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Does dobutamine prevent the rise in left ventricular filling pressures observed during exercise after heart transplantation?

The purpose of the study was to evaluate whether infusion of a beta-adrenergic agonist, prior to and during exercise, could compensate for reduced sympathetic stimulation and correct deficient acceleration of left ventricular relaxation, so preventing a rise in left ventricular filling pressures during exercise after cardiac transplantation. Abnormal left ventricular relaxation kinetics can contribute to exercise-induced diastolic dysfunction of the cardiac allograft. This was demonstrated in transplant recipients whose acceleration of left ventricular relaxation during exercise was almost negligible recently and whose elevation of left ventricular end-diastolic pressure was high. Decreased adrenergic tone due to denervation could be involved in deficient left ventricular lusitropic response to exercise, because acceleration of left ventricular relaxation during exercise depends on adequate sympathetic stimulation. Serial supine bicycle exercise was performed at an identical workload in eight transplant recipients while in the control state and during continuous infusion of dobutamine, titrated before exercise to achieve a heart rate matching the heart rate at peak exercise in the control state. During control exercise, heart rate rose from 87 +/- 8 to 104 +/- 12 beats.min-1 (P < 0.05), left ventricular end-diastolic pressure from 14 +/- 5 to 20 +/- 4 mmHg (P < 0.05), left ventricular dP/dtmax from 1374 +/- 172 to 1854 +/- 278 mmHg.s-1 (P < 0.05), and cardiac output from 5.8 +/- 0.9 to 8.5 +/- 1.1 l.min-1 P < 0.05). There was a small but significant decrease of the time constant of left ventricular pressure decay (T) from 42 +/- 6 to 38 +/- 6 ms (P < 0.05). During dobutamine infusion, exercise resulted in a further increase in heart rate from 108 +/- 11 to 122 +/- 17 mmHg (P < 0.05), in cardiac output from 7.4 +/- 0.9 to 10.3 +/- 2.5 l.min-1 (P < 0.05), and in left ventricular dP/dtmax from 2181 +/- 220 to 2620 +/- 214 mmHg.s-1 (P < 0.05). These values were higher than the measurements obtained at the end of the control exercise run (P < 0.05). T failed to change (29 +/- 4 vs 27 +/- 5 mmHg, P > 0.05) and left ventricular end-diastolic pressure increased from 5 +/- 3 to 11 +/- 5 mmHg (P < 0.05) but remained lower than at the end of the control exercise run (11 +/- 5 vs 20 +/- 4 mmHg, P < 0.05). Compensation for reduced sympathetic stimulation by administration of dobutamine improves exercise haemodynamics in cardiac transplant recipients, but cannot prevent the exercise-induced rise in left ventricular end-diastolic pressure and correct deficient acceleration of left ventricular relaxation. Abnormal exercise haemodynamics after heart transplantation are therefore only partly related to deficient sympathetic stimulation.

Adrenergic beta-Agonists↗

Assessment of left ventricular diastolic function from quantitative electrocardiographic-gated 99mTc-tetrofosmin myocardial SPET.

We have developed new software which can evaluate left ventricular (LV) diastolic functional parameters from a quantitative gated SPET (QGS) program. To examine its accuracy, we compared these findings with the LV diastolic functional indices obtained from gated radionuclide ventriculography (RNV). Twenty-four patients were selected for this study. Gated SPET with technetium-99m tetrofosmin was performed and the QGS program was used with a temporal resolution of 32 frames per R-R interval. The LV volume of each frame was calculated and four harmonics of Fourier series were retained for the analysis of the LV volume curve. From this fitted curve and its first derivative curve, we derived LV systolic functional indices, e.g. ejection fraction (EF), peak ejection rate (PER) and time to PER (TPER), as well as LV diastolic functional variables, e.g. 1/3 filling fraction (1/3 FF), peak filling rate (PFR) and time to PFR (TPFR). Within 5+/-2 days, gated RNV was performed and diastolic functional parameters were determined by the same method. No significant difference was observed between the variables calculated by gated SPET and by gated RNV. There was a good correlation between EF, PER, TPER, 1/3 FF, PFR and TPFR determined by these two methods (EF: r=0.95, P<0.0001; PER: r=0.87, P<0.0001; TPER: r=0.84, P<0.0001; 1/3 FF: r=0.87, P<0.0001; PFR: r=0.92, P<0.0001; TPFR: r=0.89, P<0.0001). Bland-Altman plots did not reveal any significant degree of directional measurement bias in any of the comparisons of gated SPET data and RNV data. It is concluded that, in addition to the conventional LV systolic functional indices, our program accurately provides LV diastolic functional parameters from gated SPET. Also, this program will be useful for detecting LV diastolic dysfunction in various cardiac diseases before LV systolic dysfunction becomes evident.

Diastole↗

Left ventricular filling profiles in young white-coat hypertensive patients without hypertrophy.

This study was to assess left ventricular diastolic function in young white-coat hypertensive subjects < 50 years of age without hypertrophy. Hypertensive patients (systolic or diastolic blood pressure > or = 140 or > or = 90 mm Hg on all three visits) were defined as white coat if their average 24-hour blood pressure was < 127/81 mm Hg and at least 18/16 mm Hg lower than their average office values. We chose three groups balanced for sex, age, and body mass index: 50 sustained hypertensives, 25 white-coat hypertensives, and 25 normotensives. Office blood pressure was similar in white-coat and sustained hypertensives. Ambulatory blood pressure was comparable in white-coat hypertensives and normotensives. Compared with normotensives, white-coat hypertensives had more impaired diastolic function: increased ratio of late to early filling velocities, raised ratio of late to early time-velocity integral, prolonged deceleration time, and lengthened isovolumic relaxation time (P<.001, P<.001, P=.002, and P<.001, respectively). No difference was noticed between white-coat and sustained hypertensives. Compared with normotensives, white-coat hypertensives had higher values of plasma and urine norepinephrine (P<.001 and P<.001, respectively), plasma and urine aldosterone (P<.001 and P=.002, respectively), plasma renin activity (P=.04), total cholesterol (P=.001), and LDL cholesterol (P<.001). No difference was observed between white-coat and sustained hypertensives. Within white-coat hypertensives, 24-hour urinary aldosterone closely correlated with the ratio of late to early filling velocities (P=.008), and plasma and 24-hour urinary norepinephrine correlated well with total cholesterol (P=.037 and P=.006, respectively). No correlation was detected within the sustained hypertensives and normotensives. Heightened neurohumoral activity clearly supported the progression of diastolic dysfunction and metabolic abnormality in white-coat hypertensives.

Adult↗

Recovery of systolic and diastolic function after ablation of incessant supraventricular tachycardia.

We report a case of a 26-year-old woman who presented to our hospital with arrhythmia and heart failure. She had an incessant supraventricular tachycardia, which was not reversible with electrical cardioversion. Echocardiogram showed a severe LV systolic and diastolic dysfunction. After radiofrequency catheter ablation, LV function returned to normal. This article is intended to show a case with tachycardiomyopathy, which is considered the most frequently unrecognized curable cause of heart failure, and to demonstrate that early treatment allows the recovery to a normal LV systolic and diastolic function, preventing irreversible structural cardiac damage. It is very likely that some patients with idiopathic dilated cardiomyopathy and chronic atrial fibrillation or other chronic arrhythmia actually have a curable tachycardiomyopathy.

Adult↗

Afterload reduction therapy in patients following intraatrial baffle operation for transposition of the great arteries.

Patients with intraatrial baffle procedure for transposition of the great arteries (TGA) have diastolic dysfunction, decreased exercise capacity, stroke volume response and elevated systemic vascular resistance (SVR) during exercise. Angiotensin-converting enzyme (ACE) inhibitors improve exercise capacity in adults with congestive heart failure by improving diastolic function and decreasing SVR. We tested the hypothesis that ACE inhibitors decrease SVR and improve exercise capacity in patients after intraatrial baffle procedure for TGA. We studied the effects of enalapril in nine patients with TGA s/p intraatrial switch (mean age, 13.8 +/- 3 years) 7 to 21 years (mean, 12 +/- 4 years) after intraatrial baffle procedure. Enalapril (0.5 mg/kg/day, maximum dosage 20 mg bid) was administered for 12 months. Patients exercised using a cycle ergometer ramp protocol (0.25 W/kg/min) before enalapril (baseline), 1 month, 6 months, and 12 months after treatment initiation. Heart rate, blood pressure, cardiac output, respiratory rate, minute ventilation, oxygen consumption (VO2), total exercise time, work, and power were measured. SVR, cardiac index, and stroke volume index (SVI) were calculated. Two-tailed paired Student's t-test was used to compare data to those of normal control patients and the patients' baseline data. Patients had lower resting heart rate, cardiac index, maximum heart rate, cardiac index (CI), SVI, VO2, exercise time, work, and power and higher maximal SVR at baseline compared to normal control patients. There was no significant difference in total exercise time, work, power, VO2 (rest/peak), SVR, SVI, and CI after 12 months of therapy compared to patients' baseline values. We conclude that short-term (<1 year) use of enalapril does not improve exercise performance in patients with TGA in whom the intraatrial baffle procedure has been performed.

Adolescent↗

Diastolic function in various forms of left ventricular hypertrophy: contribution of active Doppler stress echo.

It has been known for a long time that healthy athletes can develop left ventricular hypertrophy with typical electrocardiographic and echocardiographic findings which lead to the definition of the athlete's heart, as a separate physiological feature. In some cases it is difficult to distinguish between pathological versus physiological myocardial hypertrophy. Diastolic dysfunction is an early sign in the temporal sequence of ischemic events in coronary heart disease. Similar changes occur in other types of heart disease due to arterial hypertension or inflammation processes. Diastolic function is changed even in idiopathic hypertrophic cardiomyopathies. In contrast to these groups of patients, diastolic function remains unchanged or is improved in healthy athletes depending on the type of training (isotonic or isometric exercise). In cases with borderline changes, examinations during physical stress (exercise testing) which provokes an oxygen demand/supply imbalance and consecutively impairs early diastolic filling could clarify if an underlying heart disease is present. Although the physiology of diastolic function is complex, the factors contributing to diastolic disturbances can be differentiated into intrinsic and extrinsic left ventricular (LV) abnormalities. Intrinsic mechanisms include a) impaired LV relaxation, b) increased overall chamber stiffness, c) increased myocardial stiffness and d) increased LV asynchrony. All these factors are part of pathological LV hypertrophy. Factors extrinsic to the LV causing diastolic disorders include a) increased central blood volume, which will increase left ventricular pressure without altering the LV pressure-volume relation, and b) ventricular interaction mediated by pericardial restraint, which may cause a parallel upward shift of the diastolic LV pressure-volume curve. Improved understanding of LV relaxation and filling helps to differentiate pathological and physiological myocardial hypertrophy. Ongoing heart disease of different types can be diagnosed early by stress Doppler echocardiography in relation to other clinical findings and symptoms of the patient.

Adaptation, Physiological↗

[Relations between blood insulin concentration, renin-angiotensin-aldosterone system and clinical picture of hypertension].

AIM: To analyse relationships between blood insulin concentration, renin-angiotensin-aldosteron system and clinical picture of hypertension. MATERIALS AND METHODS: Measurements of insulin, renin, aldosteron, angiotensin I, total cholesterol, HDLP cholesterol and triglycerides in the blood were made in 60 males with essential hypertension. The examination also included echo-CG, glucose tolerance test, Ketle's index estimation. RESULTS: Patients suffering from essential hypertension with borderline hyperinsulinemia (insulin within 5.7-12.7 mcU/ml) were characterized by a combination of blood hypertension with a metabolic disorder (obesity or defects in carbohydrate metabolism), activation of renin-angiotensin-aldosteron system and left ventricular diastolic dysfunction. Patients with essential hypertension and marked hyperinsulinemia (insulin exceeded 12.7 mcU/ml) had manifest metabolic syndrome (hypertension, obesity, disturbance of carbohydrate metabolism and hypertriglyceridemia), hyperactivity of renin-angiotensin-aldosterone system, elevated diastolic arterial pressure, remodelling of left ventricular myocardium with development of its concentric hypertrophy and impairment of the diastolic function. CONCLUSION: It is suggested that enhanced activity of renin-angiotensin-aldosterone system may underlie development of insulin-resistance and hyperinsulinemia. The latter plays a significant pathogenetic role in forming clinical picture of essential hypertension in insulin levels > 12.7 mcU/ml.

Adult↗

Myocardial injury and ventricular dysfunction related to training levels among nonelite participants in the Boston marathon.

BACKGROUND: Multiple studies have individually documented cardiac dysfunction and biochemical evidence of cardiac injury after endurance sports; however, convincing associations between the two are lacking. We aimed to determine the associations between the observed transient cardiac dysfunction and biochemical evidence of cardiac injury in amateur participants in endurance sports and to elicit the risk factors for the observed injury and dysfunction. METHODS AND RESULTS: We screened 60 nonelite participants, before and after the 2004 and 2005 Boston Marathons, with echocardiography and serum biomarkers. Echocardiography included conventional measures as well as tissue Doppler-derived strain and strain rate imaging. Biomarkers included cardiac troponin T (cTnT) and N-terminal pro-brain natriuretic peptide (NT-proBNP). All subjects completed the race. Echocardiographic abnormalities after the race included altered diastolic filling, increased pulmonary pressures and right ventricular dimensions, and decreased right ventricular systolic function. At baseline, all had unmeasurable troponin. After the race, > 60% of participants had increased cTnT > 99th percentile of normal (> 0.01 ng/mL), whereas 40% had a cTnT level at or above the decision limit for acute myocardial necrosis (> or = 0.03 ng/mL). After the race, NT-proBNP concentrations increased from 63 (interquartile range [IQR] 21 to 81) pg/mL to 131 (IQR 82 to 193) pg/mL (P<0.001). The increase in biomarkers correlated with post-race diastolic dysfunction, increased pulmonary pressures, and right ventricular dysfunction (right ventricular mid strain, r=-0.70, P<0.001) and inversely with training mileage (r=-0.71, P<0.001). Compared with athletes training > 45 miles/wk, athletes who trained < or = 35 miles/wk demonstrated increased pulmonary pressures, right ventricular dysfunction (mid strain 16+/-5% versus 25+/-4%, P<0.001), myocyte injury (cTnT 0.09 versus < 0.01 ng/mL, P<0.001), and stress (NT-proBNP 182 versus 106 pg/mL, P<0.001). CONCLUSIONS: Completion of a marathon is associated with correlative biochemical and echocardiographic evidence of cardiac dysfunction and injury, and this risk is increased in those participants with less training.

Athletic Injuries↗

[Assessment of left ventricular diastolic function by pulsed Doppler tissue imaging in patients with type 2 diabetes mellitus].

OBJECTIVE: To assess the value of pulsed Doppler tissue imaging (PW-DTI) in evaluating the left ventricular diastolic dysfunction (LVDD) in patients with type 2 diabetes mellitus (DM). METHODS: Seventy-seven type 2 diabetic patients and 43 healthy volunteers underwent PW-DTI and mitral inflow pulsed wave Doppler (MPWD). Six positions of the mitral annulus were measured by PW-DTI for early diastolic velocity (Em), end diastolic velocity (Am), Em/Am ratio. Early mitral inflow velocity (E), end mitral inflow velocity (A), left ventricular isovolumetric relaxation (IVRT) and E/A ratio were measured by MPWD. RESULTS: In the diabetic patients, Em, Em/Am and E/A ratios were significantly decreased and Am and A increased with prolonged IVRT. The two examination modalities showed a significant correlation between Em/Am and E/A. The detection rate of LVDD in the diabetic group was 94.81% by PW-DTI and 79.22% by MPWD. CONCLUSION: PW-DTI and MPWD show a significant correlation in assessment of the left ventricular filling, but the former displays better performance in sensitive and accurate diastolic function evaluation and provides early evidence for of diabetic cardiomyopathy of due to its potent ability in differentiation of false-normal presentations.

Adult↗

Characterization of left ventricular diastolic function in hypertension by use of Doppler tissue imaging and color M-mode techniques.

BACKGROUND: Abnormalities in left ventricular (LV) relaxation and/or increased filling pressures are indicators of LV diastolic dysfunction in patients with hypertension (HTN). The purpose of this study was to assess clinical use of pulsed wave Doppler, Doppler tissue imaging (DTI), and color M-mode (CMM) indices for determination of diastolic function in patients with HTN. METHODS: In all, 278 ambulatory patients with normal LV systolic function were grouped according to the presence of HTN with and without LV hypertrophy (LVH) (determined by the 2-dimensional area-length method) as follows: healthy control subjects (NC, n = 122), HTN without LVH (HTN, n = 70), and HTN with LVH (HTN+LVH, n = 86). Pulsed wave Doppler-derived measurements included transmitral E- and A-wave velocities, E/A ratio, and deceleration and isovolumic relaxation time intervals; DTI-derived early diastolic (Em) velocities were obtained at 4 LV annular sites. CMM-derived flow propagation velocity and the intraventricular pressure gradient were also calculated. Analysis of covariance adjusted for age and sex of diastolic indices was performed to compare the differences among groups. RESULTS: Only DTI-derived filling pressures demonstrated progressive statistically significant differences among all 3 groups (ie, HTN vs NC, HTN+LVH vs NC, and HTN vs HTN+LVH). However, CMM-derived flow propagation velocity and intraventricular pressure gradient indices were similar among the groups. CONCLUSION: DTI is a robust method compared with pulsed wave Doppler- and CMM-derived indices for the quantitative assessment of LV relaxation and filling pressures in patients with HTN.

Echocardiography, Doppler, Color↗

Diagnosis of coronary vasospasm by detection of postischemic regional left ventricular delayed relaxation using echocardiographic evaluation with color kinesis.

BACKGROUND: Coronary vasospasm has been diagnosed by invasive provocative procedures during coronary arteriography. It would be useful to have a reliable, noninvasive, and safe diagnostic method for coronary vasospasm. Regional left ventricular (LV) diastolic dysfunction may persist without systolic dysfunction after an episode of coronary vasospasm. Color kinesis (CK) has been recently developed to facilitate the echocardiographic evaluation of regional wall motion. HYPOTHESIS: Color kinesis may be useful for diagnosis of coronary vasospasm by detection of postischemic regional LV diastolic wall motion abnormality. METHODS: Fifty-one consecutive patients with the last chest symptom within 2 weeks (4 +/- 3 days) were studied echocardiographically. Regional fractional area change during the first 30% of LV filling time in percentage of the segmental end-diastolic area change (CK diastolic index) was used to identify diastolic endocardial motion asynchrony. RESULTS: After diagnostic coronary arteriography with spasm provocation, 26 patients were diagnosed with coronary spastic angina (CSA) and the other 25 with chest pain syndrome (CPS). Regional delayed relaxation (CK-diastolic index < or = 50%) or diastolic asynchrony had been observed in at least one region in 25 (96%) patients with CSA, whereas it had been noted in 2 (8%) patients with CPS. In 17 (65%) patients with CSA, it had been detected in multiple vascular territories, suggesting multivessel spasm. The diastolic asynchrony disappeared in CSA after a month of angina-free period. CONCLUSION: Analysis of CK images allows identification of regional LV delayed relaxation or diastolic asynchrony in patients with coronary vasospasm, differentiating them from patients with chest pain syndrome (sensitivity 96%, specificity 92%).

Acetylcholine↗

Mechanisms of exercise intolerance: insights from tissue Doppler imaging.

BACKGROUND: A decreased ratio of early to late diastolic mitral inflow velocities (E/A <1.0) reflects slowing of left ventricular (LV) relaxation. This finding is widely believed to indicate significant diastolic dysfunction. However, E/A <1.0 is common during normal aging and often is not associated with symptoms of heart failure. We asked (1) whether slowed LV relaxation is associated with exercise intolerance and (2) whether tissue Doppler imaging of the early diastolic mitral annular velocity (Ea) is helpful in understanding mechanisms of exercise intolerance. METHODS AND RESULTS: Patients (n=121) underwent echocardiography before maximal exercise testing. Fifty-nine subjects had E/A <1.0, and 36 subjects had E/Ea > or =10. Exercise capacity was similar in the population with a normal mitral inflow pattern and those with a slow relaxation pattern when E/Ea was <10. In contrast, the subjects with slow relaxation and E/Ea > or =10 had reduced exercise tolerance. Of all the echo and clinical parameters assessed, E/Ea had the best correlation with exercise capacity (r=-0.684, P<0.001) and was the strongest independent predictor of exercise capacity < or =7 METs by multivariate analysis (prevalence-corrected odds ratio=12.6, P<0.001). E/Ea continued to be strongly associated with exercise capacity in all age groups and in those with preserved or reduced systolic function. CONCLUSIONS: Of the subjects with slow LV relaxation, only those with E/Ea > or =10 have objective evidence of reduced exercise tolerance. These data suggest that elevated LV filling pressures rather than slow relaxation per se reduce exercise capacity.

Adult↗

Systolic and diastolic function in middle aged patients with sickle beta thalassaemia. An echocardiographic study.

OBJECTIVE: To evaluate the right and left ventricular systolic and diastolic function in middle aged patients with sickle beta thalassaemia. METHODS: Forty three patients with sickle beta thalassaemia were recruited for echocardiographic study while 55 controls, matched for age and sex, served as the control group. Parameters measured included: dimensions and wall thickness of left (LV) and right (RV) ventricle and left atrium, LV mass, and cardiac index. LV and RV contractility variables--ejection fraction, circumferential fibre shortening velocity, end systolic stress, end systolic stress/volume index ratio, mitral and tricuspid annulus systolic excursion, and Tei index--were also calculated. The study also evaluated parameters of RV and LV diastolic function including early and late atrioventricular flow velocities (E and A wave respectively), E/A ratio, deceleration time (DT), isovolumic relaxation time (IVRT) as well as pulmonary and hepatic veins systolic to diastolic (S/D) ratio. RESULTS: Chamber enlargement, greater LV mass index, cardiac index, and RV wall thickness were found in the anaemic group compared with controls. The LV and RV contractility variables of the patients were similar to controls. Conversely the LV and RV Tei index was significantly greater in the patient group. Diastolic dysfunction was present in the anaemic patients resulting from the increased LV and RV A-wave, the longer LVIVRT, RVIVRT, and RVDT, as well as the higher hepatic and pulmonary veins S/D ratio. CONCLUSIONS: The results show that in middle aged patients with sickle beta thalassaemia the diastolic function is abnormal in both ventricles but still more in RV, whereas the systolic function remains unchanged.

Blood Flow Velocity↗

Epidemiology and screening of asymptomatic left ventricular dysfunction.

The traditional approach to estimating heart failure prevalence has been based on signs and symptoms of heart failure; such prevalence estimates have been in the range of 2% of persons <or= 75 years of age. Newer approaches have focused on objective (echocardiographic) evaluation of systolic and diastolic function as well as on signs and symptoms. It is estimated that 4-5% of the population has depressed systolic function and approximately 5% has moderate to severe diastolic dysfunction. Since over half of these persons are asymptomatic, efforts are underway to determine whether simple techniques, such as measurement of plasma brain natriuretic peptide, will aid in early diagnosis of ventricular dysfunction.

Aged↗

Treatment of hypertension with perindopril reduces plasma atrial natriuretic peptide levels, left ventricular mass, and improves echocardiographic parameters of diastolic function.

BACKGROUND: Hypertension is a major independent risk factor for cardiac deaths, and diastolic dysfunction is a usual finding during the course of this disease. HYPOTHESIS: This study was designed to investigate the effects of chronic therapy with perindopril on left ventricular (LV) mass, left atrial size, diastolic function, and plasma level of atrial natriuretic peptide (ANP) in patients with hypertension. METHODS: Twenty four patients who had not been previously taking any antihypertensive medication and without prior history of angina pectoris, myocardial infarction, congestive heart failure, dysrhythmias, valvular heart disease, or systemic illnesses received 4-8 mg/day of perindopril orally. Echocardiographic studies were acquired at baseline and 6 months after the initiation of therapy. RESULTS: Systolic and diastolic blood pressure decreased from 174 +/- 19.7 and 107.5 +/- 7.8 mmHg to 134 +/- 10.6 and 82 +/- 6.7 mmHg, respectively (p < 0.001). Left ventricular mass decreased from 252.4 +/- 8.3 to 205.7 +/- 7.08 g and left atrial volume from 20.4 +/- 5.1 to 17.6 +/- 5.2 ml, respectively (p < 0.001). Transmitral Doppler early and atrial filling velocity ratio (E/A) increased from 0.69 +/- 0.06 to 0.92 +/- 0.05 m/s and plasma ANP level decreased from 71.9 +/- 11.7 to 35.3 +/- 7.8 pg/ml (p < 0.001). Reduction of LV mass correlated positively with a reduction in ANP levels (r = 0.66, p < 0.0005). CONCLUSIONS: Perindopril caused a significant reduction of LV mass, left atrial volume, and plasma ANP levels, as well as improvement in Doppler parameters of LV filling in this group of patients with hypertension.

Adult↗

Does digoxin still have a role in congestive heart failure?

The role of digoxin in the treatment of congestive heart failure is (CHF) being questioned. Digoxin continues to be the drug of choice for patients with atrial fibrillation in CHF. Large randomised trials have shown that digoxin (in addition to ACE inhibitors and diuretic) is beneficial in CHF due to systolic dysfunction, although it does not reduce mortality. Limited data suggest that digoxin benefit some, but not all patients with CHF due to left to right shunts. Digoxin does not benefit CHF due to diastolic dysfunction and it is not routinely recommended for prematures with patent ductus and CHF. The treatment with digoxin should be individualised.

Cardiotonic Agents↗

Evaluation of right ventricular early diastolic filling by cine nuclear magnetic resonance imaging in patients with hypertrophic cardiomyopathy.

Numerous studies have established abnormalities in systolic and diastolic function of the left ventricle in hypertrophic cardiomyopathy. A consistent feature of this disease is reduced diastolic function of the left ventricle, but little information is available regarding right ventricular function in this disease. Cine nuclear magnetic resonance (NMR) imaging has been found to be effective for measuring right ventricular volumes and therefore was used to assess early diastolic filling of the right ventricle in patients with hypertrophic cardiomyopathy. Right ventricular time-volume curves were obtained from cine NMR images in 10 patients with hypertrophic cardiomyopathy and 8 normal subjects. Right ventricular volume was calculated with use of Simpson's algorithm at approximately 18 phases of the cardiac cycle and, from the curve, peak filling rate and filling fraction during the first third of diastole were determined. In patients with hypertrophic cardiomyopathy, peak filling rate tended to be less (176 +/- 46 vs. 305 +/- 50 ml/s, p less than 0.01) and filling fraction decreased (39.5 +/- 13.8 vs. 74.5 +/- 13.3%, p less than 0.01) in comparison with values in normal subjects. Thus, analysis of right ventricular time-volume curves obtained by using cine NMR imaging demonstrated diastolic dysfunction of the right ventricle in hypertrophic cardiomyopathy.

Adult↗