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April 1, 1992Acta Anaesthesiologica Scandinavica1 citations

Myocardial circulatory and metabolic effects of halothane when used to control intraoperative hypertension in patients with coronary artery disease

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LSLars SahlmanIMI. MiloccoSRSven‐Erik Ricksten

Structured PICO

Does halothane improve myocardial hemodynamics and metabolism when used to control intraoperative hypertension in patients with coronary artery disease undergoing CABG?

P
Population
15 patients with two- or three-vessel coronary artery disease with an ejection-fraction greater than 0.5 and on beta-blockers up to the morning of surgery, undergoing elective coronary artery by-pass grafting.
I
Intervention
Halothane administration (end-tidal concentration 0.96 +/- 0.11%) as an adjunct to fentanyl-nitrous oxide anaesthesia to treat intraoperative hypertension.
C
Comparator
Baseline (pre-sternotomy) and during sternotomy (within-patient comparison).
O
Outcome
Systemic and pulmonary haemodynamics, global (coronary sinus, CSF) and regional (great cardiac vein, GCVF) myocardial blood flow, and myocardial metabolism.surrogate

Halothane effectively controls intraoperative hypertension during CABG by reducing systemic and coronary vascular resistance and myocardial oxygen consumption without compromising cardiac index.

Abstract

The effect of halothane on regional myocardial metabolism and blood flow, when used as an adjunct to fentanyl-nitrous oxide anaesthesia, to treat intraoperative hypertension was investigated. Fifteen patients with two- or three-vessel coronary artery disease with an ejection-fraction greater than 0.5 and on beta-blockers up to the morning of surgery were studied during elective coronary artery by-pass grafting. Systemic and pulmonary haemodynamics, global (coronary sinus, CSF) and regional (great cardiac vein, GCVF) myocardial blood flow were measured. Measurements were made: 1) after induction of anaesthesia but prior to skin incision, 2) during sternotomy, and 3) during halothane administration after its use to reduce arterial pressure to the pre-sternotomy level. The increase in systemic arterial pressure during sternotomy was due to an increase in systemic vascular resistance index (SVRI), and was accompanied by an increase in pulmonary capillary wedge pressure (PCWP), regional myocardial oxygen consumption and extraction, GCFV and CSF. Halothane reduced arterial blood pressure to pre-sternotomy levels within 7.1 +/- 0.6 min at an end-tidal concentration of 0.96 +/- 0.11%. Halothane caused a decrease in SVRI, total coronary vascular resistance, regional myocardial oxygen consumption and extraction, while cardiac index, heart rate and GCVF/CSF ratio remained unchanged. Mean regional myocardial lactate extraction was not affected by sternotomy or halothane. During halothane administration one patient developed regional myocardial lactate production which was not present during sternotomy. However, another two patients, who had regional myocardial lactate production during sternotomy, did not produce lactate or had less negative value of regional myocardial lactate extraction during halothane administration.

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Cite This Study

Sahlman et al. (1992) studied this question.

synapsesocial.com/papers/6a82db52e539c938444418e9https://doi.org/10.1111/j.1399-6576.1992.tb03465.x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of Halothane on Coronary Haemodynamics and Myocardial Metabolism in Patients with Ischaemic Heart Disease and Heart Failure1982 · 50 citations
  2. 2Global and Regional Myocardial Blood Flow and Metabolism during Equipotent Halothane and Isoflurane Anesthesia in Patients with Coronary Artery Disease1988 · 53 citations
  3. 3Myocardial Metabolism and Hemodynamic Responses to Halothane or Morphine Anesthesia for Coronary Artery Surgery1982 · 30 citations
  4. 4Myocardial Metabolism and Hemodynamic Responses to Halothane or Morphine Anesthesia for Coronary Artery Surgery1983 · 34 citations
  5. 5Comparison of Isoflurane and Halothane When Used to Control Intraoperative Hypertension in Patients Undergoing Coronary Artery Bypass Surgery1983 · 32 citations