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Recovery of cerebral metabolism and mitochondrial oxidation state is delayed after hypothermic circulatory arrest.

Publication ,  Journal Article
Greeley, WJ; Bracey, VA; Ungerleider, RM; Greibel, JA; Kern, FH; Boyd, JL; Reves, JG; Piantadosi, CA
Published in: Circulation
November 1991

To study the effect of deep hypothermic cardiopulmonary bypass and total circulatory arrest on cerebral metabolism and oxygenation, we measured the cerebral metabolic rate for oxygen (CMRO2) and assessed brain oxygenation by near infrared spectroscopy before, during, and after hypothermic bypass in 15 pediatric patients. One group underwent repair during deep hypothermic bypass (18 degrees C) with continuous flow (n = 9); the second group underwent deep hypothermic bypass with total circulatory arrest (n = 6). In the continuous-flow group, CMRO2 returned to control during rewarming and after cardiopulmonary bypass, as did oxyhemoglobin and deoxyhemoglobin in brain tissue. In the total circulatory arrest group, the oxyhemoglobin and the oxidation state of cytochrome aa3 oxidase decreased significantly during circulatory arrest. After cardiopulmonary bypass, the cytochrome oxidation state and the CMRO2 were significantly lower than control measurements, and brain tissue deoxyhemoglobin was elevated. Results of this study indicate that intracellular brain oxygenation decreases significantly during circulatory arrest and remains impaired after rewarming and cardiopulmonary bypass despite normalization of oxygen availability.

Duke Scholars

Published In

Circulation

ISSN

0009-7322

Publication Date

November 1991

Volume

84

Issue

5 Suppl

Start / End Page

III400 / III406

Location

United States

Related Subject Headings

  • Spectrophotometry, Infrared
  • Oxyhemoglobins
  • Oxygen Consumption
  • Oxidation-Reduction
  • Monitoring, Intraoperative
  • Infant, Newborn
  • Infant
  • Hypothermia, Induced
  • Humans
  • Heart Arrest, Induced
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Greeley, W. J., Bracey, V. A., Ungerleider, R. M., Greibel, J. A., Kern, F. H., Boyd, J. L., … Piantadosi, C. A. (1991). Recovery of cerebral metabolism and mitochondrial oxidation state is delayed after hypothermic circulatory arrest. Circulation, 84(5 Suppl), III400–III406.
Greeley, W. J., V. A. Bracey, R. M. Ungerleider, J. A. Greibel, F. H. Kern, J. L. Boyd, J. G. Reves, and C. A. Piantadosi. “Recovery of cerebral metabolism and mitochondrial oxidation state is delayed after hypothermic circulatory arrest.Circulation 84, no. 5 Suppl (November 1991): III400–406.
Greeley WJ, Bracey VA, Ungerleider RM, Greibel JA, Kern FH, Boyd JL, et al. Recovery of cerebral metabolism and mitochondrial oxidation state is delayed after hypothermic circulatory arrest. Circulation. 1991 Nov;84(5 Suppl):III400–6.
Greeley, W. J., et al. “Recovery of cerebral metabolism and mitochondrial oxidation state is delayed after hypothermic circulatory arrest.Circulation, vol. 84, no. 5 Suppl, Nov. 1991, pp. III400–06.
Greeley WJ, Bracey VA, Ungerleider RM, Greibel JA, Kern FH, Boyd JL, Reves JG, Piantadosi CA. Recovery of cerebral metabolism and mitochondrial oxidation state is delayed after hypothermic circulatory arrest. Circulation. 1991 Nov;84(5 Suppl):III400–III406.

Published In

Circulation

ISSN

0009-7322

Publication Date

November 1991

Volume

84

Issue

5 Suppl

Start / End Page

III400 / III406

Location

United States

Related Subject Headings

  • Spectrophotometry, Infrared
  • Oxyhemoglobins
  • Oxygen Consumption
  • Oxidation-Reduction
  • Monitoring, Intraoperative
  • Infant, Newborn
  • Infant
  • Hypothermia, Induced
  • Humans
  • Heart Arrest, Induced