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February 1, 1977Circulation Research274 citationsOpen Access

Regional myocardial function and dimensions early and late after myocardial infarction in the unanesthetized dog.

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PTPierre ThérouxJRJ RossDFDavid W. Franklin

Key Points

  • This research investigates how myocardial infarction affects heart function over time in dogs without anesthesia.
  • Pairs of ultrasonic gauges and micromanometers implanted in left ventricles measure heart function.

Structured PICO

How does permanent circumflex coronary artery occlusion affect regional myocardial function and dimensions over time in unanesthetized dogs?

P
Population
Unanesthetized dogs (n=8) with implanted ultrasonic dimension gauges and a micromanometer in the subendocardium of the left ventricle
I
Intervention
Permanent circumflex coronary artery occlusion
C
Comparator
Control myocardial segments within the same subjects
O
Outcome
Serial changes in hemodynamic status and regional segmental function (end-diastolic segment length and percent active shortening) up to 4 weekssurrogate

Permanent coronary occlusion in a conscious dog model produces distinct, progressive changes in regional myocardial dimensions and contractile function, providing a viable model for testing post-MI therapies.

Abstract

Pairs of ultrasonic dimension gauges and a micromanometer implanted in the subendocardium of the left ventricles of unanesthetized dogs were used to analyze serial changes in hemodynamic status and segmental function for up to 4 weeks after permanent circumflex coronary artery occlusion. Regional function was studied in control segments and in segments identified as marginal (hypokinetic) and ischemic. In three dogs, after transient regional dysfunction, no myocardial infarction developed, whereas in five dogs regional dysfunction at 3 hours after occlusion was followed by the development of persistent dysfunction and infarction. Left ventricular end-diastolic segment length (EDL) changes over time; EDL of the control segments increased progressively, but in marginal segments EDL was 12% below control and in the ischemic segments 30% below control by 4 weeks. Progressive increases in percent active shortening occurred in control segments; but holosystolic bulging was replaced by akinesia in ischemic segments, and persistent reduction in shortening was present in marginal segments at 4 weeks. Correlations were found between percent scar and reductions in percent shortening, EDL, and the ratio of change in diastolic length to change in diastolic pressure. These methods have detected hyperfunction in normal regions and variable segmental loss of contractile function, together with reduction of subendocardial dimensions and changes that may reflect decreased diastolic compliance in ischemic regions. We conclude that this model for the conscious animals may be useful for studying the influence of therapy on the extent of myocardial damage after experimental coronary occlusion.

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Cite This Study

Théroux et al. (1977) studied this question.

synapsesocial.com/papers/6a16ac65798df06fa4b268dchttps://doi.org/10.1161/01.res.40.2.158
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Also Consider

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

  1. 1Quantification of function in normal and infarcted regions of the left ventricle1972 · 108 citations
  2. 2Factors Influencing Infarct Size Following Experimental Coronary Artery Occlusions1971 · 1,486 citations
  3. 3Myocardial Contractility in Areas with Chronic Ischaemia: Studies on Isometric Tension1968 · 20 citations
  4. 4REGIONAL MYOCARDIAL FUNCTION IN THE CONSCIOUS DOG DURING ACUTE CORONARY OCCLUSION AND RESPONSES TO MORPHINE, PROPRANOLOL, NITROGLYCERIN, AND LIDOCAINE1976 · 50 citations
  5. 5Interplay among carotid sinus, cardiopulmonary, and carotid body reflexes in dogs1976 · 108 citations