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Biomedical subjects

R Lebeau

Publications and source records attributed to R Lebeau.

At least 19 recordsLinked to original sources

Effects of trandolapril on the sympathetic tone and reactivity in systemic hypertension.

Hemodynamic and autonomic evaluations were carried out after 2-3 weeks of treatment with placebo and at the end of 4 weeks of treatment with an angiotensin converting enzyme (ACE) inhibitor, trandolapril, 2 mg/day in 18 hypertensive patients (average age, 48 +/- 2 years) of either sex. This treatment lowered the mean arterial pressure in the whole group from 112 to 105 mm Hg (p < 0.05) without significant changes in basal heart rate or norepinephrine (NE) and epinephrine plasma levels. Based on daytime ambulatory blood pressure monitoring, the patients were separated into 2 equal groups of 9 patients: the better responders (R), with an average decrease in mean arterial pressure of 12 mm Hg, and the lesser responders (NR), with an average fall of mean arterial pressure of 2 mm Hg. Before treatment, the R group had a higher resting heart rate, a lower cardiac output (-16%), and a higher peripheral resistance (+22%) than the NR group (difference not significant). Moreover, the R group was also observed to have a 33% higher plasma NE level (p < 0.05) in the supine position, associated with a 52% higher NE response to standing (p < 0.05), and a 40% lower number of beta-adrenergic receptors on lymphocytes, suggesting a higher sympathetic tone and reactivity in that group. Following treatment with the ACE inhibitor, heart rate and plasma NE levels were not altered significantly in either group, suggesting a blunting of the baroreflex response concomitant with the lowered blood pressure, especially in the R group.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

[Traumatic tricuspid insufficiency with a right-to-left shunt and heart luxation].

Traumatic tricuspid insufficiency (TTI) with a right-to-left shunt through a patent foramen ovale associated with a cardiac herniation was identified in a 39-year-old man with severe hypoxemia. All reported cases of TTI with a right-to-left shunt are reviewed, the technical aspects of repair described and the physiologic mechanisms discussed.

Adult

[Heart-skin syndrome and cardiac myxoma: presentation of a case and clinical experience of 17 years].

Between 1971 and 1988, cardiac myxoma was identified in 13 (0.003%) of 4000 patients who underwent open-heart surgery at the hôpital du Sacré-Coeur in Montreal. One patient with multiple right atrial tumours also had abnormal cutaneous pigmentation compatible with the recently identified syndrome of "Carney's complex." This syndrome has also been associated with endocrine abnormalities such as primary nodular adrenal hyperplasia, with or without Cushing's syndrome. The authors review the literature and compare the findings with their experience in the surgical treatment of cardiac myxomas.

Adult

Abnormal cardiovascular reactivity in borderline and mild essential hypertension.

Cardiovascular and hemodynamic reactivity was evaluated with M-mode echocardiography, phonocardiography, and carotidography in correlation with circulating catecholamine levels in 25 normotensive subjects, 15 borderline hypertensive patients, and 42 mildly hypertensive patients during isometric exercise at 30% of the maximum force for 3 minutes. At rest, norepinephrine and epinephrine levels were significantly higher, and the cardiac index was similarly increased in both groups of hypertensive patients, but the cardiac mass index was significantly increased only in the mildly hypertensive group. During isometric exercise, the sympathoadrenal reactivity as well as the pressor and chronotropic responses were similar in normotensive subjects and both groups of hypertensive patients. However, the variations in blood pressure were achieved through totally different hemodynamic mechanisms in normotensive subjects and hypertensive patients. In normotensive subjects, the increase in blood pressure could be linked mainly to an increase in cardiac contractility and performance, whereas in either group of hypertensive patients, the increase in blood pressure was mainly associated with an increase in peripheral resistance. These observations are consistent with the hypothesis of a blunted beta-adrenergic reactivity and a predominance of alpha-adrenergic vascular reactivity in borderline and mildly hypertensive patients. This phenomenon, which appears to be unrelated to age or severity of hypertension, could be an important mechanism underlying the development of hypertension in humans.

Epinephrine

Chronic effects of diltiazem on the hemodynamic and sympathoadrenal tone in responsive and nonresponsive hypertensive patients at rest and during isometric exercise.

The objective of this study was to identify hemodynamic and sympathetic parameters that could be predictive of the hypotensive response to diltiazem (DTZ). Parameters of cardiovascular functions were measured from M-mode echocardiography and the index of sympathoadrenal tone was given by circulating catecholamine levels in 25 normotensive subjects and in 19 mild-to-moderate hypertensive patients before and after 2 months as well as 12 months (responders only) of treatment with DTZ (SR 120 or 180 mg b.i.d.). The responder (R) subgroup (63% of total population) consisted of patients who showed a decrease in mean arterial pressure (MAP) greater than or equal to 5 mm Hg (day average) by ambulatory blood pressure (BP) monitoring. Before treatment, R patients were characterized by higher circulating norepinephrine (NE) levels and by hyperkinetic cardiac functions [increased heart rate (HR), cardiac index (CI), and mean velocity of circumferential fiber shortening, p less than 0.05] while peripheral resistance was normal. In contrast, nonresponders (NR) were characterized by higher peripheral resistance (p less than 0.05) and normal cardiac functions. Following treatment, hyperkinetic cardiac functions were normalized but the peripheral resistance was unchanged in the R subgroup whereas in the NR subgroup, cardiac parameters were slightly increased and the peripheral resistance was normalized. During isometric exercise, cardiac performance was found to be impaired (p less than 0.05) and the increase in peripheral resistance was greater (p less than 0.05) in the R subgroup before treatment, whereas those responses were normal in the BR group.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands

Sustained beneficial effect of a seventy-two hour intravenous infusion of nitroglycerin in patients with severe chronic congestive heart failure.

To determine whether a 72-hour infusion of nitroglycerin produces hemodynamic improvement in patients with severe congestive heart failure and to assess the contributing role of various possible causes of hemodynamic tolerance to nitroglycerin, 19 patients received an infusion of nitroglycerin 1.5 micrograms/kg/min for 72 hours. In a subgroup of patients (n = 10), there was an increase in stroke work index and a decrease in ventricular filling pressures throughout the infusion and even after it was discontinued. Tolerance to the hemodynamic effects of nitroglycerin was partially reversed 8 hours after the infusion was stopped. Neurohumoral changes occurred but appeared to play only a minor role in the development of nitroglycerin tolerance. However, hematocrit fell 9 +/- 5%, which suggests that an increased intravascular volume contributed to tolerance. In summary: (1) a 72-hour infusion of nitroglycerin improves ventricular function in some patients with severe heart failure; (2) volume shifts from the extravascular to the intravascular compartments may, at least in part, be responsible for nitroglycerin tolerance; and (3) reflex neurohumoral activation may also play a small role in nitrate tolerance.

Administration, Sublingual

The sympatho-adrenal tone and reactivity in human hypertension.

In the last two decades, remarkable advances have permitted a better understanding of the modulation of sympathetic tone and reactivity at the sympathetic nerve and at the effector cell levels. In man, several indirect approaches have permitted to suggest the possibility of increased sympathetic nerve activity and reactivity in an important subgroup of essential hypertensive patients. The demonstration of significant correlations between circulating levels of sympathetic transmitters and various parameters of cardiovascular functions supports the hypothesis of a participation of the sympathetic system in the maintenance of an elevated blood pressure in those patients. Moreover, several experimental evidences have indicated that the sensitivity of cardiovascular effector cells may be altered in hypertensive patients. The blunted beta receptor responsiveness and the normal or enhanced alpha receptor responsiveness which were observed suggest the possibility of an imbalance between adrenergic receptor functions in hypertension, which may explain the preferential alpha 1 modulation of blood pressure through changes in peripheral resistance in hypertensive patients. Such an abnormality could contribute to the development of cardiac and vascular wall hypertrophy during the evolution of hypertension. These studies therefore suggest that a variety of sympathetic dysfunctions could play a role in the development, maintenance and evolution of human essential hypertension.

Adrenal Glands

Sympatho-adrenal and cardiovascular responses during hand-grip in human hypertension.

Circulating norepinephrine and epinephrine levels were correlated with echocardiographic indices of cardiovascular function during isometric exercise (hand-grip at 30% of maximum force for 3 minutes) in 19 patients with mild essential hypertension and 9 normotensive subjects. At the end of the third minute of exercise, plasma norepinephrine and epinephrine, blood pressure and heart rate, increased significantly and similarly in both groups of patients. In contrast, peripheral resistance tended to increase in hypertensives but tended to decrease in normotensives. Moreover, indices of ventricular function increased in normotensives but decreased in hypertensives. At the end of the exercise, systolic and diastolic blood pressures were directly correlated with epinephrine levels in normotensives but were correlated only with norepinephrine levels in hypertensives. On the other hand, norepinephrine and epinephrine levels were inversely correlated with changes in indices of left ventricular performance in hypertensive patients only. These results demonstrate that during isometric exercise, the increase in blood pressure in normotensives is associated with a sympatho-adrenal activation of cardiac performance and contractility, while in hypertensives the increase in blood pressure results mainly from an increase in peripheral resistance associated with a reduction in cardiac performance and contractility, despite a similar sympatho-adrenal activation in both groups. These differences in the hemodynamic responses may be compatible with the hypothesis of beta-adrenoceptor desensitization or structural alterations of the cardiovascular system in hypertensive patients.

Adrenal Glands

Abnormalities in the regulation of sympathetic activity in human hypertension.

Various biochemical, pharmacologic, and physiologic techniques were used to evaluate the sympathetic tone and reactivity in labile and sustained hypertension in humans. The results of these studies suggest the existence of an important subgroup of hypertensive patients characterized by increased basal sympathetic tone and reactivity to standing. Such abnormalities could be the result of various dysfunctions, involving the activity of central and peripheral cardiovascular sympathetic fibers, the presynaptic modulation of sympathetic fibers (including the interaction with the parasympathetic system), the inactivation of circulating norepinephrine, and the sensitivity of the efferent cells. The increase in circulating norepinephrine in a group of hypertensive patients seems to reflect a functional increase in the sympathetic tone as shown by the presence of hyperkinetic cardiac functions in hyperadrenergic patients (elevated catecholamine levels), while cardiac functions are normal in normoadrenergic patients (catecholamine levels within normal range). Moreover, the better hypotensive response, combined with normalization of the basal and reactive circulating norepinephrine levels following beta-blockade in hyperadrenergic hypertensive patients, strongly supports the participation of the sympathetic system in the maintenance of hypertension in those patients. The identification and characterization of this subpopulation of patients may be helpful in the development of more rational therapeutic approaches and could eventually permit us to devise better predictors of outcome in hypertension.

Blood Pressure

Echocardiographic assessment of left ventricular performance before and after marathon running.

Echocardiography was used to indirectly assess the effects of marathon running on myocardial performance. Thirteen marathon runners (mean +/- SEM:30 +/- 1.6 years) were submitted to a resting echocardiographic examination before racing and during early recovery from marathon racing. Indices of left ventricular performance were computed from M-mode recordings of left ventricular dimensions and aortic valve motions. Comparison of basal and post-marathon indices of left ventricular performance showed no significant differences in either pre-ejection period (PEP), left ventricular ejection index (LVEI), fractional shortening (% delta D), ejection fraction (EF), or mean rate of circumferential fiber shortening (mVcf). Cardiac output (Qc) computed from left ventricular end-diastolic (LVEDV) and end-systolic volumes (LVESV) were significantly higher following marathon running (4.9 +/- 0.4 to 6.7 +/- 0.7 L/min) because of a marked increase in resting heart rate (HR) (58 +/- 3 to 76 +/- 3 bpm). A significant decrease in systolic blood pressure (118 +/- 4 to 108 +/- 3 mm Hg), associated with a slight reduction in calculated total peripheral resistance was also observed after the race. These circulatory adjustments probably reflect thermoregulatory activity that allows a greater blood flow to the skin for heat dissipation, as well as persistence of reactive muscle hyperemia. Echocardiographic evidence suggests that marathon running does not lead to marked impairments in left ventricular performance. However, the absence of change in the end-systolic volume, despite a marked reduction in cardiac afterload, may suggest a slight alteration in contractility that could not be detected with the use of echocardiography.

Adult

Left ventricular dimensions following training in young and middle-aged men.

To document the effects of endurance training upon left ventricular dimensions, an echocardiographic examination was performed on 11 young (19 +/- 1 years) and 13 middle-aged (40 +/- 3 years) subjects before and after a 20-week endurance training program. The maximal working capacity was increased by 28% and 27% in young and in middle-aged subjects, respectively. Following training, the left ventricular posterior wall and septal thickness in diastole were unchanged both in young (10.1 +/- 0.2 mm and 9.0 +/- 0.2 mm, pre-; 10.1 +/- 0.2 mm and 9.3 +/- 0.3 mm, post-) and in middle-aged subjects (10.0 +/- 0.3 mm and 10.2 +/- 0.3 mm, pre-; 9.7 +/- 0.2 mm and 10.1 +/- 0.2 mm, post-); the left ventricular end-diastolic internal diameter was unchanged in middle-aged subjects (47.8 +/- 0.9 mm, pre-; 48.1 +/- 1.0 mm, post-) but was significantly increased in young subjects (47.8 +/- 1.0 mm, pre-; 49.9 +/- 1.0 mm, post-) (P less than 0.05). These data could suggest that the left ventricular adaptation to training decreases with age. However, the decrease in resting heart rate observed in young subjects (68 +/- 3 to 60 +/- 2 beats X min-1) (P less than 0.05) but not in middle-aged subjects (63 +/- 3 and 65 +/- 3 beats X min-1) could also increase diastolic filling time and explain the small left ventricular end-diastolic enlargement found in the young subjects.

Adult

[Use of echocardiography in the diagnosis of pulmonary hypertension].

There are few data regarding the sensitivity and specificity of the pulmonic valve echogram in the detection of pulmonary hypertension (PHT). In the present study, simultaneous pulmonic echograms were evaluated in 40 patients with normal pulmonary artery pressure and 24 with PHT (mean pressure greater than 20 mmHg). The A wave depth (Amax) was 4.0 plus or minus 1 mm (2-6 mm) in normals but was (1.05 plus or minus 0.2 mm) (p less than 0,001) in PHT and was absent in 5 of 24 PHT patients with a mean pulmonary artery pressure (MPAP) greater than or equal to 35 mm. The ef slope in normals was 22 plus or minus 1.8 mm and 7.1 plus or minus 2 mm (p less than 0.01) in patients with PHT. A negative slope was observed in 4 patients with severe PHT (MPAP) greater than or equal to 40 mm, but never in normals or in patients with mild PHT. The opening velocity (OV) was significantly higher in PHT patients 363.2 plus or minus 19.3 verus 293 plus or minus 7.3 mm/sec (p less than 0.01). Normal values were found in patients with moderate to severe PHT but an OV greater than or equal to 450 mm/sec was not encountered within the normal group. A mid-systolic notch was observed in 10 patients with PHT of which 9 with a MPAP greater than or equal to 35 mmHg. The maximum systolic excursion of the pulmonary valve in both groups did not differ significantly (13.3 plus or minus 0.5 vs 12.8 plus or minus 0.3). Even less specific, the systolic intervals (PEP/ET), were raised greater than or equal to 0.30 in 12 out of 15 with PHT. In conclusion, the reduction or disappearance of Amax with sinus rhythm, a flattening or negativation of ef slope and the presence of a mid-systolic notch were found to be the 3 most reliable criteria to detect and quantify PHT.

Adolescent

Electro- and echocardiographic study of the left ventricle in man after training.

Fourteen sedentary middle-aged men underwent a chest X-ray, a 12 lead ECG, a VCG, and an echocardiographic examination prior to and following 5 months of training a moderately severe intensity, on a cycle ergometer. No modification in the X-ray cardiac profile was observed following training. Some electrocardiographic (R wave amplitude in V5 and V6 and Sokolow index: SV1 + RV5 or V6) and vectorcardiographic (maximal QRS vector amplitude, maximal spatial QRS vector, and R wave amplitude) indices of left ventricular hypertrophy were slightly but significantly increased following training. The echocardiographic measurements in diastole (septal and posterior wall thickness, left ventricular internal diameter, and left ventricular mass) were unchanged after training. Results suggest that electrical changes may not provide adequate indications of left ventricular morphological modifications. The lack of echocardiographic evidences of left ventricular hypertrophy suggest that: (1) training does not necessarily induce left ventricular hypertrophy; (2) the large heart sometimes observed in athletes may be the result of a genetic factor or of a prolonged and very intensive training pursued since a very young age, over a number of years; and (3) left ventricular enlargement probably plays a minor role in the increase in aerobic capacity following training.

Echocardiography