Search PubMed⌕ Search

Biomedical subjects

J M Foult

Publications and source records attributed to J M Foult.

At least 37 records · Page 2Linked to original sources

Coronary flow and resistance reserve in patients with chronic aortic regurgitation, angina pectoris and normal coronary arteries.

Left ventricular hypertrophy has been found to be associated with a reduction of coronary vascular reserve, which could be responsible for episodes of myocardial ischemia. To evaluate coronary flow and resistance reserve in patients with chronic aortic regurgitation, coronary sinus blood flow and coronary resistance were measured before and after an intravenous dipyridamole infusion (0.14 mg/kg per min X 4 min) in eight control subjects and eight patients with aortic regurgitation, exertional angina pectoris and normal coronary arteriograms. Coronary flow reserve, evaluated by the dipyridamole/basal coronary sinus blood flow ratio, and coronary resistance reserve, evaluated by the basal/dipyridamole coronary resistance ratio, were both significantly reduced in patients with aortic regurgitation (1.67 +/- 0.40 versus 4.03 +/- 0.52 in control subjects, p less than 0.001 and 1.71 +/- 0.50 versus 4.38 +/- 0.88 in control subjects, p less than 0.001, respectively). In patients with aortic regurgitation, basal coronary sinus blood flow was higher than in control subjects (276 +/- 81 versus 105 +/- 24 ml/min, respectively, p less than 0.001) and basal coronary resistance was lower (0.31 +/- 0.13 versus 0.95 +/- 0.17 mm Hg/ml per min, respectively, p less than 0.001), but coronary blood flow and resistance after dipyridamole were not significantly different in the two groups (461 +/- 159 versus 418 +/- 98 ml/min in control subjects, 0.19 +/- 0.11 versus 0.22 +/- 0.04 mm Hg/ml per min in control subjects, respectively). These data demonstrate that coronary reserve is severely reduced in patients with chronic aortic regurgitation and exertional angina.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Reversibility by dipyridamole of thallium-201 myocardial scan defects in patients with sarcoidosis.

PURPOSE: In order to clarify the significance of anginal pain and myocardial thallium-201 scan defects in cardiac sarcoidosis, the pharmacologic effect of dipyridamole on myocardial perfusion was assessed by planar thallium-201 myocardial scintigraphy in patients with sarcoidosis. PATIENTS AND METHODS: Thallium-201 myocardial scintigraphy was performed at rest and after 0.56 mg/kg intravenous dipyridamole during four minutes in 16 patients with sarcoidosis. The myocardial scan (45-degree and 70-degree left anterior oblique, and anterior views) was divided into 15 segments. Results were evaluated by the number of segmental defects and with a global perfusion score (from 0 to 60) by a semi-quantitative index depending on the size and severity of myocardial thallium-201 defects. RESULTS: Thirteen of the 16 patients showed partial or total reversion of their thallium-201 defects on redistribution scanning either at rest or after dipyridamole. The mean (+/- SD) number of myocardial perfusion defects that were present in all the patients decreased from 5.31 +/- 1.78 at rest to 3.25 +/- 2.52 after redistribution (p less than 0.001) and to 2.19 +/- 2.10 after dipyridamole (p less than 0.001). The mean global perfusion score increased from 53.2 +/- 3.0 at rest to 56.2 +/- 2.9 after redistribution (p less than 0.001) and to 57.2 +/- 2.7 after dipyridamole (p less than 0.001). A significant correlation (r = 0.82, p less than 0.001) was found between the increase of global perfusion score on redistribution and after dipyridamole. CONCLUSION: The reversibility of myocardial scan defects is a common finding in sarcoidosis. It makes unlikely the role of scar fibrosis or extensive confluent granulomas as a mechanism for such defects. The effect of dipyridamole suggests the presence of reversible disorders lying at the coronary microvascular level.

Adult↗

Direct myocardial and coronary effects of enalaprilat in patients with dilated cardiomyopathy: assessment by a bilateral intracoronary infusion technique.

Angiotensin II elicits contractile responses in the coronary arteries and myocardial tissue, which suggests that blockade of the renin-angiotensin system by specific agents should lead to both coronary vasodilation and an alteration of left ventricular inotropism. The present work was designed to delineate--independently from its systemic effects--the intrinsic actions of an angiotensin converting-enzyme inhibitor on the coronary circulation and left ventricular function. To minimize peripheral effects, a bilateral intracoronary infusion of enalaprilat (0.05 mg.min-1, 1 ml.min-1 in each coronary artery) was performed in 16 patients with dilated cardiomyopathy. All patients had normal coronary arteriograms. In 12 patients (group I) the intracoronary infusion of enalaprilat resulted in minimal peripheral changes, with a 5% reduction in the mean aortic pressure (p less than .05) and no significant alteration in indexes of preload, i.e., left ventricular end-diastolic pressure and volume, or of afterload, i.e., left ventricular end-systolic stress and systemic resistances. Myocardial oxygen consumption was also unaffected by the intracoronary infusion of enalaprilat. Coronary vasodilation was demonstrated by a significant elevation of coronary sinus blood flow (+19%, from 181 +/- 73 to 214 +/- 79 ml.min-1, p less than .001) and a reduction of coronary resistance (-18%, from 0.51 +/- 0.17 to 0.41 +/- 0.15 mm Hg.ml-1.min, p less than .001), with a parallel increase in coronary sinus oxygen content and pressure (both p less than .05). Oxygen extraction by the myocardium was reduced (p less than .01).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Coronary reserve: a dynamic evaluation of coronary circulation].

Measuring the coronary reserve is a way of evaluating pathologies of the large coronary vessels as well as of coronary microcirculation. In man, measurement of the coronary sinus blood flow by the thermodilution method can be used to determine the increase in flow induced by selective injection of a contrast medium into the left coronary artery or by intravenous injection of dipyridamole. Such measurements have been performed in subjects with normal coronary blood flow and left ventricular function, in patients with cardiac or systemic diseases likely to alter coronary perfusion (e.g. atheromatous coronary disease, dilated cardiomyopathy, scleroderma, sarcoidosis) and in patients who had undergone heart transplantation. Flow and resistance reserves have been calculated from the maximal/basal coronary flows ratio and from the minimal/basal coronary resistance ratio. The results obtained provided information on the repercussions of coronary stenosis on myocardial perfusion and on alterations of coronary microcirculation in pathologies respecting the main coronary arteries. In addition, changes in coronary reserve induced by some pharmacological agents may be used to evaluate the effects of certain cardiovascular therapies.

Cardiomyopathy, Dilated↗

[Analysis of the complications of coronarography. Apropos of a series of 2,300 consecutive tests].

The coronarographic risk is 3 deaths per thousand and 2 non-fatal complications per cent. Fatal cases are always related to severe coronary lesions, particularly stenosis of main trunk. Their incidence is equivalent during catheterization by the humeral or femoral routes whereas local complications are more frequent by the humeral approach. In the series of 2,300 successive coronarography examinations reported there were less than 4 deaths per thousand and 1.82 complications per cent. Four factors contribute to the reduction in high risk coronarography mortality when the following protocol is used. First, routine coronary opacification at start of investigations after determination of left ventricular pressures allowing, in patients with very severe coronary lesions and/or markedly altered left ventricular function, the ventriculography to be postponed until the following day or even cancelled. Second, use of a new contrast medium of lower osmolarity possessing advantages over older products. Third, and principally, institution of a very strict pre- and per-coronarography drug protocol, controlled use of an intraaortic diastolic counter-current balloon, and notably placed in position during examination in patients with very pronounced stenosis of main trunk. In these cases the arterial desilet is left in place for 24 hours after examination to delay vagal reflex provoked by compression and to allow urgent insertion if necessary of an intra-aortic diastolic counter-current balloon catheter. Fourth, use of Diltiazem intracoronary in case of major spasm and Streptokinase and possible metallic guide to obtain repermeability of a thrombosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Anaphylaxis↗

Dipyridamole versus intracoronary injection of contrast medium for the evaluation of coronary reserve in man: a comparative study.

Coronary reserve can be assessed by the ratio of coronary blood flow after "maximum" vasodilation to control flow. The intravenous infusion of dipyridamole (0.56 mg X kg-1) is considered to elicit maximum coronary vasodilation. The present study was designed to compare coronary flow and resistance responses to intravenous dipyridamole and intracoronary injection of contrast medium (ioxaglate), this latter technique being frequently used in digital radiology to stimulate hyperemia. The comparison was performed in seven normal patients, nine patients with coronary artery disease, and 16 patients with dilated cardiomyopathy. Coronary flow reserve was calculated as the ratio of peak flow after dipyridamole or contrast medium to control flow, and coronary resistance reserve was calculated as the ratio of minimal to control coronary resistance after each stimulus. Although flow reserve after dipyridamole was approximately twice that obtained after contrast medium in the normal group (4.01 +/- 0.56 vs 2.02 +/- 0.24) there was a close and linear relationship between coronary flow and resistance reserve estimated by both techniques (r = 0.846, p less than 0.001 for flow reserve ratios, and r = 0.844 p less than 0.001 for resistance reserve ratios). However, contrast-induced hyperemia identified 13/25 (52%) of patients with coronary artery disease or dilated cardiomyopathy as having a reduced flow reserve, while dipyridamole revealed a restrained coronary flow reserve in 20/25 (80%) of these patients. Similar proportions were obtained when using coronary resistance reserve (56% for contrast vs 80% for dipyridamole). (ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Reduced coronary flow and resistance reserve in primary scleroderma myocardial disease.

The maximum coronary vasodilator capacity after intravenous dipyridamole (0.14 mg X kg-1 X min-1 X 4 minutes) was studied in seven patients with primary scleroderma myocardial disease and compared to that of seven control subjects. Hemodynamic data and left ventricular angiographic data were not different in the two groups. The coronary flow reserve was evaluated by the dipyridamole/basal coronary sinus blood flow ratio (D/B CSBF) and the coronary resistance reserve by the dipyridamole/basal coronary resistance ratio (D/B CR). Coronary reserve was greatly impaired in the group with primary scleroderma myocardial disease: D/B CSBF was lower than in the control group (2.54 +/- 1.37 vs 4.01 +/- 0.56, respectively; p less than 0.05) and D/B CR was higher than in the control group (0.47 +/- 0.25 vs 0.23 +/- 0.04, respectively; p less than 0.05). Such a decreased coronary flow and resistance reserve in patients with primary scleroderma myocardial disease was not explained by an alteration of left ventricular function. It may be an important contributing factor in the pathogenesis of primary scleroderma myocardial disease.

Adult↗

Effect of diltiazem on coronary reactive hyperemia in patients with flow-limiting coronary artery stenosis.

The acute effects of diltiazem on coronary reactive hyperemia were studied in 12 patients with flow-limiting coronary stenosis. Reactive hyperemia was elicited by injection of 8 ml contrast medium into the left coronary artery, while coronary sinus blood flow and left ventricular and aortic pressures were continuously recorded. Relative magnitude of hyperemia was estimated by the ratio of coronary flow at peak hyperemia to baseline flow (hyperemic ratio). Coronary resistance was calculated as the ratio between mean aortic pressure minus left ventricular mean diastolic pressure and coronary sinus blood flow. The 12 patients studied had flow-limiting coronary stenosis since their hyperemic ratio was significantly restrained when compared to that of seven control subjects (1.45 +/- 0.17 vs 2.02 +/- 0.24, respectively; p less than 0.001). The intravenous infusion of diltiazem (0.30 mg X kg-1) reduced heart rate, mean aortic pressure, and myocardial oxygen consumption (all p less than 0.001). After diltiazem the hyperemic ratio was blunted when compared to the basal state (1.36 +/- 0.15 vs 1.45 +/- 0.17, respectively; p less than 0.05), and hyperemia volume was reduced (-33%; p less than 0.001). The decrease in coronary resistance at peak hyperemia was also reduced from -30 +/- 8% to -25 +/- 8% (p less than 0.05). We conclude that diltiazem blunts coronary reactive hyperemia in patients with demonstrated flow-limiting coronary stenosis. This reduction of coronary flow response to a hyperemic stimulus could favorably influence blood flow distribution in patients with significant coronary stenosis.

Adult↗

Pharmacodynamic effect of dipyridamole on thallium-201 myocardial perfusion in progressive systemic sclerosis with diffuse scleroderma.

We evaluated the effect of dipyridamole on thallium-201 myocardial perfusion in 23 patients with progressive systemic sclerosis (PSS) with diffuse scleroderma. Thallium-201 single photon emission computed tomography (SPECT) was performed at rest and after coronary artery vasodilatation with intravenous dipyridamole (0.14 mg/kg/min for four minutes). The left myocardium was divided into nine segments; each segment was graded as 2.0, 1.5, 1.0, 0.5, 0 (zero represents no activity). Dipyridamole significantly improved resting thallium-201 myocardial perfusion: the mean (SD) number of segments with thallium defects decreased from 6.0 (2.1) at rest to 4.1 (2.5) after dipyridamole (p less than 0.0001); the mean (SD) score in segments with resting defects increased from 0.92 (0.24) at rest to 1.13 (0.38) after dipyridamole (p less than 0.0001); the mean (SD) global score per patient increased from 10.2 (1.8) at rest to 11.4 (2.1) after dipyridamole (p less than 0.02); the global score increased by at least 2.0 in 12 patients and worsened by at least 2.0 in three patients only (p = 0.05). The results of this acute study suggest that some drugs with potent vasodilator activity on small coronary arteries may be beneficial in the treatment of PSS patients with thallium-201 myocardial perfusion abnormalities.

Adult↗

Dipyridamole-induced coronary vasodilation in human transplanted heart: preliminary report.

Coronary sinus blood flow and resistance were studied before and after intravenous dipyridamole in 4 patients with transplanted heart and normal coronary arteriogram treated by cyclosporine-prednisolone. Results were compared to those of a normal group of 7 subjects. Left ventricular endomyocardial biopsies were performed in the heart transplanted group. Mean right atrial pressure, cardiac index and left ventricular function were normal in the transplanted heart group. Mean aortic pressure and systemic vascular resistances were significantly higher in the transplanted group than in normals (p less than 0.01), but coronary resistance were similar. Dipyridamole-induced vasodilation resulted in an increased coronary sinus blood flow and a decreased coronary resistance in both groups, but these effects were reduced in 1 patient with a transplanted heart that evidenced an important perivascular fibrosis after a subacute rejection. In conclusion, this preliminary report of coronary blood flow in patients with transplanted heart indicates that the ability of coronary sinus blood flow to increase after dipyridamole is normal in the transplanted heart without allograft rejection. A major limitation in coronary vasodilation was observed in 1 patient with rejection antecedents and perivascular fibrosis, which could play a role in left ventricular function deterioration in some patients after heart transplantation.

Adult↗

[The coronary hyperemic reaction in scleroderma].

Functional, organic and vascular anomalies could play an important role in systemic scleroderma. We have studied the coronary hyperemic reaction in subjects with primitive sclerodermatous cardiomyopathy, in order to specify the vascular anomalies. The coronary hyperemic reaction consists of a transient rise in coronary flow after selective injection of a contrast agent into the left coronary artery. In sclerodermatous subjects this coronary hyperemic reaction is significantly smaller than in control subjects. This limitation of the hyperemic reaction reflects a decrease in the ability of small arteries or coronary arterioles to dilate in sclerodermatous subjects. This anomaly could play an important role in primitive sclerodermatous cardiomyopathy.

Cardiac Catheterization↗

Multifactorial determinants of reduced coronary flow reserve after dipyridamole in dilated cardiomyopathy.

Coronary sinus blood flow (ml/100 g left ventricular [LV] mass/min) and coronary resistance (mean aortic minus LV mean diastolic pressures/coronary sinus blood flow, mm Hg/[ml/100 g/min]) were studied in 7 control patients and in 11 patients with severe dilated cardiomyopathy (DC) and normal coronary arteriograms. Basal coronary sinus blood flow was not different in the 2 groups. After intravenous administration of dipyridamole (0.14 mg/kg/min X 4 min), coronary sinus blood flow and dipyridamole/basal coronary sinus blood flow ratio were significantly (p less than 0.001) lower in the DC group than in the normal group (coronary sinus blood flow 188 +/- 48 vs 408 +/- 58, respectively; blood flow ratio 1.78 +/- 0.35 vs 4.01 +/- 0.56, respectively), and the coronary resistance was higher in the DC group than in the control group (0.39 +/- 0.15 vs 0.22 +/- 0.03, respectively, p less than 0.01). After administration of dipyridamole in patients with DC, no correlation could be found between coronary sinus blood flow and LV mean diastolic, mean aortic or coronary driving pressures, i.e., mean aortic minus LV mean diastolic pressures. Thus, in DC patients, neither an elevated LV diastolic pressure nor a low coronary perfusion pressure can totally account for the restriction of the coronary flow reserve after dipyridamole.

Adult↗

Decreased coronary reserve in primary scleroderma myocardial disease.

We assessed coronary reserve, by measuring the increase in coronary sinus blood flow (CSBF) after intravenous administration of dipyridamole (0.14 mg/kg/minute for 4 minutes), in 7 patients with primary scleroderma myocardial disease (PSMD) and in 7 control subjects. Coronary reserve was greatly impaired in PSMD: before administration of dipyridamole, CSBF was similar in patients with PSMD (89 +/- 32 ml/minute/100 gm, mean +/- SD) and in controls (100 +/- 15 ml/minute/100 gm); after dipyridamole infusion, CSBF was significantly lower in patients with PSMD (191 +/- 45 ml/minute/100 gm) than in controls (399 +/- 58 ml/minute/100 gm) (P less than 0.01). Six of the 7 patients with PSMD had angiographically normal epicardial coronary arteries and normal left ventricular function. Decreased coronary reserve may be an important contributor to the pathogenesis of primary scleroderma myocardial disease.

Adult↗

Cardiac sarcoidosis: reversion of myocardial perfusion abnormalities by dipyridamole.

A Tl 201 scan was performed on one young patient who met all of the criteria for the diagnosis sarcoidosis. A resting scan before treatment showed marked defects which were not resolved on the redistribution scan, thus leading to the diagnosis of cardiac sarcoidosis, which was also suspected from clinical signs. After dipyridamole infusion (0.142 mg/kg per minute over 4 min), his 201Tl scan was quite normal. Haemodynamic investigation showed a low coronary sinus blood flow with a low lactate extraction: these abnormalities were fully reversed by i.v. dipyridamole infusion. Afterwards, the patient was given oral dipyridamole (450 mg/day) over 4 weeks; at the end of this treatment, his resting 201Tl scan was quite normal. These results suggest that myocardial perfusion abnormalities in sarcoidosis may be reversible after pharmacological vasodilation. Thus, in order to assess cardiac sarcoidosis, a resting myocardial scan should be performed before a scan after dipyridamole infusion. These results may have clinical, pathophysiological and therapeutic implications with regard to cardiac sarcoidosis.

Adult↗