Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Ventricular Function”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,441 records · Page 80Linked to original sources

Ventricular function following drug-induced regression of hypertensive left ventricular hypertrophy.

Drug-induced regression of left ventricular hypertrophy (LVH) due to arterial hypertension is generally accompanied by improved cavity filling because of changes in the structural and functional determinants of diastolic efficiency. In hypertensive patients in whom regression of LVH is achieved, systolic function also improves in the long term, at least when the therapeutic drug used is an ACE inhibitor. That the return to pretreatment blood pressures which occurs upon sudden withdrawal of medication is not accompanied by similar deterioration of ventricular function suggests regression of histological remodeling (i.e., not only a reduction in myocyte and interstitial volume, but also the amelioration of endothelial dysfunction and structural alterations in coronary microcirculation).

Journal Article↗

[Left ventricular function in post-endocarditis aortic insufficiency and aortic-annular ectasia].

BACKGROUND: The duration of valvular regurgitation is an important determinant of left ventricular function in the presence of severe volume overload. PURPOSE: To evaluate the effect of aortic regurgitation (aortoannullar dilatation vs. history of bacterial endocarditis) on left ventricular (LV) function. PATIENTS: Between February 1976 and January 1993 45 patients (mean; age 45 +/- 12 years) underwent diagnostic evaluation for clinical purposes. Patients were divided into three groups: group 1 consisted of 17 patients with normal LV function (controls), group 2 of 11 patients with severe aortic regurgitation due to aortoannullar dilatation (AAD) and group 3 of patients with severe aortic regurgitation and a history of bacterial endocarditis (BE). METHODS: LV function was assessed by biplane LV-angiography and simultaneous pressure recordings. The ejection fraction and peak systolic wall stress were calculated in all patients. Systolic and diastolic LV function was determined and compared within the three groups. RESULTS: Heart rate, mean aortic pressure and cardiac index were similar in the three groups. The mean aortic diameter was significantly increased in group 2 when compared to the other two groups (p < 0,001). Systolic function was significantly reduced in both groups with aortic regurgitation when compared to the control patients. The end diastolic pressure-volume relationship was shifted to the right in patients with aortic regurgitation, but only 3 patients with a history of bacterial endocarditis showed severe diastolic dysfunction. CONCLUSIONS: No hemodynamic differences were observed in patients with severe aortic regurgitation with regard to the etiology or time course of LV volume overload. However, 17% of the patients with a history of bacterial endocarditis had severe diastolic dysfunction, which is probably due to the faster development of volume overload after bacterial endocarditis.

Adult↗

Left ventricular function by echocardiography in children with fixed aortic stenosis.

Left ventricular function was evaluated echocardiographically within 24 hours of cardiac catheterization in 45 children with fixed aortic stenosis. Left ventricular systolic time intervals, mean velocity of circumferential fiber shortening, left ventricular end-diastolic volume and shortening fraction were evaluated. Some patients with severe aortic stenosis had a shortened preejection period, prolonged ejection time and increased mean velocity of circumferential fiber shortening in comparison with normal subjects, but these findings were not consistent within the group with severe aortic stenosis or apparent in patients with mild or moderate aortic stenosis. Left ventricular end-diastolic volume was smaller in children with severe obstruction than in normal children. Evaluation of the shortening fraction provided good separation of patients with significant obstruction from those with mild disease. Further, there was a linear correlation between the shortening fraction and the left ventricular-aortic gradient demonstrated at cardiac catheterization. This correlation was also of use in evaluating the response of patients to surgical relief of obstruction. Pre- and postoperative echocardiographic evaluation of the shortening fraction appears to provide a readily available noninvasive method of assessing the course and severity of obstruction in fixed aortic stenosis in children.

Adolescent↗

Non-invasive measurement of left ventricular function in coronary artery disease. Comparison of first pass radionuclide ventriculography, M-mode echocardiography, and systolic time intervals.

Fifty consecutive patients having had cardiac catheterisation for coronary artery disease also underwent testing by three non-invasive methods commonly employed for assessment of left ventricular function. These included the first pass radionuclide ejection fraction, fractional shortening of the M-mode echocardiographic left ventricular internal dimension, and pre-ejection period/left ventricular ejection time ratio derived from systolic time intervals (PEP/LVET). Linear correlations of these non-invasive measures with cineangiographic ejection fractions were calculated. The first pass radionuclide ejection fraction correlated best. Echocardiograms and systolic time intervals proved less versatile since 11 of 50 echocardiograms were technically not suitable for measurement and 11 of 50 systolic time intervals could not be used because of left ventricular conduction delays. Overall, radionuclide ventriculography proved to be the most accurate and practical of these non-invasive techniques in evaluating left ventricular function in this group of patients with coronary artery disease.

Adult↗

Left ventricular function is not impaired in weight-lifters who use anabolic steroids.

Recent reports suggest that anabolic steroid use might deleteriously affect left ventricular function. To examine this possibility, the present study measured left ventricular size and function with use of Doppler echocardiographic techniques in 23 weight lifters: 12 who were currently using anabolic steroids and 11 who reported that they had never used these drugs. Drug users had administered anabolic steroids to themselves for at least three cycles over the past year. All studies were interpreted by blind review and group assignment was confirmed by urine testing. Average age, years of exercise training and body weight, as well as heart rate and blood pressure at rest were similar in both groups. Cardiac dimensions (mean +/- SD) including left ventricular diastolic cavity diameter (57 +/- 3 vs. 56 +/- 5 mm), septal thickness (10 +/- 2 vs. 9 +/- 1 mm), posterior wall thickness (8 +/- 1 vs. 8 +/- 1 mm) and myocardial mass (149 +/- 27 vs. 135 +/- 21 g) did not differ between the anabolic steroid users and nonusers, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Fractal correlation properties of R-R interval dynamics and mortality in patients with depressed left ventricular function after an acute myocardial infarction.

BACKGROUND: Preliminary data suggest that the analysis of R-R interval variability by fractal analysis methods may provide clinically useful information on patients with heart failure. The purpose of this study was to compare the prognostic power of new fractal and traditional measures of R-R interval variability as predictors of death after acute myocardial infarction. METHODS AND RESULTS: Time and frequency domain heart rate (HR) variability measures, along with short- and long-term correlation (fractal) properties of R-R intervals (exponents alpha(1) and alpha(2)) and power-law scaling of the power spectra (exponent beta), were assessed from 24-hour Holter recordings in 446 survivors of acute myocardial infarction with a depressed left ventricular function (ejection fraction </=35%). During a mean+/-SD follow-up period of 685+/-360 days, 114 patients died (25.6%), with 75 deaths classified as arrhythmic (17.0%) and 28 as nonarrhythmic (6.3%) cardiac deaths. Several traditional and fractal measures of R-R interval variability were significant univariate predictors of all-cause mortality. Reduced short-term scaling exponent alpha(1) was the most powerful R-R interval variability measure as a predictor of all-cause mortality (alpha(1) <0.75, relative risk 3.0, 95% confidence interval 2.5 to 4.2, P<0.001). It remained an independent predictor of death (P<0.001) after adjustment for other postinfarction risk markers, such as age, ejection fraction, NYHA class, and medication. Reduced alpha(1) predicted both arrhythmic death (P<0.001) and nonarrhythmic cardiac death (P<0.001). CONCLUSIONS: Analysis of the fractal characteristics of short-term R-R interval dynamics yields more powerful prognostic information than the traditional measures of HR variability among patients with depressed left ventricular function after an acute myocardial infarction.

Adrenergic beta-Antagonists↗

Effect of ACE inhibitor trandolapril on life expectancy of patients with reduced left-ventricular function after acute myocardial infarction. TRACE Study Group. Trandolapril Cardiac Evaluation.

BACKGROUND: The survival benefit from the use of inhibitors of angiotensin-converting enzyme (ACE) in patients with acute myocardial infarction is usually presented in terms of risk ratios and lives saved per 1000 people treated. A more relevant way to present the extent of benefit would be in terms of an increase in life expectancy, but this approach has not previously been possible because of limited data on long-term outcome. We aimed to calculate the effect of trandolapril on life expectancy with follow-up data from the Trandolapril Cardiac Evaluation (TRACE) Study. METHODS: The TRACE study previously showed a significant survival benefit with trandolapril in patients with reduced left-ventricular function after an acute myocardial infarction who were treated for at least 2 years. We ascertained the survival status of all patients in the TRACE study in June, 1998, at which time they had been followed up for a minimum of 6 years. We estimated life expectancy as median lifetime, which was the time for 50% of the patients to have died. Change in life expectancy is expressed as change in median lifetime. Analysis was by intention to treat. FINDINGS: The life expectancy of patients was 4.6 years for those given placebo versus 6.2 years for those on trandolapril. Thus, for patients on trandolapril, median lifetime was increased by 15.3 months or 27% (95% CI 7 to 51). Analysis of follow-up after the end of the study indicated no decrease of this benefit during the course of double-blind treatment; continued use of trandolapril was recommended at study closure. INTERPRETATION: In patients with severely reduced left-ventricular function, long-term treatment with an ACE inhibitor during the critical period after myocardial infarction is associated with a substantial increase in life expectancy.

Adult↗

Left ventricular function in persistent pulmonary hypertension of the newborn. Computer analysis of the echocardiogram.

Regional and global left ventricular function was assessed in 23 neonates with persistent pulmonary hypertension using computer assisted analysis of their left ventricular echocardiograms and compared with that in 50 healthy neonates. End diastolic left ventricular dimension was normal and end systolic dimension increased while percentage left ventricular shortening and peak velocity of circumferential fibre shortening decreased indicating impaired systolic performance. The peak rate of increase in left ventricular diameter in early diastole was significantly decreased and the durations of the rapid filling and isovolumic relaxation periods were prolonged suggesting resistance to left ventricular filling due to changes in diastolic myocardial properties. This abnormal left ventricular cavity function may have been due to a combination of increased diastolic wall thickness, reduced percentage systolic wall thickening, increased relative wall thickness, and pronounced reduction in peak rates of systolic wall thickening and diastolic wall thinning Seven neonates with persistent pulmonary hypertension died, and of the three examined at necropsy all had left ventricular hypertrophy and two extensive subendocardial haemorrhage and infarction affecting the right and left ventricular papillary muscles. Thus left ventricular dysfunction appears to be a common feature in neonates with this disorder and may be readily detected using computer analysis of left ventricular echocardiograms. Unfortunately, no single echo measurement was useful prognostically. Left ventricular dysfunction in persistent pulmonary hypertension probably results from a combination of hypoxaemia, acidaemia, and pulmonary hypertension, and although it may contribute to the high mortality in this syndrome, a correlation between the severity of left ventricular dysfunction and clinical outcome could not be shown.

Computers↗

Right and left ventricular functional impairment and sleep apnea.

Obstructive sleep apnea may contribute to the development of pulmonary hypertension and RVF primarily through pulmonary vasoconstriction secondary to hypoxia. Several recent studies indicate, however, that intermittent apnea-related hypoxia is not sufficient to cause sustained pulmonary hypertension. These studies have been consistent in showing that pulmonary hypertension and RVF are almost invariably seen in the presence of diurnal hypoxia. Sustained pulmonary hypertension, therefore, appears to be associated with sustained hypoxia as is the case in COPD. Patients with OSA who have hypoxia while awake are, as a rule, obese and have mild-to-moderate diffuse obstructive airways disease. Thus, most cases of pulmonary hypertension in association with OSA result from a combination of OSA, obesity, and diffuse obstructive airways disease, a so-called overlap syndrome. However, from the therapeutic viewpoint, it is apparent that treatment of OSA by NCPAP or tracheostomy, in such cases, is usually sufficient to reverse pulmonary hypertension and RVF. More recent work has provided strong evidence that OSA can play a role in the pathogenesis of LV heart failure in patients with CHF of otherwise unknown etiology. It is likely that this occurs through a combination of increased LV afterload related to exaggerated negative Pit swings during obstructive apneas, to intermittent hypoxia, and to chronically elevated sympathoadrenal activity. Reversal of OSA by NCPAP in these patients may relieve LV heart failure. These findings add a new dimension to our understanding of the pathophysiologic effects of OSA on the cardiovascular system by demonstrating that the LV is a structure that may suffer functional impairment secondary to the stresses imposed by OSA. Finally, it has now become apparent that CSR in patients with CHF can cause symptoms of a sleep apnea syndrome when associated with intermittent hypoxia and arousals from sleep. Reversal of CSR during sleep by NCPAP can lead to alleviation of these symptoms and possibly to reduced cardiac dyspnea and LV systolic function as well. Taken together, this suggests that much more extensive use of polysomnography may be warranted in the investigation of cardiovascular disease. The reasons are compelling: sleep apnea disorders are common and eminently treatable conditions whose reversal can result in improved right and left heart function and symptomatic improvement in patients with impaired myocardial function.

Cheyne-Stokes Respiration↗

Echocardiographic features of impaired ventricular function in diabetes mellitus.

In order to study left ventricular diastolic function in diabetes mellitus, simultaneous echo- and phonocardiograms were recorded in 142 diabetics (free from heart disease), 20 normal subjects, and 16 patients with coronary artery disease. The resultant traces were digitised, and left ventricular relaxation and the rate and duration of cavity dimension increase and wall thinning were determined. Diastolic variables of left ventricular function were normal in 12 young diabetics with no complications. Significantly delayed mitral valve opening relative to minimum dimension and aortic valve closure was found in all other groups of diabetics. Forty-four diabetics with severe microvascular complications had significantly reduced peak rate and prolonged duration of wall thinning and dimension increase. The abnormalities were unlike those found in subjects with coronary artery disease. The extent of microvascular complications was significantly correlated to most variables of diastolic function. This relation was maintained in 31 diabetics with significant cavity dimension increase during isovolumic relaxation (incoordinate relaxation). In 42 juvenile onset patients there was good correlation between the duration of diabetes and most variables of diastolic function. These studies show that the primary cardiac abnormality in diabetic micro-angiography is a prolonged duration and reduced rate of posterior wall thinning with impaired left ventricular dimension increase, reflecting abnormal myocardial properties.

Adolescent↗

A two phase harmonic model for left ventricular function.

A minimal model for mechanical motion of the left ventricle is proposed. The model assumes the left ventricle to be a harmonic oscillator with two distinct phases, simulating the systolic and diastolic phases, at which both the amplitude and the elastic constant of the oscillator are different. Taking into account the pressure within the left ventricle, the model shows qualitative agreement with functional parameters of the left ventricle. The model allows for a natural explanation of heart failure with preserved systolic left ventricular function, also termed diastolic heart failure. Specifically, the rise in left ventricular filling pressures following increased left-ventricular wall stiffness is attributed to a mechanism aimed at preserving heart rate and cardiac output.

Biological Clocks↗

Chronic treatment with carvedilol improves ventricular function and reduces myocyte apoptosis in an animal model of heart failure.

BACKGROUND: Beta blocker treatment has emerged as an effective treatment modality for heart failure. Interestingly, beta-blockers can activate both pro-apoptotic and anti-apoptotic pathways. Nevertheless, the mechanism for improved cardiac function seen with beta-blocker treatment remains largely unknown. Carvedilol is a non-selective beta-blocker with alpha-receptor blockade and antioxidant properties. We therefore studied the impact of the effects of carvedilol in an animal model of end-stage heart failure. RESULTS: To test whether chronic treatment with beta-blockade decreases apoptosis, we treated myopathic turkeys with two dosages of carvedilol, 1 mg/kg (DCM1) and 20 mg/kg (DCM20), for four weeks and compared them to non-treated DCM animals (DCM0) and to control turkeys (CON). Echocardiographic measurements showed that non-treated DCM animals had a significantly lower fractional shortening (FS) when compared to CON (68.73 +/- 1.37 vs. 18.76 +/- 0.59%, p < 0.001). Both doses of carvedilol significantly improved FS (33.83 +/- 10.11 and 27.73 +/- 6.18% vs. 18.76 +/- 0.59% for untreated DCM, p < 0.001). DCM left ventricles were characterized by a higher percentage of apoptotic nuclei when compared to CON (5.64 +/- 0.49 vs. 1.72 +/- 0.12%, respectively p < 0.001). Both doses of carvedilol significantly reduced the number of apoptotic nuclei (2.32 +/- 0.23% and 2.36 +/-6% 1 mg and 20 mg/kg respectively). CONCLUSIONS: Carvedilol improves ventricular function. Furthermore, treatment with carvedilol decreased the incidence of apoptosis in cardiac myocytes from failing hearts at both doses. These data suggest that the inhibition of apoptosis with carvedilol may lead to improvement in ventricular function and may underlie a beneficial effect of beta-blockade independent of heart rate lowering effects.

Adrenergic alpha-Antagonists↗

Variable prognosis in congestive cardiomyopathy. Role of left ventricular function, alcoholism, and pulmonary thrombosis.

Prognosis of 36 patients with congestive cardiomyopathy was studied in relation to various clinical factors. Half life of the survival curve after overt heart failure was about 7 years. Although left ventricular function was a major determinant of clinical course in congestive cardiomyopathy in general, its relation to prognosis was variable according to the type of cardiac involvement. In peripartal cardiomyopathy and in a type of cardiomyopathy named subacute cardiomyopathy with pulmonary thrombosis in this paper, factor(s) other than left ventricular function, possibly including pulmonary thrombosis, may be operative as more important determinant of extremely poor prognosis in these subtypes. Alcoholic cardiomyopathy was also unique in its favorable prognosis in association with reversible cardiomegaly following abstention from alcohol.

Adult↗

The role of exercise-induced silent myocardial ischemia in patients with abnormal left ventricular function. A report from the Coronary Artery Surgery Study (CASS) registry.

To evaluate the significance of ischemic ST depression without anginal chest pain (silent ischemia) during exercise testing among patients with abnormal left ventricular function, the data on 121 such patients with proven coronary artery disease (CAD) from the Coronary Artery Surgery Study (CASS) registry were analyzed. The patients with silent ischemia (group 1) were compared to: 124 CAD patients with both ST depression and angina (symptomatic ischemia, group 2); 159 CAD patients with neither ST depression nor angina (no ischemia, group 3); and 37 patients without CAD (controls). Survival at 7 years with medical therapy was similar for groups 1 (55%) and 2 (60%), but was substantially better for group 3 (73%, p = 0.001). Among group 1 patients with silent ischemia, survival was related to the severity of CAD (p = 0.001). Patients with silent ischemia and three-vessel CAD had a poor 7-year survival rate (37%) when treated medically. A comparable but non-randomized group of patients with silent ischemia and three-vessel CAD who underwent coronary artery bypass surgery had a much better 7-year survival rate (83%, p less than 0.0001). These results suggest that among patients with CAD and abnormal left ventricular function, silent ischemia adversely affects survival and can identify a higher risk subset of patients whose survival might be improved after coronary bypass surgery.

Coronary Disease↗

Physical work capacity with rate responsive ventricular pacing (VVIR) versus dual chamber pacing (DDD) in patients with normal and diminished left ventricular function.

To determine the benefit of atrial contribution on work capacity in relation to left ventricular ejection fraction, we studied 17 patients (68 +/- 13 years) with dual chamber pacemakers (DDD) implanted for high degree atrioventricular (AV) block. In random order they were assigned to rate responsive ventricular (VVIR) and to atrial triggered ventricular (VDD) stimulation. Maximum oxygen uptake (max VO2), that correlates best with work capacity, was measured by spiroergometry at a respiratory quotient of 1.1 during treadmill exercise test. Left ventricular ejection fraction at rest was determined by radionuclide ventriculography during VDD-stimulation and an AV delay of 150 ms. There were no differences between these two pacing modes relating heart rate, blood pressure, minute ventilation, exercise duration and maximal work load. In eight patients with an ejection fraction > 50% (60 +/- 10%), but not in nine patients with an ejection fraction < 50% (41 +/- 10%), maximum oxygen uptake was significantly higher (P < 0.01) during atrial triggered ventricular pacing (1440 +/- 533 ml/min) compared with rate responsive ventricular pacing (1328 +/- 536 ml/min). Thus, rate responsive single chamber pacemakers largely enable the same work capacity as dual chamber pacemakers in patients with high degree AV block. Patients with normal left ventricular function may profit most from preserved AV synchrony as shown by the higher maximum oxygen uptake on exercise.

Adult↗

Left ventricular function and myocardial perfusion during dipyridamole infusion assessed by a single injection of 99Tcm-sestamibi in patients unable to exercise.

First-pass radionuclide ventriculography followed by myocardial single photon emission computed tomography (SPECT) with 99Tcm-methoxyisobutyl isonitrile (sestamibi) was performed at rest and during dipyridamole infusion in 42 patients with suspected coronary artery disease. The presence of coronary stenoses of > or = 50% diameter was compared with the presence of rest or dipyridamole-induced abnormalities in perfusion or left ventricular function. Radionuclide-determined left ventricular ejection fraction (LVEF) was highly reproducible and correlated well with LVEF derived from contrast left ventriculography. Left ventricular ejection fraction decreased significantly after dipyridamole infusion in patients with multivessel disease (58 +/- 10% versus 52 +/- 11%, P < 0.01). The sensitivity and specificity for the detection of patients with coronary artery disease were 85 and 75% by myocardial SPECT, and 47 (P < 0.01 versus SPECT) and 75% by LVEF, respectively. However, in patients with multivessel disease, the sensitivity of LVEF was not different from that of SPECT (72% versus 89%, P = ns). The sensitivity of LVEF was higher in patients with multivessel disease than in those with single-vessel disease (19% versus 72%, P < 0.01). Radionuclide ventriculography followed by myocardial SPECT with 99Tcm-sestamibi allows simultaneous evaluation of ventricular contractile function associated with perfusion abnormality during dipyridamole infusion and may enhance the functional description of myocardial ischaemia.

Adult↗

[Predictive factors of deteriorating left ventricular function after direct percutaneous coronary intervention for acute anterior myocardial infarction].

OBJECTIVES: To evaluate useful predictors for the deterioration of left ventricular function after direct percutaneous coronary intervention in patients with acute myocardial infarction. METHODS: This study included 96 consecutive patients with first acute anterior myocardial infarction reperfused successfully by direct percutaneous coronary intervention within 6 hr of the onset, who underwent left ventriculography in the acute (soon after reperfusion therapy) and chronic (20 +/- 8 days after onset) phases. The left ventricular ejection fraction (LVEF), and the difference in LVEF (delta LVEF) between the two stages were calculated. The patients were divided into two groups according to the delta LVEF (low delta LVEF group: delta LVEF < 0%, n = 30; high delta LVEF group: delta LVEF > or = 0%, n = 66). RESULTS: There were significantly more patients with diabetes mellitus (53% vs 18%, p = 0.0009), older age (73 +/- 11 vs 67 +/- 12 years, p = 0.003) and complete occlusion of the culprit artery (13% vs 35%, p = 0.03) in the low delta LVEF group than in the high delta LVEF group. Left ventricular end-diastolic volume index (LVEDVI: 75 +/- 14 vs 62 +/- 15 ml/m2, p = 0.002) in the chronic stage and delta LVEDVI(5 +/- 8 vs -3 +/- 14 ml/m2, p = 0.04) were significantly worse in the low delta LVEF group than in the high delta LVEF group. Multivariate analysis identified diabetes mellitus as the only independent predictor of reduction of LVEF (odds ratio 4.44, 95% confidence interval 1.27-15.52, p = 0.02). CONCLUSIONS: Some patients with acute anterior myocardial infarction treated by direct percutaneous coronary intervention had reduction of the LVEF. There was a close relationship between reduction of the LVEF and left ventricular remodeling. Diabetes mellitus was the most useful predictor of reduction of the LVEF.

Aged↗

Monitoring of right ventricular function using a conventional slow response thermistor catheter.

OBJECTIVE: To investigate whether determination of right ventricular end-diastolic volume (RVEDV) and right ventricular ejection fraction (RVEF) can be performed with reasonable accuracy and reproducibility using a conventional slow response thermistor pulmonary artery catheter (CPAC) applying an adaptive algorithm. DESIGN: To study RVEDV and RVEF simultaneously with pulmonary artery catheters equipped with slow and fast response thermistors (FRPAC) under a broad range of cardiac output. SETTING: Laboratory of Institute of Experimental Surgery, Technical University. ANIMALS: 11 anaesthetised piglets. INTERVENTIONS: Hypovolemia (V-) was induced by withdrawal of blood up to 50 ml/kg, hypervolemia (V+) was produced by retransfusing blood and adding up to 30 mg/kg hydroxyethyl starch. In 5 animals in phases V- and V+ beta-adrenergic stimulation was achieved with dobutamine. Finally pulmonary artery hypertension was induced by infusion of small air bubbles. MEASUREMENTS AND RESULTS: Cardiac output (CO), RVEDV and RVEF were determined simultaneously with FRPAC and CPAC placed in the same pulmonary artery branch. Measurements were repeated 8 times sequentially in steady state normovolemia. A total of 130 measurements could be analysed. The coefficient of variation was 6.7 +/- 4.2% for CO(FRPAC) and 4.6 +/- 1.7% for CO(CPAC); for RVEF it was 9.7 +/- 6.2% (FRPAC) and 9.9 +/- 3.9% (CPAC); for RVEDV it was 11.6 +/- 4.8% (FRPAC) and 8.54 +/- 3.2 (CPAC). Mean difference (bias) was 0.06 +/- 0.39 l/min for CO measured with both methods, 19 +/- 35 ml for RVEDV and -3.3 +/- 6.5% for RVEF. CO(CPAC) displayed a strong correlation to CO(FRPAC) (R = 0.97, p = 0.001) as well as RVEF (R for RVEF(CPAC) versus RVEF(FRPAC) = 0.90, p = 0.001). R for RVEDV(CPAC) versus RVEDV(FRPAC) was 0.67, p = 0.001. We conclude that this animal study demonstrates good agreement between RVEF and RVEDV obtained with catheters equipped with a fast response thermistor or with a conventional slow response thermistor allowing accurate monitoring of right ventricular function with a conventional pulmonary artery catheter.

Algorithms↗