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Published on: July 2, 2018
Left ventricular performance, regional blood flow, wall motion, and lactate metabolism during transluminal
Insights
Percutaneous transluminal coronary angioplasty (PTCA) does not cause lasting harm to heart function, blood flow, or lactate metabolism, even with repeated short occlusions. All functions fully recover within minutes after the procedure.
Area of Science:
- Cardiology
- Interventional Cardiology
- Physiology
Background:
- Percutaneous transluminal coronary angioplasty (PTCA) involves temporary coronary artery occlusion.
- Understanding the impact of these occlusions on cardiac function and metabolism is crucial.
Purpose of the Study:
- To investigate the effects of PTCA-induced coronary occlusions on left ventricular function, coronary blood flow, and myocardial lactate metabolism.
- To assess the reversibility of these effects after repeated occlusions.
Main Methods:
- Studied 19-20 patients undergoing PTCA with 4-6 balloon inflations (average 51 sec each).
- Monitored left ventricular hemodynamics, including pressure changes and relaxation parameters.
- Measured great cardiac vein and coronary sinus blood flow and reactive hyperemia.
- Analyzed arteriovenous lactate difference to assess myocardial metabolism.
Main Results:
- Left ventricular relaxation parameters responded earliest to occlusion, followed by gradual depression of other mechanical functions.
- Hemodynamic functions fully recovered within minutes post-PTCA.
- Reactive hyperemia increased with subsequent dilatations, especially when stenosis was reduced.
- Lactate balance remained negative during occlusions but normalized rapidly post-procedure, indicating reversible metabolic disturbances.
Conclusions:
- Repeated short-duration coronary occlusions during PTCA do not lead to permanent dysfunction in myocardial mechanics, blood flow, or lactate metabolism.
- Cardiac function and metabolic disturbances are fully reversible after PTCA.
Abstract:
The response of left ventricular function, coronary blood flow, and myocardial lactate metabolism during percutaneous transluminal coronary angioplasty (PTCA) was studied in a series of patients undergoing the procedure. From four to six balloon inflation procedures per patient were performed with an average duration per occlusion of 51 +/- 12 sec (mean +/- SD) and a total occlusion time of 252 +/- 140 sec. Analysis of left ventricular hemodynamics in 19 patients showed that the relaxation parameters, peak negative rate of change in pressure, and early time constants of relaxation, responded earliest to short-term coronary occlusion (peak effect at 17 +/- 7 sec) while other parameters, such as peak pressure, left ventricular end-diastolic pressure, and peak positive rate of change in pressure, responded more gradually, suggesting a progressive depression of myocardial mechanics throughout the procedure. Left ventricular angiograms, available for 14 patients, indicated an early onset of asynchronous relaxation concurrent with the early response in peak negative dP/dt and the time constant of early relaxation. All hemodynamic functions fully recovered within minutes after the end of PTCA. Mean blood flow in the great cardiac vein and proximal coronary sinus and the hyperemic response were measured in 20 patients. Before PTCA mean flow in the great cardiac vein was 69 +/- 17 ml/min and in the coronary sinus it was 129 +/- 34 ml/min. Reactive hyperemia (great cardiac vein) was 55% after the first PTCA and 91% after the third. A more pronounced reaction was observed when the residual functional coronary stenosis was reduced in subsequent dilatations. Arteriovenous lactate difference appeared constant during the first two occlusions (control +0.11 mmol/liter, first PTCA -0.87 mmol/liter, and second PTCA -0.82 mmol/liter) and did not increase during subsequent occlusions. Within minutes after the procedure lactate balance was again positive, demonstrating the reversibility of the metabolic disturbances after repeated ischemia. The results of this study indicate that there is no permanent dysfunction of global or regional myocardial mechanics, myocardial blood flow, or lactate metabolism after PTCA with four to six coronary occlusions of 40 to 60 sec.
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