.
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