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May 1, 1974Circulation Research60 citationsOpen Access

Regional Coronary Venous Oxygen Saturation and Myocardial Oxygen Tension following Abrupt Changes in Ventricular Pressure in the Isolated Dog Heart

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WGWalter J. GambleBoston Children's HospitalCLC. Grant LaFargeBoston Children's HospitalDFDonald C. FylerUniversity of Southern California

Key Points

  • This research aims to investigate how changes in ventricular pressure affect coronary venous oxygen saturation and myocardial oxygen tension in isolated dog hearts.
  • Measured regional coronary venous oxygen saturation and myocardial oxygen tension using microscopic oximetry and an improved oxygen electrode.

Structured PICO

How do abrupt changes in ventricular pressure affect regional coronary venous oxygen saturation and myocardial oxygen tension in isolated dog hearts?

P
Population
Isolated dog hearts
I
Intervention
Abrupt changes (increases and decreases) in left ventricular systolic pressure
C
Comparator
Constant left ventricular systolic pressure (baseline)
O
Outcome
Regional coronary venous oxygen saturation and myocardial oxygen tension (PO2) in subendocardial versus subepicardial veinssurrogate

Abrupt changes in ventricular pressure cause transient underperfusion and overperfusion of the subendocardial layers in isolated dog hearts.

Abstract

Regional coronary venous oxygen saturation and myocardial oxygen tension (PO 2 ) in isolated dog hearts were measured using two different methods--a new technique of microscopic oximetry and an improved oxygen electrode. Both methods yielded similar results. In studies of the isolated perfused dog heart developing a constant left ventricular systolic pressure, mean coronary venous oxygen saturation of blood in the subendocardial veins of the left ventricle was significantly lower than that in the subepicardial veins. Following abrupt increases in systolic pressure, subendocardial coronary venous saturations fell to even lower levels. Following abrupt decreases in systolic pressure, the mean subendocardial coronary venous oxygen saturation increased to levels above those in the blood of the subepicardial veins. These findings agree with the hypothesis that transient underperfusion and overperfusion of the subendocardial layers of the left ventricle occur with abrupt increases and decreases in ventricular pressure, respectively.

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Cite This Study

Gamble et al. (1974) studied this question.

synapsesocial.com/papers/6a20aab9b447e61ff57bd559https://doi.org/10.1161/01.res.34.5.672
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Also Consider

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

  1. 1Nonuniform distribution of blood flow and gradients of oxygen tension within the heart1964 · 251 citations
  2. 2Left Ventricular Pressure-Volume Relations and Performance as Affected by Sudden Increases in Developed Pressure1968 · 40 citations
  3. 3The Anrep Effect Reconsidered1972 · 91 citations
  4. 4Ventricular Response to Increased Outflow Resistance in Absence of Elevated Intraventricular End-Diastolic Pressure1963 · 22 citations
  5. 5Left Ventricular Performance at High End-Diastolic Pressures in Isolated, Perfused Dog Hearts1970 · 36 citations