Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Ventricular Function, Right”

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 343 records · Page 19Linked to original sources

Right ventricular function 10 years after the Mustard operation for transposition of the great arteries: analysis of size, shape, and wall motion.

Biplane right ventriculograms were obtained in 18 symptom free patients 109 (26) months (mean (SD)) after Mustard repair of transposition of the great arteries. Ventricular size, shape, and wall motion were measured from the digitised angiograms and compared with previously published data on left ventricular function after anatomical correction of transposition of the great arteries, with right ventricular function in controls, and with patients before repair of tetralogy of Fallot. Global indices of ventricular function were depressed after Mustard repair and wall motion abnormalities were common. The presence of wall motion abnormalities in this group was associated with a reduction in ejection fraction and ventricular filling rates. In four of five patients in whom an appropriate preoperative angiogram was available a similar pattern of wall motion was seen before the Mustard operation, suggesting that preoperative events may be important in determining eventual outcome.

Child↗

New developments in echocardiographic methods to assess right ventricular function in congenital heart disease.

PURPOSE OF REVIEW: Evaluation of right ventricular (RV) function in patients with congenital heart disease (CHD) is an essential component of clinical management. The complex geometry of the RV makes this a challenging task and necessitates the use of alternative methods from those used to assess left ventricular (LV) function. Recent developments in echocardiographic techniques have enhanced our ability to accurately assess RV function. We focus this review on literature published since September 2003. RECENT FINDINGS: In this review we survey recent literature pertaining to advances in echocardiographic techniques used in assessing RV function. These new methods use two-dimensional echocardiography, Doppler echocardiography, tissue Doppler imaging (TDI), and strain rate imaging. Doppler techniques offer unique advantages for RV function in that they are independent of geometry and relatively independent of loading conditions. SUMMARY: Echocardiography can assess RV function in a reliable fashion in children and adults with congenital heart disease. Appropriate use of echocardiography can minimize the utilization of more invasive imaging modalities such as magnetic resonance imaging and can guide clinical decisions regarding the necessity of obtaining such imaging.

Echocardiography, Doppler↗

Closed mitral valvotomy and elective ventilation in the postoperative period: effect of mild hypercarbia on right ventricular function.

OBJECTIVES: It is customary to extubate patients immediately after closed mitral valvotomy. These patients often have deranged respiratory function caused by chronic lung congestion. The left ventricular function may also be subnormal after valvotomy in some patients. Therefore, elective ventilation for some duration in the postoperative period can be beneficial to these patients. This work is an attempt to find whether elective ventilation should be preferred over immediate extubation in these patients. DESIGN: A prospective randomized study. SETTING: The study was performed in a tertiary care hospital, and the patients are referred from the northern states of India. PARTICIPANTS: One hundred patients undergoing elective closed mitral valvotomy were included in the initial part of the study. Ten more patients were studied to evaluate the effect of mild hypercarbia on right ventricular function after closed mitral valvotomy. INTERVENTIONS: One hundred patients were divided into two groups of 50 each. Group 1 consisted of patients in whom the neuromuscular blockade was reversed at the end of surgery with neostigmine and atropine and the trachea was extubated. In group 2, the residual neuromuscular paralysis was not reversed and the patients were electively ventilated in the postoperative period for an average duration of 5 hours and 29 minutes +/- 1 hour and 58 minutes. In all the patients in both the groups, electrocardiogram, direct arterial blood pressure, and oxygen saturation were continuously monitored, and arterial blood gases were measured intermittently throughout the study period. Because the results showed that there was mild hypercarbia, 30 minutes after extubation in group 1, 10 more patients were studied to evaluate the effect of mild hypercarbia on right ventricular function after surgery. Patients were ventilated after surgery (F1O2 = 1) to maintain normocarbia (PaCO238.6 +/- 3.4 mmHg). Mild hypercarbia PaCO251.5 +/- 3.7 mmHg) followed by normocarbia (PaCO2 40 +/- 2.5 mmHg) was induced by adjusting the ventilator rate with a constant tidal volume. Standard hemodynamic measurements were performed at each stage. MEASUREMENTS AND MAIN RESULTS: Although all the patients maintained satisfactory and stable hemodynamics in the postoperative period, the PaCO2 at the end of 30 minutes of extubation was significantly higher in group 1 (48.1 +/- 5.3 mmHg) as compared with group 2 (40.2 +/- 4.3 mmHg, p < 0.001). Mild hypercarbia significantly increased pulmonary vascular resistance (p < 0.01), mean pulmonary arterial pressure (p < 0.001), right ventricular stroke work (p < 0.01), right ventricular systolic pressure (p < 0.01), and right ventricular end-diastolic pressure (p < 0.001). The effect was not totally reversible with CO2 washout as all parameters except right ventricular end-diastolic pressure and pulmonary vascular resistance continued to remain significantly higher when normocarbia was restored. The significant changes in systemic hemodynamics produced by hypercarbia were increases in cardiac index, mean arterial pressure, and pulmonary capillary wedge pressure. CONCLUSIONS: Avoidance of even mild hypercarbia, therefore, appears advisable in the early postoperative period because of potential impedence to right ventricular ejection. Continuous monitoring of end-tidal CO2 and frequent blood gas analyses should be practiced, and elective ventilation should be considered in patients with long-standing disease and pulmonary hypertension.

Adolescent↗

[Right ventricular function in chronic obstructive pneumopathy with pulmonary cardiopathy. A study at the altitude of Mexico City (2240 meters)].

Hemodynamic studies at rest, at exercise and during oxygen breathing (FiO2 99.6%) were carried out in 12 patients with severe chronic obstructive lung disease and cor pulmonale without congestion (NOCA). All lived in Mexico city (2,240 meters). Our data confirm the concept of a spectrum of ventricular behaviour, from normal to the one when right ventricular pressure abnormalities exist and blood flow is restricted. The right ventricular stroke work index was considerably higher due mainly to the increase in pressure work. Grossly right ventricular performance at altitude is not different from the described at sea level. When stroke index (SI) is related to the right ventricular end diastolic pressure (RVEDP), patients with NOC at sea level show depressed right ventricular function. This relation was different for NOC-A and it could be related indirectly to higher altitude. On the basis of the relation found for SI-RVEDP at our altitude we could not conclude that NOC-A show depressed right ventricular function.

Aged↗

Effects of inhaled nitric oxide on right ventricular function in endotoxin shock.

Sepsis has been shown to cause right ventricular (RV) dysfunction, which may be related to pulmonary hypertension and increased RV afterload. This study evaluates the effects of inhaled nitric oxide (NO), a selective pulmonary vasodilator, on RV function in a porcine model of endotoxemia. After an infusion of Escherichia coli lipopolysaccharide (LPS; 200 micrograms/kg), animals were resuscitated with saline (1 mL/kg/min) and observed for 3 hours while being mechanically ventilated (Fio2 = 0.6, tidal volume = 12 mL/kg, and peak end-expiratory pressure = 5 cm H2O). The LPS group (n = 5) received no additional treatment. The NO group (n = 5) received inhaled NO (40 ppm) for the last 2 hours. The control group (n = 5) received only saline without LPS. Hemodynamic data and blood gases were collected hourly for 3 hours. LPS resulted in pulmonary hypertension and RV dysfunction as indexed by a decreased RV ejection fraction and increased RV end-diastolic volume. Inhaled NO significantly decreased pulmonary hypertension and significantly increased RV ejection fraction and oxygen delivery without adverse effects. In conclusion, inhaled NO significantly improved pulmonary hypertension and RV dysfunction in a porcine model of endotoxemia and should be a useful therapeutic modality in selected septic patients.

Administration, Inhalation↗

[Right ventricular function in patients with dilated cardiomyopathy: assessment using krypton-81 m blood pool scintigraphy].

The characteristics and pathogenesis of right ventricular dysfunction in 14 patients with dilated cardiomyopathy (DCM) were investigated by equilibrium right ventricular blood pool scintigraphy using ultrashort-lifetime 81mKr. Thirteen patients with severe left ventricular dysfunction due to old anterior myocardial infarction (OMI) and nine normal subjects were used as controls. The right ventricular end-diastolic pressure and volume index, mean pulmonary arterial pressure, and total pulmonary vascular resistance index were almost the same in the DCM and OMI patients. The right ventricular ejection fraction was 44.2 +/- 6.0% (mean +/- SD) in DCM patients and 47.1 +/- 7.9% in OMI patients, both significantly lower than those in the normal subjects (54.5 +/- 5.3%), but with no difference between the two case groups. The right ventricular peak filling rate was significantly reduced in both case groups as compared with the normal subjects (2.46 +/- 0.81 EDV/sec). The reduction was significantly greater (p < 0.05) in the DCM group (0.97 +/- 0.47 EDV/sec) than in the OMI group (1.61 +/- 0.46 EDV/sec). Cineangiography showed that the wall motion abnormality of the interventricular septum was remarkable in OMI patients, but was relatively mild in DCM patients. Lesions of the interventricular septum may be of major importance in right ventricular dysfunction in OMI, while extensive severe damage to the right ventricular free wall may be important in DCM. 81mKr blood pool scintigraphy is useful in the study of the right ventricular systolic and diastolic function. The diastolic parameters are more sensitive indicators for evaluation of right ventricular function in DCM than the systolic parameters.

Cardiomyopathy, Dilated↗

Right ventricular thallium-201 kinetics in pulmonary hypertension: relation to right ventricular size and function.

Right ventricular ischemia occurs in experimental models of pulmonary hypertension. We analyzed right ventricular size and function and 201Tl uptake to determine if there was a relationship between 201Tl uptake and systolic function in 19 patients with pulmonary artery hypertension who were being evaluated for heart-lung transplantation. All patients had dipyridamole stress 201Tl scintigraphy, radionuclide angiography and echocardiography. In nine patients (Group 1), right ventricular ejection fraction was < 30% (mean 22% +/- 8%). In 10 patients (Group 2) it was > 30% (mean 45% +/- 11%). In Group 1, right ventricular 201Tl uptake in the lateral wall after dipyridamole was increased compared to Group 2 (40% +/- 7% versus 28% +/- 15% counts/pixel, p < 0.05) while left ventricular free wall uptake was similar. The ratio of right to left ventricular 201Tl uptake was increased in Group 1 versus Group 2 (0.81% +/- 0.30% versus 0.49% +/- 0.18%, p < 0.05). At 4 hr, right ventricular free wall 201Tl clearance was comparable, 51% +/- 13% versus 51% +/- 18% in Groups 1 and 2, respectively. No patient had perfusion abnormalities. Right ventricular ejection fraction was inversely related to dipyridamole stress right ventricular 201Tl uptake, r = -0.49, p < 0.03, s.e.e. = 13.6. Right ventricular 201Tl uptake was directly related to right ventricular wall thickness (r = 0.56, p = 0.18, s.e.e. = 10.4). Therefore, patients with more severe right ventricular systolic dysfunction have greater 201Tl uptake after dipyridamole stress, suggesting increased myocardial mass and possibly blood flow in response to hypertrophy. Patients with the most marked hypertrophy have impairment of right ventricular systolic function, independent of ischemia.

Adult↗

Effect of inhaled nitric oxide on right ventricular function in adult respiratory distress syndrome.

To determine whether inhaled nitric oxide (NO) affects pulmonary circulation, thereby improving right ventricular (RV) function in adult respiratory distress syndrome (ARDS), we studied 13 patients with both a lung injury severity score of 2.5 or more and a mean pulmonary artery pressure higher than 30 mm Hg. RV function was assessed by a thermodilution technique using a pulmonary artery catheter equipped with a rapid response thermistor before and 15 min after initiation of inhalation of NO (5 ppm). At baseline, stroke volumes were in a normal range (46 +/- 14 ml/m2), with a RV dilation (end-diastolic volume = 142 +/- 36 ml/m2). Inhaled NO was followed by an improvement in arterial oxygenation (PaO2/FIO2 = 103 +/- 47 versus 142 +/- 63, p < 0.05) and a drop in pulmonary artery pressure (36.1 +/- 4.5 versus 31.3 +/- 6.1 mm Hg, p < 0.01); stroke volumes and heart rates did not change. The resulting fall in pulmonary vascular resistance (211 +/- 43 versus 180 +/- 59 dyn-s/cm5, p < 0.05) was associated with an increase in RV, ejection fractions (32 +/- 5 versus 36 +/- 6%, p < 0.05), a trend toward decreased RV end-systolic (96 +/- 25 versus 85 +/- 19 ml/m2, NS) and end-diastolic (142 +/- 36 versus 131 +/- 27 ml/m2, NS) volumes, and a decrease in right atrial pressures (10.9 +/- 2.9 versus 9.6 +/- 3.2 mm Hg, p < 0.05). No relationship was seen between the improvement in arterial oxygenation and the decrease in pulmonary vascular resistance.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Inhalation↗

[Right ventricular function in patients with poor left ventricular function: studies in patients undergoing coronary artery bypass surgery].

In many patients, right ventricular (RV) dysfunction is due to RV infarction. In some patients, however, RV dysfunction may be secondary to the left ventricular (LV) dysfunction. In order to clarify the influence of poor LV function on RV function, RV ejection fraction (EF) was evaluated serially by thermodilution techniques (REF-1, Edwards Laboratories) in patients with LVEF less than 40% who underwent aorto-coronary bypass surgery with uneventful postoperative course. The patients were divided into four groups depending on the site of LV infarction; anterior (n = 13), inferior (n = 8), anterior + inferior (n = 16), and no infarction (n = 4). Control (n = 11) consisted of the patients with LVEF more than 60% and with no significant stenosis of the right coronary artery. Cardiac index, intracardiac pressures and amount of catecholamine used during postoperative course showed no significant differences among the groups including control. However, the groups except for the group of anterior infarction showed significantly low pre- and postoperative RVEF compared with control. Only the group of anterior infarction had almost normal RVEF. These results mean that RV dysfunction associated with inferior infarction remain long afterwards and that low LVEF due to anterior infarction caused little effect on RV function.

Aged↗

Assessment of right ventricular function in swine using sonomicrometry and conductance.

BACKGROUND: Assessment of right ventricular (RV) pressure-volume relations has been hampered by difficulty measuring instantaneous, absolute RV volume. Accordingly, several methods were tested for their ability to reflect relative RV volume and to determine changes in RV contractile state. METHODS: Swine (46 to 54 kg; n = 7) were anesthetized and instrumented to measure instantaneous RV pressure, septal-to-RV free wall diameter (SFWD), RV free wall segment length (FWSL), RV volume via conductance (CV), and pulmonary artery flow, the integral of which was used as the standard for stroke volume. Flow-derived stroke volume was correlated with the systolic change in CV, FWSL, and SFWD in the steady state after incremental volume loading and on a beat-to-beat basis during transient inferior vena caval occlusion. Contractility was altered by calcium and pentobarbital and assessed by preload recruitable stroke work (PRSW). RESULTS: Mean (+/- standard error of the mean) correlations (r) versus stroke volume during steady state conditions were 0.85 +/- 0.04 for FWSL, 0.83 +/- 0.04 for CV, and -0.04 +/- 0.24 for SFWD. Mean r values versus stroke volume during caval occlusions were 0.83 +/- 0.03 for FWSL, 0.85 +/- 0.04 for CV, and -0.03 +/- 0.31 for SFWD. Calcium increased mean PRSW slope compared with control using CV (20.3 +/- 2.6 versus 16.1 +/- 1.9 mm Hg; p < 0.05), and pentobarbital decreased mean PRSW slope compared with control using both CV and FWSL (11.3 +/- 1.0 versus 16.1 +/- 1.9 mm Hg, p < 0.05; and 11.9 +/- 2.1 versus 26.1 +/- 4.0 mm Hg, p < 0.05, respectively). There were no changes in PRSW slope with either calcium or pentobarbital using SFWD. The PRSW function was linear with both FWSL and CV but not with SFWD. CONCLUSIONS: In the normal heart, both FWSL and CV, but not SFWD, accurately reflect relative instantaneous RV volume and are thus useful for determining RV contractility by pressure-volume (pressure-dimension) indices.

Animals↗

Right ventricular function and pulmonary hemodynamics during dopamine infusion in burned patients.

Right ventricular (RV) function and pulmonary hemodynamics were studied in burned patients during dopamine infusion. The dopamine dose varied between 0 to 9.0 +/- 0.7, (mean +/- Se) micrograms/kg/min. No significant improvement in RV hemodynamics was observed as measured by RV end-diastolic volume index and RV ejection fraction. However, with infusion of dopamine, significant elevation in mean pulmonary artery pressures were noted, particularly in patients with pulmonary artery hypertension. Dopamine, in the doses administered, does not improve RV or systemic hemodynamics; in some burned patients, dopamine may have deleterious effects on the pulmonary circulation.

Adult↗

Influence of respiratory variations on right ventricular function.

Respiratory effort during inspiration, expiration, and the Valsalva manoeuvre changes right ventricular preload and afterload. On inspiration these changes should improve systolic emptying of a larger end diastolic volume and so increase the ejection fraction, whereas on expiration the reverse should be true. The resting right ventricular ejection fraction was measured by first pass radionuclide angiography with gold-195m (half life 30.5 s) in 17 individuals at maximal inspiration and expiration and in eight at rest and during the strain phase (phase 2) of the Valsalva manoeuvre. The right ventricular ejection fraction was significantly lower during expiration than during inspiration. There were, however, no significant differences in bolus duration or right ventricular transit time. The Valsalva manoeuvre, in contrast, significantly increased the ejection fraction and also significantly prolonged both the bolus duration and right ventricular transit time. The conformation of the bolus curves during the Valsalva manoeuvre suggested the development of tricuspid regurgitation. These data suggest that relative influences of venous return, pulmonary arterial pressure, pulmonary vascular resistance, and possible functional tricuspid regurgitation vary during inspiration, expiration, and the Valsalva manoeuvre and can affect the right ventricular ejection fraction. Changes in right ventricular function on exercise assessed by first pass radionuclide angiography must be interpreted with caution because maximal respiratory effort may alter the right ventricular ejection fraction independently of ischaemia or other non-ischaemic factors.

Blood Pressure↗

Three-dimensional assessment of two-dimensional technique for evaluation of right ventricular function by tricuspid annulus motion.

BACKGROUND: Measurement of tricuspid annulus motion (TAM) is an easy way to estimate right ventricular ejection fraction (RVEF). However the accuracy of two-dimensional (2-D) methods for analyzing the three-dimensional (3-D) structure of the tricuspid annulus has not been evaluated. OBJECTIVE: This study evaluated the accuracy with which 2-D measurements of TAM reflect RVEF using 3-D reconstructions of the heart at end diastole (ED) and end systole (ES). METHODS: 2-D echocardiographic studies were performed on 12 subjects and used to reconstruct the RV and tricuspid annulus in 3-D at ED and ES. Measurements of TAM from medial and lateral positions on the annulus were selected from the standard echocardiographic apical four-chamber view. The minimum and maximum possible TAM values, RV volumes, and movement of the apex of the heart along the trajectory of TAM were calculated from the 3-D reconstructions. RESULTS: TAM correlated highly with RVEF (r > or = 0.90). Values found by 2-D and 3-D techniques were not significantly different. Correcting TAM for apex motion did not improve correlation. Summation of medial and lateral TAM data increased correlation values slightly relative to lateral TAM alone. Regional aberrant contractility degraded the predictive value of TAM. CONCLUSION: Estimation of RVEF from 2-D echo measurement of TAM is accurate, especially when medial and lateral TAM are summed, except in patients with severe apical RV dysfunction.

Adult↗

Right ventricular function after pulmonary valve replacement in patients with tetralogy of Fallot.

PURPOSE: To assess the time course of right ventricular (RV) function improvement after pulmonary valve replacement (PVR) in patients 25.2 years +/- 7.0 after repair of tetralogy of Fallot. MATERIALS AND METHODS: The medical ethics committee approved this study, and informed consent was obtained. Cardiac magnetic resonance (MR) imaging was performed before, 7 months after, and 19 months after PVR in 25 consecutive patients with tetralogy of Fallot with a 1.5-T MR imager. RV function was assessed with gradient-echo sequences in the short-axis plane. Pulmonary flow was assessed with a velocity-encoded phase-contrast sequence. Paired t test was used to evaluate follow-up data. Independent samples t test was used to assess differences based on the presence of recurrent pulmonary regurgitation (PR). RESULTS: Mean indexed RV end-diastolic volume decreased from 166.9 mL/m(2) +/- 41.3 before PVR to 113.5 mL/m(2)+/- 35.7 (P < .001) at 7-month follow-up and 111.7 mL/m(2)+/- 41.1 (P = .46) at 19-month follow-up. The RV ejection fraction was corrected for PR and improved from 25.0% +/- 7.7 before surgery to 44.1% +/- 11.9 (P < .001) and 45.2% +/- 11.1 (P = .39), at 7- and 19-month follow-up, respectively. Recurrent PR after PVR was found in 11 patients; 14 patients did not have recurrent PR. Total reduction of indexed RV end-diastolic volume at 19 months follow-up was more prominent in patients who did not have recurrent PR than in patients who did have recurrent PR (P < .05). Furthermore, improvement of RV ejection fraction corrected for regurgitation was more marked in patients who did not have recurrent PR than in patients who did have recurrent PR (P < .05). CONCLUSION: In patients with tetralogy of Fallot, RV function improves rapidly after PVR and is sustained at 19-month follow-up in most patients; however, recurrence of PR after PVR appears to reduce recovery of RV systolic function.

Adolescent↗

Comparison of strain rate imaging for quantitative evaluation of regional left and right ventricular function after surgical versus percutaneous closure of atrial septal defect.

For the first time, peak systolic strain and strain rate (SR) were used to assess right ventricular (RV) and left ventricular (LV) regional function in children after transcatheter and surgical atrial septal defect (ASD) closure. Fifteen patients with successful ASD device closure (the ASD-D group, mean age 9 +/- 3 years), 15 age- and gender-matched patients with successful ASD surgical closure (the ASD-S group, mean age 9 +/- 3 years), and 15 age- and gender-matched controls were enrolled. Regional RV and LV longitudinal function was significantly reduced in the ASD-S group compared with controls in all the studied segments. The ASD-D group presented significantly (p <0.001) reduced strain and SR values only on the basal and mid segments of the septal wall compared with controls. In the ASD-D group, only the RV basal segment showed significantly (p <0.001) reduced strain and SR values compared with controls but significantly greater values than those measured in the ASD-S group. SR imaging indexes could provide new, noninvasive, clinically relevant insight into regional changes in RV function and support the transcatheter approach to ASD for its less negative impact on RV and LV function.

Balloon Occlusion↗

Effect of positive end-expiratory pressure on right ventricular function in humans.

The effect of positive end-expiratory pressure (PEEP) on right ventricular (RV) function in humans is complex. Previous studies have been limited in their interpretation by not defining either pericardial pressure (Ppc) or RV volumes. Accordingly, we measured RV volumes and pressures and Ppc as PEEP was increased from zero to 15 cm H2O in 12 patients after thoracotomy, using a pulmonary arterial catheter equipped with a rapid responding thermistor that allowed measurement of RV ejection fraction (ef), while Ppc was measured via a pericardial balloon catheter. RV end-diastolic volume (EDV) was estimated as the ratio of stroke volume (SV) to RVef, whereas RV end-systolic volume (ESV) was estimated as RV EDV-SV. Right atrial pressure (Pra) was defined as end-diastolic pressure, and pulmonary arterial pressures (Ppa), both peak and mean, were used as end-systolic pressures. PEEP increased Ppc, Pra, and lung compliance (Cl). Cardiac output also decreased but not significantly. Neither mean nor peak systolic Ppa, nor RVef was significantly altered by PEEP. There was no relation between either RV filling pressure (Pra-Ppc) and EDV or the change in RV filling pressure and EDV, although EDV varied significantly as PEEP varied for individuals (p less than 0.05). Similarly, there was no relation between Ppa and ESV when either mean or peak Ppa values relative to Ppc were used. The relations between EDV and both SV and RVef were weak (r = 0.54 and 0.55, respectively). RVef varied inversely with ESV (r = -0.77), although it showed no relation to transmural peak Ppa (r = 0.28).(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance↗

[Pulmonary circulation and right ventricular function in primary arterial hypertension].

Selected parameters of the pulmonary circulation and right ventricular performance were studied in 30 patients with primary arterial hypertension. Four patients belonged to the WHO class I, four to class I/II, 18 to class II and the remaining four to class III. Patients were eligible, if they were in sinus rhythm, without symptoms of left ventricular failure and diseases that night influence pulmonary pressures, and if drugs affecting cardiac performance could be withdrawn safely for 3 days. Ten healthy subjects served as control group. The mean pulmonary capillary wedge pressure and mean pulmonary artery pressure were similar in both groups. In contrast, the systolic pulmonary arterial pressure exceeded 30 mm Hg in 6 patients. Mean pulmonary vascular resistance was higher in examined patients than in the control group. Right ventricular end-diastolic pressure was above 5 mm Hg in as much as 50% of patients. Mean systolic ejection rate showed a tendency to decrease. The results indicate that part of patients with primary arterial hypertension exhibits disorders in the pulmonary circulation and right ventricular performance.

Adolescent↗