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Biomedical subjects

D C Homans

Publications and source records attributed to D C Homans.

At least 37 records · Page 2Linked to original sources

Coronary vasodilator reserve in ischemic myocardium of the exercising dog.

BACKGROUND: Previous work has reported that coronary vasodilator reserve may persist in myocardium rendered ischemic by hypoperfusion. This study investigated the presence and extent of residual coronary vasomotor tone in myocardial regions made acutely ischemic by a flow-limiting coronary stenosis during exercise. METHODS AND RESULTS: Studies were done in chronically instrumented dogs undergoing treadmill exercise in the presence of a coronary stenosis that decreased distal left circumflex coronary artery perfusion pressure to approximately 40 mm Hg. Measurements of myocardial blood flow were made with radioactive microspheres during exercise (6.5 km/hr, 6% grade) before and during intracoronary infusion of the potent coronary vasodilator adenosine (40 micrograms/kg/min). Distal coronary perfusion pressure was held equal before and during intracoronary adenosine infusion (43 +/- 5 versus 42 +/- 5 mm Hg) by adjusting the hydraulic coronary occluder. During exercise in the presence of a coronary stenosis, myocardial blood flow (milliliter per minute per gram) was significantly reduced in all layers of the ischemic posterior region compared with the nonischemic anterior region. During intracoronary adenosine infusion, with no change in coronary perfusion pressure, myocardial blood flow was significantly increased compared with preadenosine flows for both the subendocardial layer flow (1.03 +/- 0.74 versus 0.66 +/- 0.50; p less than 0.05) and mean transmural flow (1.54 +/- 0.59 versus 1.16 +/- 0.36; p less than 0.05). In the presence of a coronary stenosis, regional myocardial segment shortening in the ischemic region during exercise fell significantly to 49 +/- 8% of shortening in the absence of a coronary stenosis but improved modestly during adenosine infusion (65 +/- 7 versus 49 +/- 8%; p less than 0.05). CONCLUSIONS: These results indicate that adenosine-responsive coronary vasodilator reserve persists during exercise-induced myocardial ischemia and suggest that residual microvascular vasoconstrictor tone may affect the extent of myocardial hypoperfusion occurring consequent to a flow-limiting coronary stenosis.

Adenosine↗

Adrenergic vasoconstriction limits coronary blood flow during exercise in hypertrophied left ventricle.

This study was carried out to test the hypothesis that alpha-adrenergic vasoconstriction limits coronary blood flow (CBF) during exercise in the chronically pressure overloaded, hypertrophied left ventricle. Studies were performed in dogs in which left ventricular hypertrophy had been produced by banding the ascending aorta at 9 wk of age. Left circumflex coronary artery blood flow and myocardial O2 consumption (MVO2) were examined at rest and during treadmill exercise during control conditions, after selective alpha 1-adrenergic blockade with prazosin, and after nonselective alpha-adrenergic blockade with phentolamine. All studies were performed after beta-adrenergic blockade with propranolol. During control conditions CBF and MVO2 increased progressively during exercise, while coronary sinus O2 tension decreased. Neither prazosin nor phentolamine altered CBF at rest but, in comparison with control measurements, both agents significantly increased CBF during exercise and abolished the decrease in coronary sinus O2 tension that normally occurred during exercise. Both prazosin and phentolamine caused similar significant increases of MVO2 relative to the heart rate times systolic left ventricular pressure during exercise, indicating that the increased CBF produced by these agents enhanced MVO2. Similar findings after prazosin and phentolamine indicate that adrenergic restraint of CBF during exercise resulted principally from alpha 1-adrenergic vasoconstrictions with little additional contribution from postjunctional alpha 2-adrenergic mechanisms.

Animals↗

Effect of exercise intensity and duration on regional function during and after exercise-induced ischemia.

BACKGROUND: Transient reversible myocardial dysfunction has been documented after episodes of exercise-induced ischemia. This study was undertaken to determine whether the duration or intensity of exercise affects the severity of postischemic dysfunction in this setting. METHODS AND RESULTS: Ten dogs were instrumented with ultrasonic microcrystals for measurement of wall thickening, with circumflex coronary artery flow probes, and with hydraulic occluders. Dogs performed low-intensity exercise, which was sufficient to increase coronary perfusion 50% above control, and high-intensity exercise, which was sufficient to double coronary blood flow. To investigate the effects of exercise intensity on postischemic dysfunction, we had dogs perform high-intensity exercise for 5 minutes in the presence of a stenosis. On the alternate day, dogs performed low-intensity exercise for 10 minutes in the presence of a stenosis. These two protocols provide equivalent coronary flow debts. Mean transmural blood flow during high-intensity exercise without stenosis (2.61 +/- 0.54 ml/min/g) was significantly higher than that during low-intensity exercise (1.74 +/- 0.61 ml/min/g, p less than 0.002). During high-intensity exercise with coronary artery stenosis, subendocardial blood flow was significantly lower than that during low-intensity exercise with stenosis (0.64 +/- 0.40 versus 1.08 +/- 0.28 ml/min/g, p less than 0.02). This difference in subendocardial perfusion was associated with greater degrees of regional dysfunction during exercise (circumflex wall thickening was 44 +/- 23% of control for high-intensity exercise versus 60 +/- 18% of control for low-intensity exercise, p less than 0.01). In addition, from 10 to 30 minutes after exercise, wall thickening in myocardium perfused by the circumflex coronary artery remained significantly lower after high-intensity exercise than that after low-intensity exercise. To assess the effects of exercise duration on the severity of postischemic dysfunction, we had dogs perform low-intensity exercise in the presence of a coronary stenosis for 10 minutes and low-intensity exercise for only 5 minutes on alternate days. Systolic wall thickening was significantly lower after low-intensity exercise for 10 minutes than after low-intensity exercise for 5 minutes. CONCLUSIONS: High-intensity exercise results in greater degrees of subendocardial hypoperfusion and greater degrees of regional dysfunction both during and after exercise-induced ischemia than does low-intensity exercise. Second, exercise duration also exerts an effect on the severity of postischemic dysfunction, although the magnitude of this effect is less important than the effect of exercise intensity.

Animals↗

Vasomotor activity of moderately well-developed canine coronary collateral circulation.

This study examined the ability of moderately well-developed coronary collateral vasculature to undergo vasoconstriction in response to alpha-adrenergic agonists, vasopressin and angiotensin, and vasodilation in response to nitroglycerin. Studies were performed in 20 dogs 4-16 wk after left anterior descending coronary artery occlusion had been produced by an Ameroid constrictor or hollow intravascular plug. Collateral flow was estimated from retrograde flow from the cannulated left anterior descending artery. Tissue flow was measured with microspheres. Agonists were introduced into the left main coronary artery to reach collaterals arising from the left circumflex and septal arteries. Vasopressin and angiotensin II decreased retrograde flow from 22.7 +/- 5.5 to 15.5 +/- 2.7 and from 19.2 +/- 2.8 to 14.3 +/- 1.9 ml/min, respectively (each P less than 0.05). Both agents also significantly decreased tissue flow to normally perfused and collateral dependent myocardium. Neither the selective alpha 1-adrenergic agonist phenylephrine nor the alpha 2-agonist B-HT 933 decreased retrograde flow. Nitroglycerin increased retrograde flow by 63 +/- 27% (P less than 0.01). Thus, although the moderately well-developed coronary collateral circulation is capable of vasoconstriction in response to vasopressin and angiotensin II, these data fail to support a role for alpha-adrenergic mechanisms in modulating collateral flow.

Adrenergic alpha-Agonists↗

Coronary flow during exercise after selective alpha 1- and alpha 2-adrenergic blockade.

This study was carried out to determine the relative importance of alpha 1- and alpha 2-adrenergic vasoconstriction in opposing the increase in coronary blood flow, which occurs during exercise. The response of left circumflex coronary artery blood flow was examined during treadmill exercise in 16 chronically instrumented dogs during control conditions, after selective alpha 1-adrenergic blockade with intracoronary prazosin, and after alpha 2-blockade with intracoronary idazoxan. During control conditions, graded treadmill exercise resulted in progressive increases of coronary blood flow and decreases of coronary vascular resistance. Prazosin produced highly selective alpha 1-adrenergic blockade; coronary blood flow was significantly higher and coronary vascular resistance significantly lower during all but the heaviest exercise stage after prazosin. Idazoxan produced highly effective, but only moderately selective, alpha 2-adrenergic blockade. However, after idazoxan, coronary blood flow and coronary vascular resistance during exercise were not significantly different from control. Combined alpha 1- and alpha 2-adrenergic blockade was not more effective in increasing coronary blood flow during exercise than was alpha 1-adrenergic blockade alone. These data support a role for alpha 1-adrenergic coronary vasoconstriction in limiting the increase in coronary blood flow, which occurs during exercise, but do not support a role for alpha 2-mediated coronary vasoconstriction during exercise.

Adrenergic alpha-Antagonists↗

Cumulative deterioration of myocardial function after repeated episodes of exercise-induced ischemia.

To determine whether progressive regional myocardial dysfunction occurs after repetitive episodes of exercise-induced ischemia, 10 dogs were instrumented with ultrasonic microcrystals for determination of regional myocardial wall thickening, circumflex artery electromagnetic flow probes, and hydraulic coronary artery occluders. Dogs performed treadmill exercise in the presence of a coronary artery stenosis, which limited coronary blood flow to control levels. Dogs performed a single 10-min exercise period one day and three identical runs separated by 1-h rest periods on the alternate day. At rest before the first exercise period, circumflex wall thickening was 18.8 +/- 6.7% and increased to 25.5 +/- 10.6% during exercise before the application of coronary stenosis. On the day that three exercise trials were performed, circumflex systolic wall thickening at rest before the third exercise period (9.7 +/- 4.0%) and during exercise without coronary stenosis (17.3 +/- 7.3%) were both significantly lower than during the first exercise period (P less than 0.0125). During exercise with stenosis, circumflex systolic wall thickening fell to 4.6 +/- 4.7% during a single run, and 5.0 +/- 2.0% during the third of three consecutive runs. Wall thickening was significantly lower 2 h after the third consecutive run (9.1 +/- 2.4%) than 2 h after a single period of exercise-induced ischemia (14.8 +/- 7.6%; P 0.0125). Transmural myocardial blood flow to circumflex myocardium during the third period of exercise-induced ischemia (0.93 +/- 0.47 ml.min-1.g-1) was not different than during the single period of exercise (0.84 +/- 0.47 ml.min-1.g-1). It is concluded that repetitive episodes of exercise-induced ischemia result in cumulative postexercise regional myocardial dysfunction.

Animals↗

Oxygen consumption and coronary reactivity in postischemic myocardium.

Coronary vascular responses in regions of reversible postischemic myocardial contractile dysfunction (stunned myocardium) were examined in chronically instrumented, awake dogs. Left anterior descending coronary artery blood flow and oxygen extraction, aortic and left ventricular pressures, and regional myocardial segment shortening were determined. Regional myocardial blood flow was measured with microspheres. Coronary reactive hyperemia and vasodilator reserve, and regional myocardial oxygen consumption were determined. Three sequential 10-minute left anterior descending coronary artery occlusions separated by 30-minute reperfusion periods resulted in progressive postischemic dysfunction so that 1 hour after the final coronary artery occlusion, myocardial segment shortening was reduced to 37% of baseline. Despite this decrease in contractile function, left anterior descending artery flow (19.6 +/- 2.6 vs. 18.4 +/- 3.0 ml/min), myocardial blood flow and the transmural distribution of flow measured with microspheres, and regional myocardial oxygen consumption were unchanged. Although the coronary vasodilator reserve in response to adenosine was unaltered (63 +/- 9 vs. 70 +/- 15 ml/min), the reactive hyperemia response to a 10-second coronary occlusion was decreased in intensity (debt repayment ratio = 474 +/- 78% vs. 322 +/- 74%; p less than 0.05) and duration (57 +/- 9.1 vs. 35 +/- 4.5 seconds; p less than 0.05), while the peak flow response was unchanged (57 +/- 6.8 vs. 60 +/- 7.1 ml/min). Thus, in the intact awake animal postischemic myocardial contractile dysfunction was not associated with decreased myocardial oxygen consumption and did not impair the normal relation between coronary blood flow and myocardial oxygen utilization. Although coronary vessels showed a normal ability to vasodilate in response to adenosine, coronary reactive hyperemia was reduced.

Animals↗

Effect of atrial natriuretic peptide on coronary collateral blood flow.

This study was carried out to examine the effects of atrial natriuretic peptide on coronary collateral blood flow. Studies were performed in nine adult mongrel dogs 3.4 months after embolic occlusion of the left anterior descending coronary artery had been performed to stimulate collateral vessel growth. At the time of study the anterior descending coronary artery was cannulated to allow estimation of interarterial collateral flow from measurements of retrograde blood flow. Injection of radioactive microspheres during retrograde flow collection allowed simultaneous determination of continuing tissue flow for evaluation of microvascular collateral communications. Atrial natriuretic peptide in doses of 20 and 200 micrograms administered into the left atrium resulted in 17 +/- 3.0% and 34 +/- 4.5% increases in retrograde flow, respectively (each p less than 0.01). Tissue flow in the collateral dependent myocardial region did not change in response to atrial natriuretic peptide. After the larger dose of atrial natriuretic peptide, the administration of nitroglycerin (10 micrograms/kg into the left atrium) caused no further increase of retrograde blood flow, and no further decrease of collateral vascular resistance. These data indicate that atrial natriuretic peptide causes vasodilation of moderately well-developed interarterial coronary collateral vessels.

Animals↗

The role of alpha 1- and alpha 2-adrenergic receptors in mediation of coronary vasoconstriction in hypoperfused ischemic myocardium during exercise.

This study was carried out to test the hypothesis that adrenergic coronary vasoconstriction limits blood flow to hypoperfused regions of myocardium during exercise. The vasoconstrictor influence of alpha-adrenergic receptor subtypes was assessed by use of selective adrenergic blocking agents. Dogs chronically instrumented with a circumflex coronary artery hydraulic occluder and an intra-arterial catheter underwent treadmill exercise in the presence of a coronary stenosis that decreased distal perfusion pressure to 40 mm Hg. Myocardial blood flow was measured with radioactive microspheres (15 microns) before and during selective alpha 1- or alpha 2-adrenergic receptor blockade produced by intracoronary infusion of prazosin (1 microgram/kg/min x 10 min) or idazoxan (1 microgram/kg/min x 10 min), respectively. Coronary perfusion pressure was held equal before and during receptor blockade with the hydraulic occluder. Compared with control exercise, subendocardial blood flow increased during alpha 1-receptor blockade with prazosin from 0.60 +/- 0.14 to 1.12 +/- 0.17 ml/min/g (p less than 0.05), and mean transmural flow increased from 1.07 +/- 0.19 to 1.60 +/- 0.22 ml/min/g (p less than 0.05). In contrast, subendocardial and mean transmural blood flow were not different from control during selective alpha 2-adrenergic receptor blockade with idazoxan (0.48 +/- 0.10 vs. 0.67 +/- 0.14 ml/min/g, p = 0.33, and 0.82 +/- 0.15 vs. 1.02 +/- 0.20 ml/min/g, p = 0.45, respectively). These data indicate that even in the presence of a coronary stenosis that causes substantial myocardial underperfusion during exercise, residual coronary vasoconstrictor tone is present in ischemic myocardium, and this vasoconstriction is mediated predominantly by the alpha 1-adrenergic receptor.

Animals↗

Coronary artery disease in cardiac transplant patients receiving triple-drug immunosuppressive therapy.

Although triple-drug immunosuppression with cyclosporine, prednisone, and azathioprine has reduced the incidence of acute graft rejection after cardiac transplant, its effect on the development of coronary artery disease is unknown. We have followed up 74 cardiac transplant recipients with yearly coronary angiograms. The probability of acute rejection was 10.8% at 1 year. The incidence of coronary artery disease was 8% at 1 year (six of 74 patients) and 24% at 2 years (11 of 30 patients). In patients who developed posttransplant coronary artery disease, there was a slightly higher, but not statistically significant, incidence of acute graft rejection and pretransplant idiopathic cardiomyopathy. No correlation was found between the incidence of coronary artery disease and recipient age, human leukocyte antigen (HLA) type, hypertension, diabetes, cholesterol level, triglyceride levels, weight gain after transplant, and smoking. These data indicate that triple-drug immunosuppression, despite having produced a significant reduction in the episodes of acute graft rejection, has not decreased the incidence of posttransplant coronary artery disease. Common risk factors for coronary disease and HLA mismatch are probably not important in the pathogenesis of coronary atherosclerosis after cardiac transplantation, whereas the risk for coronary artery disease may be increased by acute graft rejection and pretransplant idiopathic cardiomyopathy.

Azathioprine↗

Coronary vasodilator reserve after human orthotopic cardiac transplantation.

Cardiac transplantation is frequently associated with accelerated coronary atherosclerosis and immune-mediated microvascular injury. To determine if orthotopic cardiac transplantation impairs the capacity of the coronary vasculature to vasodilate and conduct hyperemic blood flow, maximal coronary vasodilator reserve was measured in 25 cardiac allograft recipients with no evidence of rejection 6-57 months after transplantation and in 20 normal subjects. Left ventricular wall thickness was assessed echocardiographically, and epicardial coronary anatomy was evaluated by quantitative coronary angiography. Coronary vasodilator reserve (CVDR) was measured in all patients with a coronary Doppler catheter and a maximally vasodilating dose of intracoronary papaverine. CVDR measured in the transplant recipients with normal coronary arteries, left ventricular function, and wall thickness (5.0 +/- 0.3 [mean +/- SEM] peak/resting velocity; range, 3.8-7.3; n = 16) was not different from that of normal subjects (4.8 +/- 0.2; range, 3.7-8.3). CVDR in the five cardiac allograft recipients with diffuse coronary atherosclerosis producing 30 +/- 5% narrowing (range, 25-38%) of epicardial vessel diameter also was normal (5.1 +/- 0.3; range, 4.3-6.2; n = 5). The CVDR was reduced, however, in two of the four cardiac allograft recipients with left ventricular hypertrophy. In the only transplant recipient in whom a regional wall motion abnormality was present, CVDR was abnormal in the vascular distribution of the hypokinetic wall segment (1.8) but was normal in the artery that supplied normally functioning myocardium (4.0). These findings demonstrate that in the absence of allograft rejection, acquired left ventricular hypertrophy, and regional wall motion abnormalities, coronary vasodilator reserve is normal after orthotopic human cardiac transplantation.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Pressure↗

Subendocardial and subepicardial wall thickening during ischemia in exercising dogs.

To determine whether ischemia in the exercising dog is associated with preservation of subepicardial thickening relative to subendocardial thickening, 10 dogs were chronically instrumented with circumflex artery flow probes, hydraulic occluders, and pairs of ultrasonic microcrystals for determination of wall thickness in the circumflex artery distribution. One pair of crystals spanned the entire ventricular wall (transmural), and the other spanned the outer half of the ventricular wall. Inner wall thickness was computed as the difference between transmural wall thickness and outer wall thickness. Dogs performed control treadmill exercise and exercise with a coronary stenosis that reduced circumflex artery flow to resting control levels. Percent systolic thickening at rest for the transmural, inner, and outer regions was 21.3 +/- 11.8%, 35.5 +/- 20.3%, and 10.3 +/- 5.0% (mean +/- SD), respectively. During exercise without stenosis, systolic thickening increased to 143 +/- 37% of control for outer wall crystals and 137 +/- 26% of control for the inner portion of the wall. During exercise, the addition of a coronary stenosis caused a reduction in thickening to 17.7 +/- 28.5% of control for the outer wall and 40.1 +/- 32.3% of control for the inner portion of the wall; these were not significantly different. In contrast, normalized inner wall blood flow during exercise with circumflex artery stenosis (25.0 +/- 16.0%) was significantly less than for the outer portion of the wall (48.5 +/- 20.9%). Further, there was a close relation between changes in inner wall thickening and inner wall blood flow (r = 0.84), whereas there was only a very weak relation between changes in outer wall blood flow and function (r = 0.62; p = 0.04). During ischemia in the exercising dog, outer wall thickening is depressed out of proportion to reductions in outer wall blood flow and is not preserved relative to inner wall thickening.

Animals↗

Role of adenosine in coronary vasodilation during exercise.

This study examined the hypothesis that increases in myocardial blood flow during exercise are mediated by adenosine-induced coronary vasodilation. Active hyperemia associated with graded treadmill exercise and coronary reactive hyperemia were examined in chronically instrumented awake dogs during control conditions, after intracoronary infusion of adenosine deaminase (5 units/kg/min for 10 minutes), and after adenosine receptor blockade with 8-phenyltheophylline. Both adenosine deaminase and 8-phenyltheophylline caused a rightward shift of the dose-response curve to intracoronary adenosine; 8-phenyltheophylline was significantly more potent than adenosine deaminase. Adenosine deaminase caused a 33 +/- 7 to 39 +/- 3% decrease in reactive hyperemia blood flow following coronary occlusions of 5-20 seconds duration, respectively, while 8-phenyltheophylline produced a 40 +/- 6 to 62 +/- 8% decrease in reactive hyperemia. Increasing myocardial oxygen consumption during treadmill exercise was associated with progressive increase of coronary blood flow. Neither adenosine deaminase nor 8-phenyltheophylline attenuated the increase in coronary blood flow or the decrease of coronary vascular resistance during exercise. Neither agent altered the relation between myocardial oxygen consumption and coronary blood flow. Thus, although both adenosine deaminase and 8-phenyltheophylline antagonized coronary vasodilation in response to exogenous adenosine and blunted coronary reactive hyperemia, neither agent impaired coronary vasodilation associated with increased myocardial oxygen requirements produced by exercise. These findings fail to support a substantial role for adenosine in mediating coronary vasodilation during exercise.

Adenosine↗

Differences in the effects of alpha-1 adrenergic blockade with prazosin and indoramin on coronary blood flow during exercise.

This study compared the effects of two selective alpha-1 adrenergic blockers, prazosin and indoramin, on the response of coronary blood flow and myocardial oxygen consumption during treadmill exercise in chronically instrumented dogs. Left circumflex coronary artery blood flow was measured with an electromagnetic flowmeter, whereas myocardial arteriovenous oxygen difference was determined with indwelling aortic and coronary sinus catheters. During control conditions, coronary blood flow, arteriovenous oxygen extraction and myocardial oxygen consumption increased regularly with exercise. Both prazosin and indoramin decreased arterial pressure at rest and during exercise, but during heavier levels of exercise blood pressure was lower and heart rates were higher after prazosin. Prazosin did not alter myocardial oxygen consumption, whereas indoramin tended to decrease oxygen consumption; myocardial oxygen consumption was significantly less after indoramin than after prazosin during the heaviest levels of exercise. Prazosin, but not indoramin, significantly decreased coronary vascular resistance both at rest and during exercise, and blunted the decrease in coronary sinus oxygen tension which occurred during exercise. In comparison with prazosin, during heavy exercise coronary blood flow was significantly decreased, myocardial oxygen extraction significantly increased and myocardial oxygen consumption significantly decreased after indoramin.

Adrenergic alpha-Antagonists↗

Two-dimensional echocardiographic identification of complicated aortic root endocarditis: implications for surgery.

Two-dimensional echocardiography successfully displayed the location and extent of aortic root complications, annular abscess or mycotic aneurysm in nine patients with aortic valve endocarditis. Five of the nine patients had prosthetic valve endocarditis and four had native valve endocarditis. The infective process extended into the paravalvular structures, including the interventricular septum (seven patients), right ventricular outflow tract (three patients), interatrial septum (one patient) and anterior mitral valve leaflet (four patients). The amount of aorto-left ventricular discontinuity caused by these complications was quantitated in degrees of annular circumference on the parasternal short axis image and in distance on the parasternal long axis image. The echocardiographic findings were confirmed at surgery and were helpful in the preoperative anticipation of the type of surgical procedure required: aortic valve replacement or composite aortic valve and root replacement. Five patients had prosthetic valve endocarditis with calculated aorto-left ventricular discontinuity of 173 +/- 55 degrees on parasternal short axis images and 1.36 +/- 0.72 cm on parasternal long axis images. Initial surgical repair included three composite aortic root-valve prosthesis implants, one reconstructive procedure with valve replacement and one simple aortic valve replacement. During a follow-up period of 18 months (range 1 to 35), a second reparative procedure was required for only one patient to repair an aortic conduit to coronary artery venous bypass graft. Four patients had native valve endocarditis with calculated aorto-left ventricular discontinuity of 100 +/- 17 degrees on parasternal short axis images and 0.88 +/- 63 cm on parasternal long axis images. Initial surgical repair included two reconstructive procedures with valve replacement and two simple aortic valve replacements. During a follow-up period of 30 months (range 16 to 42), three of these four patients required a second reparative procedure: one each for repair of a paraprosthetic leak, a ventricular septal defect and persistent aorto-left ventricular discontinuity. Two-dimensional echocardiography accurately detected aortic annular abscess and mycotic aneurysm complicating aortic valve endocarditis and the resultant degree of aorto-left ventricular discontinuity. Circumferential aorto-left ventricular discontinuity with these complications is greater for prosthetic than native valve endocarditis and predicts a more extensive surgical repair.(ABSTRACT TRUNCATED AT 400 WORDS)

Abscess↗

Effects of nifedipine on coronary reactive and exercise induced hyperaemia.

The effects of nifedipine on coronary vasodilation were studied during reactive hyperaemia after a transient coronary occlusion and during active hyperaemia associated with graded treadmill exercise. Studies were performed in 10 chronically instrumented dogs in which left circumflex coronary artery flow was measured with an electromagnetic flowmeter and myocardial oxygen extraction was determined from indwelling aortic and coronary sinus catheters. Thirty minutes after administration of nifedipine (10 micrograms.kg-1 iv), when coronary blood flow, arterial pressure, and heart rate had returned to control values, the vasodilatation following a 10 s coronary occlusion was significantly blunted, so that reactive hyperaemia blood flow debt repayment (mean(SEM)) was reduced from 387(39)% during control conditions to 270(33)% after nifedipine (p less than 0.05). In contrast, nifedipine did not alter the coronary vasodilatation that occurred in response to graded treadmill exercise so that the increase in coronary blood flow during exercise was not different from the control response. Thus, although nifedipine blunted ischaemic coronary vasodilatation during reactive hyperaemia, it did not alter coronary vasodilatation during active hyperaemia resulting from physiological increases of myocardial oxygen consumption.

Animals↗

Vasomotor properties of immature canine coronary collateral circulation.

This study examined the ability of the immature coronary collateral circulation to undergo vasodilation in response to nitroglycerin and vasoconstriction in response to alpha-adrenoceptor stimulation. Studies were performed in 12 anesthetized dogs. Collateral flow was estimated from measurements of retrograde flow from the acutely ligated and cannulated anterior descending branch of the left coronary artery. Antegrade flow into the collateral-dependent myocardium was minimized by embolizing the anterior descending artery with 25-microns microspheres. Drugs to be tested were introduced into the left main coronary artery to reach collateral vessels arising from the left circumflex and septal arteries. Intracoronary administration of nitroglycerin (6 micrograms X kg-1 X min-1) resulted in a 33 +/- 7.7% increase in retrograde blood flow (P less than 0.01) and a 23 +/- 3.8% decrease in calculated collateral resistance (P less than 0.01). No significant change occurred in retrograde blood flow or calculated collateral resistance during cardiac sympathetic nerve stimulation after beta-adrenergic blockade with propranolol, selective alpha-adrenergic stimulation with phenylephrine (1 microgram X kg-1 X min-1), or selective alpha 2-stimulation with BHT 933 (2 micrograms X kg-1 X min-1). Thus, the immature coronary collateral circulation was capable of active vasomotion, as demonstrated by vasodilation in response to nitroglycerin, but did not undergo vasoconstriction in response to alpha-adrenoceptor stimulation.

Animals↗

Myocardial blood flow during exercise in dogs with left ventricular hypertrophy produced by aortic banding and perinephritic hypertension.

This study tested the hypothesis that for similar degrees of left ventricular hypertrophy, subendocardial blood flow would be facilitated by the increased diastolic coronary perfusion pressure associated with arterial hypertension, as compared with hypertrophy produced by banding the ascending aorta. Left ventricular hypertrophy was produced with perinephritic hypertension in seven adult dogs and by banding the ascending aorta in nine adult dogs. Left ventricular/body weight ratios were 6.15 +/- 0.59 g/kg in the hypertensive animals and 6.87 +/- 0.47 g/kg in dogs with aortic banding, as compared with 4.23 +/- 0.23 g/kg in seven normal dogs (p less than .01). Studies were performed at rest and during two stages of treadmill exercise to achieve heart rates of 195 and 260 beats/min. Diastolic aortic pressure was increased in animals with hypertension but not in dogs with aortic banding. Systolic ejection period was prolonged in dogs with aortic banding but not in hypertensive dogs. Mean blood flow per gram of myocardium measured with microspheres was similar at rest and during light exercise in all three groups of animals, whereas during heavy exercise blood flow was significantly greater than normal in both groups with hypertrophy. In normal dogs subendocardial/subepicardial (endo/epi) flow ratios did not change significantly during exercise. In both groups with hypertrophy, endo/epi ratios were normal at rest but decreased significantly during exercise. During heavy exercise the endo/epi ratio decreased to 0.73 +/- 0.08 in dogs with aortic banding as compared with 1.07 +/- 0.12 in hypertensive dogs (p less than .01).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗