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Biomedical subjects

P Ganz

Publications and source records attributed to P Ganz.

At least 127 records · Page 7Linked to original sources

Persistent dysfunction of regenerated endothelium after balloon angioplasty of rabbit iliac artery.

This study investigated the vasodilator function of endothelium that regenerated after balloon angioplasty and the relation of this function to the extent of vascular injury and to subsequent intimal proliferation. Balloon angioplasty was performed in the left iliac artery of 47 New Zealand White rabbits. Vascular responses were examined in vitro 2 and 4 weeks after a "severe" injury (3.0-mm balloon) or a "moderate" injury (2.5-mm balloon). Both degrees of balloon injury caused complete endothelial denudation. Endothelial regrowth 2 weeks after either injury was confirmed histologically. Although the regenerated cells had irregular sizes and polygonal shapes and lacked the typical alignment in the direction of blood flow, immunocytochemical staining for factor VIII-related antigen identified these cells as endothelium. To study the vasodilator function of regenerated endothelium, rings of balloon-injured and control (contralateral) iliac arteries were suspended in organ chambers for recording of isometric force. Endothelium-dependent relaxation of balloon-injured vessels to acetylcholine and to the calcium ionophore A23187 were reduced at 2 and at 4 weeks after severe injury. After moderate injury, endothelium-dependent relaxations to these agents were reduced at 2 weeks but had normalized by 4 weeks. Endothelium-independent relaxation to sodium nitroprusside, however, was preserved in all study groups. Morphometric analysis revealed an inverse correlation between the degree of intimal thickening and maximal relaxation to acetylcholine (r = 0.45, p less than 0.01). Thus, there is a persistent attenuation of receptor- and nonreceptor-mediated endothelium-dependent relaxations after arterial injury. The regenerated cells have an altered morphological appearance, but staining for factor VIII-related antigen confirms their endothelial origin. The degree and duration of endothelial dysfunction depends on the severity of the initial injury and is related to the extent of intimal thickness.

Acetylcholine↗

Early evidence of endothelial vasodilator dysfunction at coronary branch points.

Intracoronary acetylcholine produces endothelium-dependent dilation of normal coronary arteries and paradoxical constriction of atherosclerotic vessels. Regional differences in endothelium-dependent vasomotion, however, have not been studied in relation to the nonuniform development of atherosclerosis. We compared the vasomotor response to increasing doses of acetylcholine of angiographically smooth coronary artery segments prone to atherosclerosis (coronary branch points) with segments remote from branch points (straight segments). In patients with entirely smooth coronary arteries and a dilator response to acetylcholine (group 1, n = 7), branch points and straight segments demonstrated equal and significant dose-dependent dilation to acetylcholine (14.7 +/- 8.9% and 12.3 +/- 12.7%, respectively; p identical to NS). In patients with early atherosclerosis as manifest by luminal coronary irregularities, the lowest dose of acetylcholine (10(-8) M) produced constriction at branch points and slight dilation at straight segments (-6.3 +/- 7.4% vs. +2.2 +/- 7.3%, p less than 0.05). At higher doses of acetylcholine, both branch point and straight segments constricted, but constriction remained more pronounced at branch points. Both branch point and straight segments, however, retained the ability to dilate to the non-endothelium-dependent agent, nitroglycerin. In a third group of patients with angiographically entirely smooth coronary arteries but without dilation to acetylcholine, constriction to acetylcholine again occurred first at branch points. Thus, coronary branch points demonstrate increased sensitivity to acetylcholine-induced constriction in patients with angiographic evidence of early coronary atherosclerosis and in middle-aged patients with smooth coronary arteries. These segments, however, retain the ability to dilate to nitroglycerin. Whether this early evidence of defective endothelium-dependent vasodilation predicts the later development of occlusive atherosclerosis is not yet known.

Acetylcholine↗

Coronary atherosclerosis is associated with left ventricular dysfunction and dilatation in aortic stenosis.

Patients with aortic stenosis develop widely variable patterns of left ventricular hypertrophy and dysfunction. We postulated that coronary atherosclerosis (CAD) may be associated with impaired left ventricular function and chamber dilatation in patients with aortic stenosis. Left ventricular mass and volumes were quantified from two-dimensional echocardiography and correlated with coronary angiography in 78 patients with severe aortic stenosis and no previous myocardial infarction or regional wall motion abnormalities. Eighteen patients (group 1) had smooth coronary arteries, 25 patients had irregular coronary arteries with 50% or less stenosis (group 2), and 35 patients had obstructive CAD (group 3). Even though the calculated valve area was similar in all three study groups, group 1 patients had higher values for ejection fraction (65 +/- 9%, 51 +/- 17%, and 48 +/- 13%; p = 0.0002), systolic mass-to-volume ratio (9.2 +/- 3.9, 5.6 +/- 2.8, and 5.2 +/- 2.2; p = 0.0001), and cardiac index (2.9 +/- 0.7, 2.5 +/- 0.7, and 2.3 +/- 0.6 l/min.min2; p = 0.015) than patients in groups 2 and 3, respectively (mean +/- SD). Mean circumferential wall stress was inversely related to severity of CAD. Multivariate analysis showed that CAD is an independent predictor of ejection fraction and mass-to-volume ratio in this group of patients. Thus, in an elderly population with severe aortic stenosis, patients with both obstructive and nonobstructive CAD have an increased incidence of left ventricular enlargement and systolic dysfunction.

Aged↗

Control of shear stress in the epicardial coronary arteries of humans: impairment by atherosclerosis.

Altered arterial wall shear stress may adversely affect vascular endothelium and contribute to atherogenesis. This study examined the hypothesis that, in humans, dilation of normal coronary arteries with increased flow limits increases in shear stress and that loss of flow-mediated dilation in atherosclerosis results in failure to control shear stress. Coronary blood flow was increased by infusing adenosine (0.022 to 2.2 mg/min) through a 2.5F Doppler flow catheter positioned in the middle segment of the left anterior descending coronary artery in 8 patients with mild atherosclerosis but no flow-limiting stenosis and in 10 patients with entirely smooth coronary arteries. Quantitative angiography and coronary flow velocity were used to estimate shear stress in a proximal segment of the left anterior descending artery exposed to increased flow, but not to adenosine. The peak increase in blood flow was the same in smooth (371 +/- 65%) and irregular (377 +/- 50%) arteries. However, at peak flow, dilation was greater in smooth segments (16.3 +/- 2.7%) than in irregular segments (2.0 +/- 1.5%) (p less than 0.001). In each patient, smooth segments dilated with increasing shear stress (slope 7.4 +/- 0.9%), whereas irregular segments dilated less (slope 0.9 +/- 0.6%) and showed greater increases in shear stress (p less than 0.01). The peak increase in shear stress was less in smooth (189 +/- 23%) than in irregular (365 +/- 52%) segments (p less than 0.01). These results suggest a control mechanism in normal coronary arteries whereby increases in shear stress stimulate vasodilation and thus limit further increases in this force at the endothelial surface.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗

Peak left ventricular pressure during percutaneous aortic balloon valvuloplasty: clinical and echocardiographic correlations.

Peak left ventricular pressure during balloon inflation was measured in 20 patients who underwent balloon valvuloplasty for severe aortic stenosis to define the determinants of ventricular pressure development in response to increased loading conditions. The peak left ventricular pressure ranged from 150 +/- 5 to 386 +/- 22 mm Hg (mean +/- SD), was reproducible in each patient with each balloon inflation (mean coefficient of variation 7.8%) and correlated with concurrent echocardiographic measurements of ejection fraction (r = 0.89, p = 0.0001) and mass/volume ratio in systole (r = 0.91, p = 0.0001) or diastole (r = 0.88, p = 0.0001). Thirteen patients with class II or more severe congestive heart failure had lower values for peak left ventricular pressure than did those without failure (225 +/- 46 versus 305 +/- 45 mm Hg, p = 0.002), whereas no difference in rest left ventricular systolic pressure was seen between the two groups. The measurement of peak left ventricular pressure was inversely related to rest mean circumferential end-systolic wall stress (r = 0.52, p = 0.046). Thus, peak left ventricular systolic pressure measured during aortic valvuloplasty in humans correlates closely with traditional measures of left ventricular function. This measurement, which previously has been obtained only in experimental animal studies, is a simple and reproducible hemodynamic index that may provide new insights in studies of ventricular function and congestive heart failure in aortic stenosis.

Adult↗

Clot-selective coronary thrombolysis with pro-urokinase.

Recognition that myocardial infarction is caused by coronary thrombosis has stimulated a search for a safe, rapidly acting, and effective thrombolytic regimen. Tissue plasminogen activator (t-PA) can provide relatively clot-selective thrombolysis, but one quarter of patients fail to achieve reperfusion, lysis speed is not optimal, and higher doses have been associated with an increased incidence of hemorrhagic stroke. We report the results of a multicenter study of pro-urokinase, a second naturally occurring plasminogen activator that has structural similarities to t-PA but has a different mechanism of action. Pro-urokinase was administered 3.9 +/- 1.1 hours after the onset of chest pain to 40 patients with acute myocardial infarction with angiographically confirmed complete coronary occlusion (TIMI grade 0). After a 90-minute intravenous infusion of pro-urokinase (4.7-9 million units, 36-69 mg) 51% (20 of 39) of the patients demonstrated reperfusion (TIMI grade 2 or 3) occurring 64.8 +/- 22.3 minutes after initiation of therapy. Fibrinogen levels fell only 10 +/- 17% from baseline, confirming the fibrin specificity of pro-urokinase. As with t-PA, however, this specificity was only relative. alpha 2-Antiplasmin decreased to 39% and plasminogen decreased to 64% of initial values. Fibrinogen degradation products increased 63% and the fibrin-specific D-dimer increased 8.7-fold. Thus, pro-urokinase produces relatively clot-selective coronary thrombolysis similar to that produced by t-PA, but the use of either pro-urokinase or t-PA alone in higher doses would be likely to produce more nonspecific effects.

Coronary Disease↗

Atherosclerosis impairs flow-mediated dilation of coronary arteries in humans.

Studies in animals have suggested that increases in blood flow result in dilation of large arteries by an endothelium-dependent mechanism. Atherosclerosis can impair endothelium-dependent vasodilation to vasoactive agents. The purpose of this study was to determine whether or not large coronary arteries in humans exhibit dilation with increases in blood flow and to test the hypothesis that this response is impaired in the presence of atherosclerosis. Graded concentrations of adenosine were infused into the distal left anterior descending (LAD) coronary artery to test the dilator response of the proximal LAD to increases in blood flow. The proximal LAD was thereby exposed to changes in blood flow, but not directly to adenosine. Ten patients with angiographically smooth proximal LAD segments (group 1) and seven patients with irregularities in the proximal LAD consistent with mild atherosclerosis (group 2) were studied. Infusions of adenosine throughout the range of 0.022 to 2.2 mg/min into the LAD produced a dose-dependent increase in estimated coronary blood flow and a mean increase of 305 +/- 27% at 2.2 mg/min adenosine. At 2.2 mg/min adenosine, a striking difference (p less than 0.001) occurred between the significant flow-mediated dilation of the proximal LAD observed in group 1 (+13.2 +/- 1.3% from 2.63 +/- 0.16 mm, p less than 0.001), and the lack of dilation in group 2 (+1.8 +/- 1.5% from 3.20 +/- 0.17 mm, p = NS), despite a greater increase in coronary blood flow in group 2 (+387 +/- 29%) than in group 1 (+230 +/- 36%).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗

Atherosclerosis influences the vasomotor response of epicardial coronary arteries to exercise.

We studied the vasomotion of epicardial coronary arteries during exercise and tested the hypotheses that abnormal vasoconstriction is related to the presence of atherosclerosis and may be related to endothelial dilator dysfunction. During cardiac catheterization quantitative coronary angiography was performed in 21 patients during supine bicycle exercise. 21 of 28 smooth, angiographically normal vessel segments dilated (14.0 +/- 1.8%) during exercise; four smooth segments did not change whereas only three constricted. In contrast, 15 of 16 vessel segments with irregularities constricted in response to exercise (17.0 +/- 0.1%) with only one segment dilating. All 10 stenotic segments constricted to exercise (23 +/- 4%). Six patients also received intracoronary acetylcholine before exercise to test endothelium-dependent dilator function. In five of six patients all nine vessel segments showed the same directional response to acetylcholine and exercise. Three irregular and two stenotic segments constricted with acetylcholine (51 +/- 21%) and exercise (9.0 +/- 0.6%). In contrast, four smooth segments dilated to acetylcholine (19 +/- 6%) and exercise (9 +/- 1%). Both exercise and acetylcholine generally dilated smooth but constricted irregular and stenosed coronary segments. It appears likely that atherosclerosis plays an important role in the abnormal vasomotion of diseased coronary arteries during exercise and the pattern of abnormality suggests impairment of vasodilator function.

Acetylcholine↗

Reflex increase in blood pressure during the intracoronary administration of adenosine in man.

Infusion of adenosine (0.022-2.2 mg/min) into the left anterior descending (LAD) coronary artery of 26 patients produced a dose-dependent increase in blood pressure without a change in heart rate. At adenosine 2.2 mg/min, systolic pressure rose by 21.0 +/- 2.2 mmHg from 134 +/- 4.3 mmHg (P less than 0.001) and diastolic pressure increased by 10.4 +/- 1.1 mmHg from 76 +/- 1.9 mmHg (P less than 0.001). The rise in arterial pressure was associated with a 22 +/- 3.4% increase in systemic vascular resistance (P less than 0.01) and no change in cardiac output (-2.8 +/- 4.3%, P = NS). Plasma norepinephrine levels rose by 40 +/- 14% from 105 +/- 9 pg/ml (P less than 0.05) and epinephrine levels by 119 +/- 31% from 37 +/- 9 pg/ml (P less than 0.01). Right atrial infusion of adenosine produced insignificant hemodynamic effects, suggesting that systemic spillover of adenosine was not responsible for the observed effects. In 20 cardiac transplant patients with denervated hearts, LAD infusion of adenosine (2.2 mg/min) produced no change in systolic pressure (-0.1 +/- 1.6 mmHg from 139 +/- 3.4 mmHg, P = NS) and a decrement in diastolic pressure (-4.7 +/- 1.2 mmHg from 98 +/- 2.5 mmHg, P less than 0.01). Thus, infusion of adenosine into the LAD coronary artery causes a reflex increase in arterial pressure due to a rise in systemic vascular resistance, probably as a result of increased sympathetic discharge. This reflex pathway may be of importance in disease states such as myocardial ischemia, in which myocardial adenosine levels are elevated.

Adenosine↗

Detection of pacing-induced myocardial ischemia by endocardial electrograms recorded during cardiac catheterization.

Rapid atrial pacing confirms myocardial ischemia in patients with coronary artery disease when angina is provoked, and is accompanied by an increase in left ventricular end-diastolic pressure. In such cases, abnormalities in the surface electrocardiogram (ECG) are often not apparent. To enhance detection of subendocardial ischemia during rapid atrial pacing, local unipolar electrograms were recorded from the tip of a 0.025 in. (0.064 cm) diameter guidewire positioned against the endocardial surface of potentially ischemic regions. Endocardial electrograms, left ventricular end-diastolic pressure and multiple surface ECG leads were recorded during rapid atrial pacing in 21 patients with coronary artery disease. Before pacing, endocardial electrograms in all 21 patients were free of ST elevation. Marked ST elevation was apparent in 17 of the 21 patients after rapid atrial pacing and could be abolished by nitroglycerin. Moreover, in several patients, endocardial ST elevation after rapid atrial pacing was abolished after successful percutaneous transluminal coronary angioplasty of the critically stenosed artery supplying the ischemic region of myocardium. It is concluded that ST elevation in the endocardial electrogram after rapid atrial pacing is a reflection of myocardial ischemia and may be a sensitive marker of pacing-induced ischemia appearing earlier than angina, postpacing increase in left ventricular end-diastolic pressure or ST depression in the surface ECG.

Adult↗

Double-blind study of a new nonionic contrast agent for cardiac angiography.

A randomized, double-blind study of a new nonionic contrast agent (ioversol) was performed in 80 patients undergoing routine coronary angiography and left ventriculography. Its hemodynamic and electrocardiographic (ECG) effects were compared with those of a conventional ionic contrast agent (sodium meglumine diatrizoate). There were 40 patients in each group. The radiographic quality and incidence of adverse reactions were comparable for both agents. Following left ventriculography, there was a smaller decrease in systemic and left ventricular systolic blood pressure and a smaller increase in heart rate and pulmonary artery systolic pressure (P less than .05) with ioversol than with meglumine diatrizoate. There was also a slight decrease in cardiac output with ioversol at 1 and 3 minutes after left ventriculography, while meglumine diatrizoate produced a modest increase. In selective coronary angiography, the fall in diastolic blood pressure was also greater (P less than .05). The Q-T interval was more prolonged with meglumine diatrizoate. Ioversol appears to be both safe and efficacious for cardiac angiography, causing fewer and less severe hemodynamic and ECG alterations than meglumine diatrizoate.

Blood Pressure↗

Acute occlusion developing during or immediately after percutaneous transluminal coronary angioplasty: nonsurgical treatment.

The authors report results of nonsurgical treatment of acute occlusion developing during percutaneous transluminal coronary angioplasty (PTCA). Of 514 consecutive PTCAs, acute occlusion of the dilated artery developed during or within 1 hour after PTCA in 44 patients (8.5%); of these acute occlusions, 11 (2.1%) were due to guide wire or catheter manipulation during PTCA, while 33 (6.4%) were due to abrupt closure occurring after initially successful dilation. In seven of the 11 patients with acute occlusions resulting from manipulation, PTCA was continued with attempts to cross the reoccluded segment; this was successful in two patients (29%). In 25 of the 33 patients with abrupt closure, repeat balloon dilation was immediately attempted rather than send the patients to surgery for emergency coronary artery bypass grafting. Sixteen of these 25 attempts were successful (64%) and resulted in conversion of a potential complication into a successful outcome. Abrupt closure following initial dilation seems more likely to be successfully treated by continuing with PTCA than is acute occlusion resulting from catheter and guide wire manipulation.

Acute Disease↗

Dilation of normal and constriction of atherosclerotic coronary arteries caused by the cold pressor test.

Increased vascular constriction has been observed at the site of atherosclerotic lesions, suggesting an association between atherosclerosis and altered vascular tone. While atherosclerosis may increase sensitivity to exogenous vasoconstrictors, little is known about the response of normal and atherosclerotic coronary arteries to an exogenous stimulus that excites the sympathetic nervous system. Therefore, we studied the response to cold pressor test (CPT) using quantitative angiography and Doppler flow velocity measurements in eight patients with angiographically normal coronary arteries (group I), nine patients with mild coronary atherosclerosis (less than 50% diameter narrowing) (group II), and 13 patients with advanced coronary stenoses (greater than 50% diameter narrowing) (group III). In 31 segments of angiographically smooth arteries in group I, the CPT produced vasodilation from a control mean diameter of 2.68 +/- 0.09 (mean +/- SE) to 2.99 +/- 0.09 mm at peak CPT (p less than 0.001), a 12 +/- 1% increase in diameter. In group II, 27 irregular segments constricted to peak CPT from a mean control diameter of 1.82 +/- 0.12 to 1.66 +/- 0.12 mm (p less than .001), a 9 +/- 1% decrease, while 10 smooth segments dilated from a mean control diameter of 1.98 +/- 0.11 mm to 2.34 +/- 0.15 mm (p less than .01), a 19 +/- 2% increase in diameter. Likewise, in group III, the 17 stenotic segments constricted from 1.16 +/- 0.09 to 0.89 +/- 0.09 mm (p less than .001), a 24 +/- 6% decrease; the irregular segments also constricted from 2.44 +/- 0.11 to 2.22 +/- 0.12 mm (p = .002), a 10 +/- 2% decrease. In contrast, two smooth segments dilated from 2.98 to 3.23 mm (mean), an 8% increase in diameter. Coronary blood flow increased 65 +/- 4% (mean) during CPT in group I, it increased 15 +/- 6% in group II, and it decreased 39 +/- 8% in group III. The vasodilator response in four normal patients was partly inhibited by the administration of intracoronary propranolol (17 +/- 3% increase during control, 10 +/- 2% increase after propranolol, 41% less dilation; p = .002). We conclude that the response of normal coronary arteries to the CPT test is dilation, in part related to beta-adrenoreceptor stimulation and possibly flow-mediated endothelial dilation or alpha 2-adrenergic activity. The paradoxical vasoconstrictor response induced by atherosclerosis may represent altered catecholamine sensitivity and/or a defect in endothelial vasodilator function. The presence of atherosclerosis impairs vasodilator responses and thus may contribute to the pathogenesis of myocardial ischemia.

Adult↗

Responses of coronary arteries of cardiac transplant patients to acetylcholine.

Accelerated coronary atherosclerosis is a major cause of graft failure after heart transplantation. Graft atherosclerosis is typically diffuse and difficult to detect even with coronary arteriography. Recently, acetylcholine was shown to dilate blood vessels by releasing a vasorelaxant substance from the endothelium (endothelium-derived relaxing factor). We have demonstrated paradoxical vasoconstriction induced by acetylcholine both early and late in the course of coronary atherosclerosis in patients, suggesting an association of endothelial dysfunction and atherosclerosis. In this report, we tested the hypothesis that coronary arteries of heart transplant patients can show endothelial dysfunction before or in the early stages of angiographically evident coronary atherosclerosis. Acetylcholine was infused into the left anterior descending artery of 13 heart transplant patients at 12 (n = 9) and 24 (n = 4) mo after transplantation. Vascular responses were evaluated by quantitative angiography. Among patients with angiographically smooth coronary arteries, relatively few (6/25) arterial segments had preserved vasodilator responses, while the majority failed to dilate (10/25) or paradoxically constricted (9/25). Angiographically irregular coronary arteries were present in three patients, in whom 8/10 segments showed marked paradoxical constriction and the remaining 2/10 failed to dilate. Only 1 of 13 patients retained appropriate dilation to acetylcholine in all segments. Nitroglycerin, which acts directly on vascular smooth muscle, dilated nearly all segments. No clinical features of the patients, including myocardial rejection appeared to correlate with the impaired functional response of vessels. Thus impaired response to acetylcholine is a common early finding in heart transplant patients and emphasizes the potential importance of endothelial dysfunction in the development of atherosclerosis.

Acetylcholine↗

Dynamic variations in resistance of coronary arterial narrowings in angina pectoris at rest.

The coronary hemodynamic events in 4 patients with frequent episodes of spontaneous rest angina were investigated. The basal coronary transstenotic pressure gradients showed more severe stenosis than that seen on coronary arteriography, suggesting that angiography in this setting may underestimate the true extent of coronary atherosclerosis. Episodes of angina were triggered by marked, sudden increases in the transstenotic coronary pressure gradient and a decrease in coronary blood flow without alterations in systemic arterial pressure or heart rate. These changes in coronary hemodynamics were promptly reversed by the intracoronary administration of nitroglycerin. No such spontaneous variations in transstenotic coronary pressure gradients were observed in 37 patients with a history of classic exertional angina but no rest angina. These unique data represent direct hemodynamic evidence that an increase in resistance at the site of a coronary stenosis, most likely the result of an increase in arterial tone, can be a cause of transient myocardial ischemia in patients with angina at rest.

Angina Pectoris↗

Use of digital video coronary arteriography in the performance of percutaneous transluminal coronary angioplasty.

Digital video coronary arteriography (DVCA) was used in 59 cases of percutaneous transluminal coronary angioplasty (PTCA) and found to be useful for display of imagery to facilitate choice of approach to a stenotic lesion; providing a "road map," simplifying guide wire manipulation and selective catheterization of vessels during PTCA; and archival of pre- and post-PTCA images. Use of DVCA for real-time display inside the catheterization laboratory expedites the successful performance of PTCA and is a convenient means of image archival.

Adult↗

Detection of transient myocardial ischemia by computer analysis of standard and signal-averaged high-frequency electrocardiograms in patients undergoing percutaneous transluminal coronary angioplasty.

Electrocardiographic manifestations of transient myocardial ischemia were studied, in 11 patients undergoing angioplasty (PTCA) of a left anterior descending coronary artery stenosis, by the visual inspection of the standard surface electrocardiogram (S-ECG) and the intracoronary ECG (IC-ECG) as well as computer-assisted analysis of the S-ECG. Cross-correlation analysis (CCA) performed by computer was used to compare beat-to-beat variability in ST-T morphology of the S-ECG during different stages of PTCA. CCA was also applied to the signal-averaged high-frequency QRS (SA-HFQ). All patients developed angina during balloon inflation, accompanied by transient marked ST-T changes in IC-ECG in 10 of 11 patients (90%). Visual inspection of S-ECG revealed transient ST-T changes in only 6 of 11 (54%). In contrast, CCA of the S-ECG revealed transient ST-T changes in 9 of 11 (82%). Analysis of SA-HFQ revealed that balloon inflation was associated with a marked reduction in the calculated root-mean-square (RMS) voltage for such signals (2.31 +/- 1.04 microV) as compared with RMS values before (3.27 +/- 1.12 microV, p less than .05) PTCA or after conclusion of PTCA (3.79 +/- 1.39 microV, p less than .01). Balloon inflation was also accompanied by changes in waveform morphology of the SA-HFQ, including the development of new or more prominent time zones of reduced amplitude in 10 of 11 individuals (90%). Such zones may represent slow conduction in regions of the heart rendered ischemic during PTCA. CCA of the S-ECG and of SA-HFQ appears to detect evidence of transient ischemia with greater sensitivity than simple visual inspection of S-ECG, and may therefore prove to be of use in the evaluation of patients with chest pain of uncertain origin.

Adult↗