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Biomedical subjects

A Maseri

Publications and source records attributed to A Maseri.

At least 217 records · Page 12Linked to original sources

Dipyridamole vasodilator response after human orthotopic heart transplantation: quantification by oxygen-15-labeled water and positron emission tomography.

To assess coronary vasodilator reserve after orthotopic heart transplantation, regional myocardial perfusion was measured with oxygen-15-labeled water and dynamic positron emission tomography in 14 cardiac allograft recipients who were not experiencing rejection and who had no angiographic evidence of epicardial coronary sclerosis 15 to 73 months (mean +/- SD 43 +/- 19) after transplantation (group I). Twelve normal men with an average age of 31 years (group II) served as a control group. Regional perfusion was measured at rest and after the intravenous administration of 0.6 mg/kg body weight of dipyridamole. Rest regional myocardial blood flow was homogeneously distributed throughout the left ventricle and was significantly higher in transplant recipients (mean 1.16 +/- 0.26 ml/g per min [range 0.8 to 1.73] than in normal subjects (mean 0.85 +/- 0.13 ml/g per min [range 0.57 to 0.99]; p = 0.001) as was rest heart rate-systolic blood pressure product (rate-pressure product 11,255 +/- 2,540 vs. 7,073 +/- 1,306; p less than 0.001). After dipyridamole, perfusion in the transplant recipients was homogeneous and slightly lower (2.73 +/- 1.03 vs. 3.40 +/- 1.09 ml/g per min; p = NS), whereas rate-pressure product was slightly higher (12,179 +/- 2,266 vs. 10,885 +/- 1,895; p = NS) than the value in normal subjects. Dipyridamole vasodilator response (dipyridamole/rest myocardial blood flow) ranged from 1.23 to 4.92 (mean 2.50 +/- 1.13) in group I and from 2.65 to 5.45 (3.97 +/- 0.89) in group II (p = 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Relation between stimulation site of cardiac afferent nerves by adenosine and distribution of cardiac pain: results of a study in patients with stable angina.

OBJECTIVES: The purpose of this study was to establish whether stimulation of cardiac sensory receptors in different myocardial regions results in different distributions of cardiac pain. BACKGROUND: Previous studies have shown that adenosine provokes cardiac pain through stimulation of sensory receptors in the absence of myocardial ischemia. In this study adenosine was used to obtain a regional stimulation of cardiac sensory receptors. METHODS: Increasing doses of adenosine (0.25, 0.5 and 1 mg/min) were selectively infused into the right and then into the left coronary artery in 26 patients with stable angina. RESULTS: No patient developed ischemic electrocardiographic changes during either adenosine infusion. Eighteen patients experienced cardiac pain during both infusions. Despite the stimulation of sensory receptors in different myocardial regions, 13 patients experienced cardiac pain in the same body area. Adenosine-induced pain was always similar to the anginal pain. By contrast, the remaining five patients experienced adenosine-induced cardiac pain in different body areas. In two of these patients, the distribution of anginal pain was similar to that experienced during one of the two adenosine infusions. In the remaining three patients, the distribution of anginal pain was similar to that experienced during adenosine infusion into the right coronary artery during some anginal episodes and to that experienced during adenosine infusion into the left coronary artery during other episodes. CONCLUSIONS: During stimulation by adenosine of sensory receptors in different myocardial regions, the majority of patients experience cardiac pain in the same body area; only a few experience pain in different areas. These differences might be caused by different organizations of the ascending neural pathways to the cortex. Our results suggest that in the same patient different distributions of pain during anginal attacks are probably due to ischemia in different myocardial regions.

Adenosine↗

WEB 2086 inhibits neutrophil dependent increases in coronary resistance in blood perfused rabbit heart.

OBJECTIVE: The aim was to investigate the mechanism of the pressor action of the chemotactic peptide formyl-methionyl-leucyl-phenylalanine in the blood perfused Langendorff preparation of the isolated rabbit heart; and in particular to establish whether the response was dependent on the presence of neutrophils and whether the release of platelet activating factor contributed to the pressor effect. METHODS: An isolated rabbit heart was perfused with blood from an anesthetised support rabbit. Formyl-methionyl-leucyl-phenylalanine was injected intra-arterially proximal to the isolated heart and measures of cardiac performance recorded. In some experiments the support animal was depleted of neutrophils by pretreatment with mechlorethamine while in others the specific platelet activating factor receptor antagonist WEB 2086 was given to the support animal before formyl-methionyl-leucyl-phenylalanine. Differential blood cell counts were determined throughout the course of each experiment. Each heart was examined histologically after the experiment. RESULTS: Formyl-methionyl-leucyl-phenylalanine caused a significant rise in perfusion pressure which was virtually abolished by leucocyte depletion of the support animal. The response could also be reduced by about 80% with intravenous WEB 2086. Histological examination of the perfused hearts showed that the number of accumulated neutrophils was very variable and not correlated with the rise in perfusion pressure. There was no significant difference between control hearts and those receiving WEB 2086. CONCLUSIONS: The results confirm previous reports that the response to formyl-methionyl-leucyl-phenylalanine is neutrophil dependent and show that this model of a blood perfused heart can be used successfully to examine the response to a leucocyte dependent stimulus. The results also suggest that the response to formyl-methionyl-leucyl-phenylalanine may not only be due to physical obstruction of the coronary circulation or "neutrophil plugging", but may also be due to the release of platelet activating factor.

Animals↗

Variant angina pectoris. Role of coronary spasm in the development of fixed coronary obstructions.

BACKGROUND: It has been suggested that recurring coronary artery spasm may lead to the development of fixed atherosclerotic coronary obstructions. METHODS AND RESULTS: We studied 10 patients with typical Prinzmetal's variant angina in whom the disease remained active for years and in whom occlusive coronary spasm occurred reproducibly at the same arterial site during repeat coronary arteriography (25 +/- 12 months after initial angiography). At initial evaluation, four patients had significant (greater than or equal to 50% fixed coronary diameter reduction) one-vessel coronary artery disease, and six had nonsignificant disease. Spasm developed at stenotic sites (20-65% diameter reduction) in nine patients and at an angiographically normal site in one patient. Progression of coronary disease was assessed in 62 segments: 10 spastic (of which nine were stenotic) and 52 nonspastic (eight stenotic and 44 angiographically normal), using computerized arteriography. Mean diameters (millimeters) of spastic segments, nonspastic stenoses, and angiographically normal nonspastic segments were not significantly different at first and second arteriograms (1.52 +/- 0.14 versus 1.43 +/- 0.21, 1.32 +/- 0.17 versus 1.12 +/- 0.23, and 2.40 +/- 0.12 versus 2.42 +/- 0.12, respectively). Stenosis progression (from 65% diameter reduction to total occlusion) occurred in one patient at a spastic site and in two at nonspastic sites (from 34% to 65% and from 84% to 100%). Complicated stenoses suggestive of plaque fissuring were not observed during the study. CONCLUSIONS: In patients with chronic Prinzmetal's variant angina without myocardial infarction, stenosis progression was not frequently observed at spastic sites despite the recurrence of focal coronary spasm over relatively long periods of time.

Adult↗

Effect of ketanserin on proximal and distal coronary constrictor responses to intracoronary infusion of serotonin in patients with stable angina, patients with variant angina, and control patients.

BACKGROUND: Serotonin, released by aggregating platelets, may contribute to or cause myocardial ischemia by constricting epicardial vessels. Experimental studies suggest that this constriction is mediated by two distinct serotonin receptor subtypes: 5-hydroxytryptamine1-like (S1-like) and 5-hydroxytryptamine2 (S2). METHODS AND RESULTS: To determine the relative contribution of S1-like and S2 receptors to the vasoconstrictor effects of serotonin, we studied the effect of ketanserin (0.75 mg, intracoronary), a selective S2 receptor antagonist, on the constrictor response of human coronary vessels to intracoronary infusions of serotonin. In control patients (n = 7), serotonin (10(-4) mol/l) caused significant (p less than 0.05) constriction only in distal segments, which was significantly (p less than 0.05) inhibited by ketanserin. In stable angina patients (n = 8), serotonin (10(-4) mol/l) caused significant constriction in proximal (p less than 0.01) and distal (p less than 0.01) segments, which was significantly inhibited by ketanserin in proximal (p less than 0.05) but not distal (p = 0.30) segments. In patients with variant angina (n = 3), epicardial occlusion at the site of preexisting stenoses in proximal locations occurred at infused concentrations of 10(-6) (one patient) or 10(-5) (two patients) mol/l. The infusion of the same concentration of serotonin after ketanserin again caused epicardial occlusion. CONCLUSIONS: Our results suggest that functionally important S1-like receptors that mediate vasoconstriction exist in the epicardial vessels of patients with stable or variant angina. Their activation, either at hyperreactive sites in patients with variant angina or in the distal epicardial vessels of patients with chronic stable angina, may contribute to or cause myocardial ischemia when serotonin is released after the intracoronary activation of platelets.

Adult↗

Preoperative prediction of the outcome of coronary revascularization using positron emission tomography.

BACKGROUND: Previous assessments of myocardial viability using positron emission tomography (PET) relied on demonstration of glucose metabolism in hypoperfused asynergic segments using the glucose analogue [18F]2-fluoro-2-deoxyglucose (FDG). Recently, it was shown that myocardial viability could be assessed by calculating the water-perfusable tissue index (PTI) for the asynergic region. PTI represents the proportion of the myocardium that is capable of rapid transsarcolemmal exchange of water and thus perfusable by water. The aim of the present study was to assess myocardial viability by PET using PTI in patients undergoing coronary revascularization. METHODS AND RESULTS: Twelve patients with chronic coronary artery disease and previous myocardial infarction were studied. Analysis of transmission (tissue density) and 15O-labeled carbon monoxide (blood pool), and 15O-labeled water (myocardial blood flow [MBF]) emission PET data enabled the simultaneous quantification of MBF (ml.min-1.g perfusable tissue-1) and PTI (gram of perfusable tissue per gram of total anatomic tissue). In addition, PET imaging with FDG after 75-g oral glucose load was performed in eight patients. Preoperative echocardiography identified 33 hypocontractile and 26 control segments. Follow-up echocardiography performed 3 to 5 months later demonstrated 26 of 33 segments with improved wall motion (recovery) and seven of 33 segments without improvement (nonrecovery). MBF in the control segments (0.97 +/- 0.22 ml.min-1.g perfusable tissue-1) was significantly higher (p < 0.001) than in both the recovery (0.73 +/- 0.18 ml.min-1.g perfusable tissue-1) and the nonrecovery (0.45 +/- 0.11 ml.min-1.g perfusable tissue-1) segments. PTI in the recovery regions (0.99 +/- 0.15) was > or = 0.7 in all cases and slightly less than in control regions (1.10 +/- 0.15, p < 0.02). FDG uptake in these regions was 92 +/- 17% (n = 13) of the uptake in control segments with normal wall motion. In the nonrecovery group, PTI was 0.62 +/- 0.06 (p < 0.02 versus control and recovery) and always < 0.7. In the one patient in whom a comparison with metabolic imaging was made, FDG uptake was 46% of the uptake in a reference region with normal wall motion. CONCLUSIONS: These data showed that contractile recovery occurred only in segments where PTI was > or = 0.7, suggesting that > or = 70% of myocardial tissue in a given asynergic segment should be perfusable by water to enable contractile recovery. There was good agreement between the PTI and FDG methods for predicting improvements in regional wall motion after revascularization. Although further studies should be performed in a larger patient group, the preliminary results are promising and suggest that PTI may be a good predictor of contractile recovery after coronary revascularization.

Angioplasty, Balloon, Coronary↗

Cultured rat aortic vascular smooth muscle cells digest naturally produced extracellular matrix. Involvement of plasminogen-dependent and plasminogen-independent pathways.

Vascular smooth muscle (VSM) cell migration and proliferation play a major role in the development of atherosclerotic lesions, graft occlusion, and restenosis after angioplasty. Cell migration implies the digestion of the surrounding extracellular matrix. Cell-associated proteolysis has been extensively studied in neoplastic and inflammatory cells, but very little is known about the proteolytic properties of VSM. We have evaluated the ability of rat cultured VSM cells to solubilize [3H]amino acid-labeled extracellular matrices produced by bovine VSM. When plated at a density of 30,000 cells per well in 24 multiwell plates, VSM cells were able to solubilize 63.3 +/- 7.0% of the extracellular matrix after 10 days in culture. Extracellular matrix digestion occurred also when the cells were cultured in plasminogen-depleted serum but was higher in the presence of 10 micrograms/ml purified plasminogen (net percent digestion after the subtraction of the appropriate control, 8.6 +/- 3.0% versus 21.2 +/- 3.5% after 3 days in culture, p less than 0.005, respectively). The involvement of other enzymes in addition to plasmin is confirmed by the ability of VSM cells to degrade extracellular matrices from which the plasmin-sensitive component was removed with plasmin pretreatment. Rat VSM cells were able to solubilize 52.3 +/- 2.0% of this residual extracellular matrix-associated radioactivity after 6 days in culture versus 26.1 +/- 1.5% in the control dishes (p less than 0.01, n = 5). Cell contact was required for extracellular matrix degradation: cell-conditioned medium did not have any effect on extracellular matrix digestion.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Abnormal coronary vasomotion in ischemic heart disease.

Myocardial ischemia has long been thought to be caused by only critical arteriosclerotic plaques, which are the most obvious single denominators of ischemic cardiac syndromes. The author argues that just because other transient and dynamic mechanisms are more elusive than atherosclerotic plaques, we should not presume them to be unimportant. He reviews the work of his group and others, which suggests that dilation and constriction can occur at the site of coronary artery stenoses and in distal coronary vessels. Clinical and angiographic findings and the possible pathophysiological causes of vasomotor dysfunction that may modulate residual coronary flow in patients with chronic stable, unstable, and variant angina, and syndrome X are reviewed. Only when these mechanisms are more fully understood will it be possible to develop specific therapy.

Angina Pectoris, Variant↗

Effect of propranolol (long-acting) on the circadian fluctuation of tissue-plasminogen activator and plasminogen activator inhibitor-1.

The incidence of myocardial infarction and sudden cardiac death is highest in the morning. Inhibition of fibrinolytic activity in blood also peaks in the morning and this inhibition may favor the development of arterial thrombosis. It has been reported that patients treated with beta blockers do not show the typical circadian pattern of onset of myocardial infarction and sudden cardiac death. This study was undertaken to investigate whether beta blockade alters the circadian rhythm of 2 major fibrinolytic factors, tissue-plasminogen activator (t-PA) and plasminogen activator inhibitor-1 (PAI-1). Repeated blood samples were taken over a 24-hour period in 13 healthy volunteers: 7 taking 160 mg/day of long-acting propranolol orally for 14 days, and the other 6 taking no medications. Blood samples were analyzed for the plasma levels of t-PA activity, t-PA antigen, PAI activity and PAI-1 antigen. A significant circadian variation of all 4 parameters was present in both groups. No significant differences in peak and nadir values, 24-hour mean, amplitude of fluctuation, and time of peak and nadir were found between the treated and untreated subjects. The data therefore suggest that propranolol treatment does not affect the plasma concentrations at rest or the endogenous circadian rhythm of t-PA and PAI-1 in healthy volunteers. The reported alteration in the circadian pattern of onset of myocardial infarction and sudden cardiac death by beta blockers does not appear to be mediated by effects on the fibrinolytic system.

Adult↗

Absence of myocardial dysfunction during stress in patients with syndrome X.

Stress two-dimensional echocardiographic studies were performed in 18 patients with angina, a positive exercise test and normal findings on coronary angiography (syndrome X). Rest and immediate posttreadmill exercise two-dimensional echocardiograms were performed with a digitized cine loop and side by side visual analysis in all patients. In 16 of these patients, right atrial pacing up to 160 beats/min was also performed and percent systolic wall thickening was calculated at five equally spaced segments around the left ventricle, each corresponding to an anterior, lateral and inferior wall and the posterior and the anterior ventricular septum. Measurements of percent systolic wall thickening were established in 10 age- and gender-matched normal persons for comparison. ST segment depression occurred in all patients during exercise and persisted for 42.1 s (range 18 to 75) into the recovery period. Immediate postexercise echocardiography was started within 20.1 +/- 5.4 s and completed in 54.1 +/- 11.3 s. No patient had regional wall motion abnormalities seen on two-dimensional imaging of any myocardial segment. Thirteen patients (72%) reported reproduction of their usual chest pain, which led to termination of the test. During rapid right atrial pacing, nine patients (56%) developed ST segment depression that was associated with angina in seven. In all 16 patients, percent systolic wall thickening increased over values at rest in each myocardial segment. Percent systolic wall thickening averaged 47.1 +/- 6.1% at rest and increased to 74 +/- 8% during right atrial pacing (p less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The elusive cause of instability in unstable angina.

The causes of unstable angina are still largely unknown. However, some facts deriving from angiographic, postmortem, and pathophysiologic studies are well established. Angiographic findings: coronary thrombi and complicated stenoses are more frequent in unstable than in stable angina. Conversely, the severity of coronary atherosclerosis and the development of collateral circulation is similar in both coronary syndromes. Postmortem findings: the following features are more frequent in unstable than in stable angina: (1) mural thrombi, which often represent out-growth from the inside of a fissured plaque; (2) inflammatory cells at the site of plaques and in perivascular nerves; and (3) contraction bands in smooth muscle cells of the media surrounding plaques. However, fissured plaques can be found in 10% of individuals dying of noncardiac causes, and fissured plaque may occasionally be missing under the coronary thrombus in unstable angina. Pathophysiologic findings: patients with unstable angina compared with those with stable angina exhibit: (1) higher levels of serotonin in the coronary sinus; (2) higher systemic levels of fibrino-peptide A; (3) higher urinary levels of thromboxane A2 metabolites; and (4) a greater coronary reactivity to constrictor stimuli. A critical analysis of these established facts is required to set the stage for a better comprehension of the causes which can cause a coronary segment to progress in a stuttering way toward acute persistent coronary occlusion and myocardial infarction. Plaque fissure is likely to be an important background thrombogenic stimulus in many cases.(ABSTRACT TRUNCATED AT 250 WORDS)

Angina, Unstable↗

Reactivity of proximal and distal angiographically normal and stenotic coronary segments in chronic stable angina pectoris.

To assess whether vasoreactivity of significant coronary stenosis (greater than 50% intraluminal diameter reduction) and that of angiographically normal coronary segments differs in proximal and distal locations, 53 patients (40 men, 13 women, mean +/- standard deviation age 55 +/- 11 years) with chronic stable angina and angiographically documented coronary artery disease were studied. While abstaining from antianginal therapy, all 53 patients underwent coronary arteriography before and after 1 mg of intracoronary isosorbide dinitrate and 21 of the 53 also before and after 20 to 30 micrograms intracoronary ergonovine. Computerized quantitative angiography was used to assess changes in the intraluminal diameter of 126 normal coronary segments (63 proximal, 63 distal) and 43 significant coronary stenoses. Nitrates dilated proximal normal coronary segments by 7.4 +/- 1.2% and distal normal coronary segments by 15 +/- 1.7% (p less than 0.01). Significant proximal coronary stenoses dilated by 11 +/- 2.5% and distal stenoses by 23 +/- 2.8% (p less than 0.01) after nitrates. Ergonovine reduced the diameter of proximal normal coronary segments by 9.3 +/- 1.7% and that of normal distal segments by 15.5 +/- 1.4% (p less than 0.01). Proximal stenoses constricted by 11 +/- 2.2% and distal stenoses by 18.4 +/- 2.8% (p = 0.06). Analysis of segments showed that nitrates dilated 19 of 63 (30%) proximal normal segments by (greater than or equal to 10%), 31 of 63 (49%) distal (p less than 0.05) and 21 of 43 (49%) stenoses.(ABSTRACT TRUNCATED AT 250 WORDS)

Angina Pectoris↗

Effect of intracoronary serotonin on coronary vessels in patients with stable angina and patients with variant angina.

BACKGROUND: Serotonin, a major product of platelet activation, has potent vasoactive effects in animal models, but its role in human coronary artery disease remains largely speculative. METHODS: Using quantitative coronary angiography, we compared the effects of the intracoronary infusion of graded concentrations of serotonin (10(-7) to 10(-4) mol per liter) on coronary vessels in two groups of patients with different clinical presentations of coronary disease (nine with stable angina and five with variant angina), with the effects in a control group of eight subjects with normal vessels on angiography. RESULTS: Normal coronary vessels had a biphasic response to intracoronary serotonin: dilation at concentrations up to 10(-5) mol per liter, but constriction at 10(-4) mol per liter. Vessels in patients with stable angina constricted at all concentrations, with mean (+/- SEM) maximal decreases in diameter of 23.9 +/- 3.6, 33.1 +/- 3.9, and 41.7 +/- 3.1 percent from base line in proximal, middle, and distal segments at a serotonin concentration of 10(-4) mol per liter. Smooth segments constricted more than irregular segments (42.0 +/- 4.6 vs. 21.1 +/- 1.6 percent). Four patients with stable angina had a marked reduction in collateral filling. All the patients with stable angina had angina during the intracoronary infusion of serotonin, and electrocardiographic changes were noted in six. All the patients with variant angina had angina, electrocardiographic changes, and localized occlusive epicardial coronary-artery spasm at concentrations of 10(-6) (n = 2) or 10(-5) (n = 3) mol per liter. CONCLUSIONS: Patients with stable coronary disease do not have the normal vasodilator response to intracoronary serotonin, but rather have progressive constriction, which is particularly intense in small distal and collateral vessels. Patients with variant angina have occlusive coronary-artery spasm at a dose that dilates normal vessels and causes only slight constriction in vessels from patients with stable angina. These findings suggest that serotonin, released after the intracoronary activation of platelets, may contribute to or cause myocardial ischemia in patients with coronary artery disease.

Adult↗

Reactivity of eccentric and concentric coronary stenoses in patients with chronic stable angina.

Dynamic coronary stenoses may be the cause of a variable angina threshold and rest angina in patients with chronic stable angina. It has been suggested that eccentric but not concentric coronary artery stenoses have the potential for dynamic changes of caliber in response to vasoactive stimuli. The vasomotor response of eccentric (asymmetric narrowing) and concentric (symmetric narrowing) coronary stenoses to ergonovine (20 micrograms intracoronary or 300 micrograms intravenous) and isosorbide dinitrate (1 mg intracoronary) was studied in 51 patients with chronic stable angina. Diameter of reference segments (angiographically normal segments proximal to the stenoses) and that of eccentric (n = 30) and concentric (n = 35) coronary stenoses that ranged from 50% to 90% luminal diameter reduction were measured by computerized quantitative angiography before and after ergonovine and isosorbide dinitrate. Ergonovine reduced stenosis diameter (by greater than or equal to 10%) in 80% of eccentric stenoses and 42% of concentric stenoses (p less than 0.05). Mean (+/- SEM) diameter reduction with ergonovine was 19 +/- 3% and 9.5 +/- 2% for eccentric and concentric stenoses, respectively (p less than 0.05). Isosorbide dinitrate increased coronary diameter (by greater than or equal to 10%) in 70% of eccentric and 43% of concentric stenoses (p less than 0.05). Mean diameter of eccentric stenoses increased from 1.15 +/- 0.05 to 1.35 +/- 0.06 mm after nitrate (18.6 +/- 2.5%), whereas diameter of concentric stenoses increased from 1.05 +/- 0.05 to 1.14 +/- 0.05 mm (10 +/- 2.5%) (p less than 0.05). Average dilation of reference segments with administration of isosorbide dinitrate and constriction with ergonovine were not significantly different in patients with concentric and eccentric stenoses.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Effects of oxyfedrine on regional myocardial blood flow in patients with coronary artery disease.

Medical treatment of angina pectoris is largely based on the use of beta-blocking agents, calcium antagonists, and nitrates. Oxyfedrine, an amino ketone derivative and partial agonist at beta receptors, has been shown to have potent antianginal properties and to increase coronary blood flow in normal and ischemic myocardial regions in experimental studies. We assessed the effects of intravenous oxyfedrine on regional myocardial blood flow, using positron emission tomography (15-oxygen water), in six patients with chronic stable angina, positive exercise tests, and documented coronary artery disease. Myocardial blood flow was measured in all patients before (baseline) and 10 minutes after the intravenous administration of a single bolus (0.11-0.13 mg/kg) of oxyfedrine. Compared to baseline, heart rate and systolic blood pressure remained almost unchanged after the administration of oxyfedrine. Mean baseline myocardial blood flow was 0.90 +/- 0.15 ml/g/min in areas supplied by arteries with significant coronary stenosis and 1.08 +/- 0.19 ml/g/min in areas supplied by nonstenotic coronary vessels (p less than 0.05). After the administration of oxyfedrine, myocardial blood flow increased significantly in both the regions supplied by stenotic vessels (by 25%; from 0.90 +/- 0.15 to 1.20 +/- 0.31 ml/g/min; p = 0.002) and in areas supplied by angiographically normal coronary vessels (by 22%; from 1.08 +/- 0.19 to 1.38 +/- 0.49 ml/g/min; p less than 0.05). The results of this study indicate that in patients with coronary artery disease, intravenous oxyfedrine significantly increases regional myocardial blood flow, both in areas supplied by critically obstructed vessels and in areas supplied by normal or less severely narrowed coronary arteries.

Aged↗