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Biomedical subjects

D G Harrison

Publications and source records attributed to D G Harrison.

At least 163 records · Page 9Linked to original sources

Changes in cross-sectional area of the coronary lumen in the six months after angioplasty: a quantitative analysis of the variable response to percutaneous transluminal angioplasty.

Although immediate and late changes in coronary stenoses after percutaneous transluminal coronary angioplasty (PTCA) have been reported, most investigators have employed qualitative or semiquantitative techniques to analyze the angiograms. Such data is not optimal because of considerable interobserver variability and the use of relative instead of absolute changes in lesion geometry. Analysis is further compounded by the indistinct edges that characterize coronary lesions immediately after angioplasty. To quantify the changes in minimal cross-sectional area (MCSA) of the coronary lumen that occur during and after PTCA, we analyzed the angiograms of 23 patients before PTCA, immediately after PTCA, and at 7.2 +/- 3.0 (mean +/- SD) months follow-up using two computer-assisted methods of angiographic analysis--quantitative coronary angiography (QCA) and videodensitometry (VID). QCA provides an absolute measure of the area of the lumen; VID is a nongeometric method that is not dependent on exact border recognition. Based on these quantitative methods, we found that successful angioplasty is associated with about a three-fold increase in the MCSA of the lesion (from 1.0 to 3.2 mm2). This area is, however, well below normal and is less than half of the average MCSA of the inflated dilating balloon. Analysis of follow-up angiograms demonstrated that eight of 23 patients had a substantial late increase in the MCSA of the lesion (from 2.7 to 4.1 mm2) after the angioplasty procedure. Clinical, hemodynamic, and angiographic characteristics immediately after PTCA were not predictive of MCSA of the lumen at follow-up.(ABSTRACT TRUNCATED AT 250 WORDS)

Angina Pectoris↗

Adrenergic coronary tone during submaximal exercise in the dog is produced by circulating catecholamines. Evidence for adrenergic denervation supersensitivity in the myocardium but not in coronary vessels.

The goal of this study was to test the hypothesis that circulating catecholamines are primarily responsible for alpha-adrenergic coronary vasoconstriction during submaximal exercise. The experimental series consisted of chronic studies in which a regional left ventricular sympathectomy was performed with phenol. Myocardial perfusion to the innervated and sympathectomized left ventricular regions was measured in these animals during (1) a control period, (2) treadmill exercise, (3) exercise during beta-adrenergic blockade, and (4) exercise during combined alpha- + beta-adrenergic blockade. We found no differences in myocardial perfusion between the innervated and sympathectomized regions or the transmural distribution of perfusion during any of these interventions. Thus, there is no evidence for neurogenic alpha-adrenergic coronary vasoconstriction. However, during exercise in the presence of alpha- and beta-blockade, coronary resistance (mmHg X min X 100 g/ml) was significantly less in both the innervated (0.65 +/- 0.07) and sympathectomized (0.68 +/- 0.07) regions than during beta-blockade, 0.90 +/- 0.17 and 0.89 +/- 0.16, respectively. This suggests that coronary alpha-adrenergic constriction was produced by circulating catecholamines. This concept of humorally mediated, alpha-adrenergic coronary vasoconstriction was strengthened by in vivo and in vitro studies that demonstrated that alpha-adrenergic supersensitivity of the coronary vasculature was not present. Myocardial beta-adrenergic supersensitivity was observed in the phenol regional sympathectomy model; however, this effect was blocked by propranolol (1 mg/kg). This indicates that alpha-adrenergic vasoconstriction in both myocardial regions during submaximal exercise is produced by circulating catecholamines. The major conclusion of this study is that, during submaximal exercise in the canine, alpha-adrenergic coronary vasoconstrictor tone is predominantly due to circulating catecholamines rather than direct neural effects.

Animals↗

Atherosclerosis impairs endothelium-dependent vascular relaxation to acetylcholine and thrombin in primates.

To test the hypothesis that atherosclerosis impairs endothelium-dependent vascular relaxation, we examined the effect of the endothelium-dependent vasodilators acetylcholine and thrombin and the endothelium-independent vasodilator nitroglycerin on iliac arteries from normal cynomolgus monkeys and cynomolgus monkeys with diet-induced atherosclerosis. Rings of iliac artery were suspended in organ chambers at their optimal length for generating tension. After preconstriction with prostaglandin F2 alpha, cumulative concentration-response curves to acetylcholine, thrombin, and nitroglycerin were examined. The presence of endothelium was confirmed in each vessel by scanning electron microscopy. Atherosclerotic vessels showed morphologic evidence of moderate to severe atherosclerosis. Acetylcholine produced a maximal relaxation of 65 +/- 10% in the normal group and 27 +/- 10% in atherosclerotic vessels (P less than 0.05). Thrombin (10.0 U/ml) produced relaxation of 39 +/- 9% in the normal group and 13 +/- 7% in atherosclerotic iliac arteries (P less than 0.05). Nitroglycerin relaxed both normal and atherosclerotic blood vessels to an equal extent; maximal relaxation was 92 +/- 4% in normal vessels and 98 +/- 2% in atherosclerotic vessels. To determine if hypercholesterolemia alone produces an abnormality in endothelium-dependent relaxation, we performed two additional studies. First, because veins are exposed to hypercholesterolemia, but do not develop atherosclerosis, we studied relaxation responses to acetylcholine and thrombin in veins from normal monkeys and monkeys with diet-induced atherosclerosis. Veins from normal and atherosclerotic monkeys relaxed to a similar extent upon exposure to the endothelium-dependent vasodilators acetylcholine and thrombin.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

Absence of functioning alpha-adrenergic receptors in mature canine coronary collaterals.

To determine if mature coronary collateral vascular smooth muscle contains functioning alpha-adrenergic receptors, we studied 13 dogs, 6-10 months after circumflex ameroid occlusion. Regional myocardial blood flow was measured with radioactive microspheres in a blood-perfused heart preparation at constant aortic pressure (80 mm Hg). Normal zone resistance was calculated as aortic pressure divided by normal zone flow, and transcollateral resistance was calculated as aortic pressure minus circumflex pressure distal to the ameroid constrictor divided by coronary collateral flow. Flow and resistance were measured during adenosine vasodilation before and during graded doses of a constant infusion of the alpha-adrenergic agonist methoxamine (n = 6) or the alpha 2-adrenergic agonist clonidine (n = 7). In the hearts that received methoxamine, normal zone resistance increased from a control of 0.29 +/- 0.06 to 0.39 +/- 0.06 mm Hg X min/ml per 100 g (resistance units) during infusion of 10(-5)M methoxamine (p less than 0.05). In contrast transcollateral resistance averaged 0.24 +/- 0.02 resistance units under control conditions and did not change during methoxamine infusion. In the hearts that received clonidine, normal zone resistance averaged 0.24 +/- 0.03 resistance units and increased to 0.39 +/- 0.07 resistance units (p less than 0.05) with the highest dose of clonidine administered (10(-5) M). Transcollateral resistance averaged 0.17 +/- 0.03 resistance units during control conditions and did not change with clonidine infusion. In separate studies isometric tension development by the left anterior descending and coronary collateral vessels was examined in organ baths. The left anterior descending coronary artery demonstrated dose-dependent constriction to phenylephrine (peak response 22 +/- 5% of the response to 100 mM KCl). Clonidine produced weak constrictor responses in the left anterior descending coronary artery (5 +/- 2.5% maximal KCl response). In contrast, neither phenylephrine nor clonidine produced responses in mature collaterals. We also examined responses of mature collateral vessels to nonadrenergic agonists. In the vascular ring preparation the mature collaterals developed tension in the presence of KCl (2.3 +/- 0.9 g), prostaglandin F2 alpha (16 +/- 18% of the KCl responses), and vasopressin (90 +/- 30% of the KCl response). In adenosine-vasodilated hearts, pharmacologic doses of vasopressin caused a two-fold increase in transcollateral resistance. Thus, these studies performed on intact hearts and isolated vascular rings demonstrate that mature coronary collaterals do not contain functioning alpha-adrenergic receptors.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenergic alpha-Agonists↗

Application of Doppler technology to studies of the coronary circulation.

Presently available Doppler technology has allowed us to substantially increase our understanding of the regulation of the coronary circulation in humans. New technologic developments in this area promise to further enhance our understanding of the operational characteristics of the coronary circulation in patients in normal and pathologic states.

Angina Pectoris↗

Assessing the physiological significance of coronary obstruction in man.

At present, it is widely assumed that the physiological significance of a coronary obstruction can be assessed by measuring percent stenosis on a coronary arteriogram. This assumption is being challenged by physiological measurements of coronary reserve performed in patients at open heart surgery with a Doppler technique. These physiological studies have shown a poor correlation between coronary reserve and percent stenosis. Although stenoses at the ends of the spectrum (less than 10% or greater than 90% diameter narrowing) have expected effects on coronary reserve, stenoses of intermediate severity (10-90%) do not accurately predict coronary reserve in the individual vessel involved. Studies with quantitative angiography indicate that diffuse coronary atherosclerosis, undetected by angiography, is probably the dominant explanation for why percent stenosis does not accurately predict the physiologic significance of coronary obstructions in man. Because the 'gold standard' (percent stenosis) utilized for decades to assess the physiologic significance of coronary obstructive lesions has been seriously challenged, development of other more sophisticated approaches to this problem should be encouraged.

Animals↗

Right ventricular infarction with shock but without significant left ventricular infarction: a new clinical syndrome.

Right ventricular infarction has been described as concurrent with infarction involving the inferior (posterior) aspect of the left ventricular free wall and adjacent interventricular septum. Patients with right ventricular infarction typically show the ECG changes of inferior infarction in leads II, III, and aVF. This report describes two patients with right ventricular infarction but without changes in the QRS complex of the ECG, indicating an inferior infarct of the left ventricle. An autopsy-proven infarct of the right ventricular free wall with neither QRS nor other clinical evidence of left ventricular involvement was responsible for cardiogenic shock and death in one patient. This observation led to a review of a computerized data bank containing records of patients who had undergone cardiac catheterization to determine if there were other patients with clinical criteria suggesting right ventricular infarction without QRS changes of left ventricular infarction. One of the 167 patients with a history of a myocardial infarction also met the following clinical criteria: (1) transiently elevated total creatine kinase and creatine kinase myocardial band; (2) diffuse ST segment elevation without QRS changes indicative of left ventricular infarction on the ECG; (3) normal left ventricular function; (4) hemodynamic evidence of right ventricular dysfunction; and (5) cardiogenic shock.

Aged↗

The effect of cardiac hypertrophy on the coronary collateral circulation.

We have previously shown that dogs with renal hypertension and left ventricular hypertrophy have larger infarcts (per risk area size) than do control animals. A potential explanation for this is that collateral resistance is higher in these dogs. Paradoxically, previous postmortem studies in human hearts with left ventricular hypertrophy have suggested that coronary collaterals are actually increased in this condition. To test the hypothesis that left ventricular hypertrophy is associated with alterations in coronary collateral resistance, studies were performed in dogs with renal hypertension and left ventricular hypertrophy and in patients with aortic valvular disease at the time of cardiac surgery. With an isolated, adenosine-vasodilated, blood-perfused cardiac preparation, collateral and normal zone pressure-flow relationships were established by means of radioactive microspheres in nine dogs with renal hypertension and left ventricular hypertrophy and in 17 controls. Collateral resistance calculated from these pressure-flow relationships were similar in both groups (4.0 +/- 0.7 in dogs with renal hypertension and left ventricular hypertrophy and 3.9 +/- 0.4 mm Hg/ml/min/100 g in controls). In addition, normal zone resistance was not different between groups (transmural resistances 0.17 +/- 0.01 in controls and 0.18 +/- 0.02 in dogs with renal hypertension and left ventricular hypertrophy. In five patients with aortic valve disease, left ventricular hypertrophy, and normal coronary arteries and in six patients without left ventricular hypertrophy who had normal left anterior descending coronary arteries, a 7 MHz suction-mounted echo transducer was used to monitor systolic wall thickening during transient occlusions of the left anterior descending artery at the time of cardiac surgery. Because noncollateralized myocardium ceases to contract promptly after coronary occlusion, this approach provides an indirect index of collateral perfusion. Twenty seconds after the onset of coronary occlusion, systolic thickening had markedly decreased in both groups (15 +/- 10% of control values in nonhypertrophied hearts and 10 +/- 10% in hearts with left ventricular hypertrophy; p = NS between groups). Thus the severity of contraction abnormality induced during transient coronary occlusion in these two groups of patients was similar, suggesting that the degree of severity of ischemia was comparable between the two groups. We conclude that collateral resistance is not altered by hypertension and left ventricular hypertrophy and that left ventricular hypertrophy in patients is not associated with functional evidence of an enhanced collateral circulation.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Does visual interpretation of the coronary arteriogram predict the physiologic importance of a coronary stenosis?

To assess visual interpretation of the coronary arteriogram as a means of predicting the physiologic effects of coronary obstructions in human beings, we compared caliper measurements of the degree of coronary stenosis with the reactive hyperemic response of coronary flow velocity studied with a Doppler technique at operation, after 20 seconds of coronary arterial occlusion. In 39 patients (44 vessels) with isolated, discrete coronary lesions varying in severity from 10 to 95 per cent stenosis, measurement of the percentage of stenosis from coronary angiograms was not significantly correlated (r = -0.25) with the reactive hyperemic response. Results were the same for obstructions in the left anterior descending, diagonal, and right coronary arteries. Underestimation of lesion severity occurred in 95 per cent of vessels with greater than 60 per cent stenosis of the diameter by arteriography. Both overestimation and underestimation of lesions with less than 60 per cent stenosis were common. These results, together with the high interobserver and intraobserver variability of standard visual analysis of angiograms, suggest that the physiologic effects of the majority of coronary obstructions cannot be determined accurately by conventional angiographic approaches. The need for improved analytical methods for the physiologic assessment of angiographically detected coronary obstructions is apparent.

Angiography↗

Rethrombosis after reperfusion with streptokinase: importance of geometry of residual lesions.

We tested the hypothesis that lesion rethrombosis after streptokinase reperfusion is related to luminal size of the residual stenosis. Two independent techniques of analyzing coronary angiograms, quantitative coronary angiography and computer-based videodensitometry, were used to estimate the size of the residual lumen immediately after discontinuation of streptokinase. These techniques were selected because they provide independent estimates of cross-sectional area of a lesion with high degrees of reproducibility and minimal observer variability. Twenty-four patients who had undergone successful reperfusion with streptokinase were studied. Seven patients had lesion rethrombosis documented either on a repeat angiogram, at autopsy, or, in one case, by the fact that the patient had an acute transmural infarction resulting in death. Vessel patency was documented by repeat coronary angiography 8 to 14 days after initial streptokinase reperfusion in the other 17 patients. As assessed by quantitative coronary angiography, seven of 13 patients (54%) with minimal luminal cross-sectional areas of less than 0.4 mm2 had rethrombosis. None of the 11 patients with lumens greater than 0.4 mm2 had rethrombosis. In the 17 patients with vessels that remained patent the size of the residual lesion at repeat catheterization was compared with its size immediately after reperfusion with streptokinase. Over the intervening 8 to 14 day interval, an average percentage increase in minimal cross-sectional area of 116 +/- 34% was observed. In seven patients minimal luminal cross-sectional area more than doubled. Integrated optical density, an index of the severity of coronary stenosis derived from computer-based videodensitometry, was also useful in identifying a subgroup of patients at high risk for rethrombosis of lesion.(ABSTRACT TRUNCATED AT 250 WORDS)

Computers↗

The value of lesion cross-sectional area determined by quantitative coronary angiography in assessing the physiologic significance of proximal left anterior descending coronary arterial stenoses.

The results of previous work from this laboratory have shown a poor correlation between percent stenosis (determined visually with calipers) and the coronary reactive hyperemic response (an index of maximal coronary vasodilator capacity) determined during cardiac surgery. This study was performed to determine whether other parameters of lesion severity could predict the reactive hyperemic response and thus the hemodynamic significance of coronary stenoses in human beings. Twenty-three patients with lesions in the proximal left anterior descending coronary artery were studied. To account for differences in expected vessel size, patients with large diagonal branches (greater than one-half the diameter of the left anterior descending artery) arising before the lesion were excluded. Computer-assisted quantitative coronary angiography was used to measure percent diameter stenosis, percent area stenosis, and minimal stenosis cross-sectional area. With a pulsed Doppler velocity probe, reactive hyperemic responses were recorded after a 20 sec coronary occlusion of the left anterior descending artery at cardiac surgery before cardiopulmonary bypass and were quantified by the peak/resting velocity ratio (normal greater than 3.5:1). Percent area stenosis ranged from 7% to 54% for vessels with normal reactive hyperemic responses and from 27% to 94% for vessels with abnormal reactive hyperemic responses. With both percent diameter stenosis and percent area stenosis there was substantial overlap between vessels with normal and abnormal reactive hyperemic responses. In contrast, nine of nine vessels with normal reactive hyperemic responses had lesion minimal cross-sectional areas of greater than 3.5 mm2 and 13 of 14 vessels with abnormal reactive hyperemic responses had minimal cross-sectional areas of less than 3.5 mm2.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Abnormalities in the coronary circulation that occur as a consequence of cardiac hypertrophy.

Myocardial ischemia is frequently observed in patients with cardiac hypertrophy even when the conduit coronary arteries are normal. Recent studies indicate that impaired coronary reserve in hypertrophied hearts probably occurs because growth of the coronary bed does not keep pace with increases in cardiac mass. The imbalance between vascular proliferation and muscle growth is probably most severe when cardiac hypertrophy is produced by pressure overload. Experimental studies also suggest that abnormalities intrinsic to pressure-hypertrophied heart muscle (decreased capillary density; decreased coronary reserve; electrophysiologic abnormalities) adversely affect the response of the enlarged heart to sudden coronary occlusion. When animals with hypertension and left ventricular hypertrophy are subjected to sudden coronary occlusion, the incidence of sudden cardiac death is increased severalfold and infarct size is substantially augmented. These observations suggest that abnormalities in the coronary microcirculation that accompany cardiac hypertrophy play a significant role in the pathogenesis of the complications associated with cardiac hypertrophy.

Animals↗

Evaluation of serial QRS changes during acute inferior myocardial infarction using a QRS scoring system.

The evolution of changes in the QRS complex during the initial 3 days after the onset of an initial inferior myocardial infarction (MI) was studied in 82 consecutive patients. Each patient's standard 12-lead electrocardiogram was assigned points (a QRS score) according to the absolute duration of the Q and R waves and the amplitude ratios of R-to-Q and R-to-S waves. This QRS score has been demonstrated to correlate (r = 0.74) with the anatomic extent of single inferior MI. By this system, 43 patients (53% of the study group) had an initial electrocardiogram that registered a score of 0 and developed QRS points only after admission. The QRS scores of 18 additional patients (22% of the study group) changed after admission. Forty-nine score changes were noted on Day 2 and 18 on Day 3. All of these changes resulted in an increased QRS score. Alteration of the QRS complex during initial inferior MI evolves over 2 to 3 days in many patients. There is a distinct pattern to this evolution, which results in sequential increases in a QRS score based upon electrocardiographic indicators of the extent of myocardial necrosis. This QRS scoring system might be applied to evaluate clinically interventions aimed at limiting the extent of necrosis in patients with initial acute inferior MI.

Electrocardiography↗

A QRS scoring system for assessing left ventricular function after myocardial infarction.

A QRS scoring system for estimating the size of a myocardial infarct was evaluated in 55 patients who did not have left ventricular hypertrophy or conduction abnormalities. Serial 12-lead surface electrocardiograms were scored according to a 29-point system based on the duration of Q and R waves and on the ratios of R-to-Q amplitude and R-to-S amplitude. The scores were proportional to the severity of wall-motion abnormalities, which was determined by radionuclide blood-pool scanning and which correlated inversely with the radionuclide-determined left ventricular ejection fraction (LVEF). A score less than 3 was 93 per cent sensitive and 88 per cent specific for both severe regional dyssynergy and major depression of the global LVEF. The following equation was used to estimate the LVEF from the QRS score: LVEF (%) = 60 - (3 x QRS score). After acute myocardial infarction, an electrocardiogram can provide important indirect quantitative information about left ventricular function.

Electrocardiography↗

Transmural variation in the relationship between myocardial infarct size and risk area.

To test the hypothesis that the relationship between infarct area (IA) and area at risk (AR) varies in different layers of the left ventricle (LV), we occluded the circumflex coronary artery for 48 h in 20 conscious dogs. AR was determined by postmortem coronary stereoarteriography, and infarct area by pathological examination. Both AR and IA were divided into four layers: posterior papillary muscle (PPM), subendocardium (Endo), midwall, and subepicardium (Epi) and quantified with planimetry. Hemodynamics and regional myocardial flow with tracer microspheres (7-10 micrometers diam) were measured before and after coronary occlusion. IA was closely correlated with AR for PPM (r = 0.96), Endo (r = 0.97), and Epi (r = 0.92). However, the slope of IA/AR for Endo (1.30 +/- 0.08) was significantly steeper (P less than 0.05) than that for Epi (0.89 +/- 0.11); furthermore, the intercepts at zero infarction for PPM (0.5 +/- 0.1% of LV), Endo (4.2 +/- 0.4%), and Epi (0.1 +/- 0.7%) were significantly different from each other. Regional blood flow measurements indicate that the differences in IA/AR in various layers reflected earlier and greater total collateral flow to the noninfarcted AR in the epicardium. Thus IA/AR for the entire LV is a composite representing separate IA/AR specific to various transmural layers of the LV. In addition, this study demonstrates that the lateral border zone between the IA and the AR is minimal (less than 3-5 mm) in the subendocardium and midwall layers of the left ventricle.

Animals↗

Myocardial infarct extension: incidence and relationship to survival.

Myocardial infarct extension, defined as reelevation or reappearance of creatine phosphokinase-MB (CK-MB) 48 hours after the onset of symptoms, was evaluated prospectively in 56 consecutive patients with acute myocardial infarction. Myocardial infarct extension occurred in eight patients (14%). The sensitivity, specificity and predictive accuracy in the diagnosis of myocardial infarct extension were 63%, 85% and 42%, respectively, for recurrent chest pain requiring morphine; 50%, 65% and 19% for recurrent ST-segment elevation on routine 12-lead ECGs; and 88%, 63% and 28% for reelevation of total CK. Three of the eight episodes of extension were clinically silent. Four of eight patients (50%) with extension died, compared with one of 46 patients (2%) without extension (p = 0.0009). CK-MB persisted for 72 hours or longer in 16 patients and identified seven of eight patients who subsequently had infarct extension. We conclude that myocardial infarct extension is an infrequent complication of acute myocardial infarction and is associated with a very high mortality rate. Persistence of CK-MB for 72 hours or more identifies a subgroup of patients at high risk for subsequent infarct extension and death.

Creatine Kinase↗

The contribution of protozoa to the protein entering the duodenum of sheep.

1. Four sheep, each fitted with a rumen fistula and a re-entrant cannula at the proximal duodenum were fed a semi-purified diet containing urea as the only nitrogen source. The quantities of total protozoal amino acid-N (TPAN) present in the rumen and entering the duodenum were determined when the mean rumen dilution rate (D) was low (0.034/h) and when D was increased to 0.078/h by the intraruminal infusion of artificial saliva. 2. Increasing the dilution rate had no significant effect upon the proportions of TPAN present in the total microbial amino-acid-N (TMAN) of the rumen fluid and duodenal digesta. With both dilution rates the mean proportion of TPAN in the duodenal TMAN (0.24) was markedly less than the equivalent proportion (0.45) found in the rumen fluid. 3. The daily flow of TPAN, as measured at the duodenal cannula at both dilution rates were equivalent to only 41% of the flow of TPAN as predicted from measurements of rumen outflow, indicating that a substantial proportion of rumen protozoal protein was retained within the rumen.

Amino Acids↗