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Significance of increased atrial pressure on stroke volume during atrial fibrillation in anaesthetized pigs.

During atrial fibrillation synchronized atrial contraction is lost and cardiac output declines. Concomitantly, atrial pressure increases. The significance of the increase in atrial pressure on stroke volume was examined before and after blood volume expansion. Atrial fibrillation was induced by rapid atrial pacing in seven anaesthetized, open-chest pigs. The increase in right atrial pressure subsequently was counteracted by an appropriate constriction of the inferior vena cava. To avoid the confounding effect of a rapid and irregular heart rate, ventricular rate was kept constant by separate His bundle pacing after complete atrioventricular block. When atrial fibrillation was induced, right and left atrial pressure at the top of the v-wave increased both during normovolaemia and during hypervolaemia. Concomitantly, stroke volume declined. When the increase in atrial pressure was prevented during atrial fibrillation, stroke volume declined further: by 35 (21-50) and 9 (2-17)% (difference: P = 0.01), during normo- and hypervolaemia, respectively. Thus, the increase in atrial pressure counteracts the decline in stroke volume after induction of atrial fibrillation and thereby represents an important compensatory mechanism. This mechanism is more important with normal blood volume than during hypervolaemia.

Animals↗

Absence of right ventricular isovolumic relaxation in open-chest anesthetized dogs.

During the left ventricular (LV) pump cycle, peak negative first derivative of pressure vs. time (dP/dt) occurs very close to the end of LV ejection, and there is a well-defined isovolumic relaxation period. Despite similarities between the right ventricular (RV) and LV pump cycles, recent studies indicate uncertainty as to whether peak negative RV dP/dt occurs simultaneously with RV end ejection and whether there is an isovolumic relaxation period during the RV pump cycle. To study these questions, we recorded relative timing of peak negative RV dP/dt, RV end ejection, and right atrial-RV pressure crossover in the open-chest anesthetized dog. The data demonstrate that peak negative RV dP/dt occurs an average of 60 ms before end ejection and that there is no RV isovolumic relaxation period. These findings have implications for the possible use of peak negative RV dP/dt as a marker of RV end ejection and for how time constants of pressure decay obtained during RV relaxation can be interpreted.

Anesthesia↗

Do cardiac neurons play a role in the intrinsic control of heart rate in the rat?

Three experiments were performed to see whether cardiac neurons contribute to the intrinsic control of heart rate in right atria of adult rats. The intrinsic heart rate response (IRR) was examined by raising right atrial pressure from 2 to 8 mmHg for 3 min. In isolated preparations of the right atrium, the IRR was not significantly altered by the addition of either 1 microM atropine (n =6; control +19+/- 3 min(-1) ; atropine+18+/-3 min(-1); (mean /+/-S.E.M.)) or 1 microM propranolol (n = 5; control +22+/- 4 min(-1); ; propranolol +21+/-3 min(-1); ). Tetrodotoxin (0.5 microm) had no effect on the IRR (n = 6; control +37+/-5 min(-1); tetrodotoxin 38+/-5 min(-1); ). In another experiment, 2-day-old rat pups were injected with capsaicin (50 mg kg(-1); treated) or with vehicle(control). There was no difference in the IRR of right atrial preparations taken from control and treated animals after they reached adulthood (control (n = 7) and treated (n = 8): +30+/- 4 and +32+/- 4 min(-1)). The influence of right atrial pressure on the efficacy of vagal stimulation was examined. The rate response to vagal stimulation was reduced similarly in control and treated preparations when pressure was elevated from 2 to 4 mmHg (control and treated: -34+/- 5% and -33+/- 3%). The effectiveness of the capsaicin treatment was confirmed by the depletion of substance P-immunoreactive nerve fibres in cardiac tissues. Together, these results strongly suggest that cardiac neurons are not involved in intrinsic heart rate control.

Animals↗

RETRACTED: Acute preoperative hemodilution in cardiac surgery: volume replacement with a hypertonic saline-hydroxyethyl starch solution.

Preoperative hemodilution (HD) is a recommended practice in cardiac surgery that conserves blood and reduces the complications of homologous blood transfusion. In 45 patients undergoing myocardial revascularization, HD was performed preoperatively. Withdrawn volume (10 mL/kg) was replaced either by a new hypertonic saline (HS) solution prepared in hydroxyethyl starch (HES) (2,400 mOsm/L, HS-HES group, n = 15) or by a standard low molecular weight hydroxyethyl starch solution (6% HES 200/0.5, HES group, n = 15) to maintain baseline PCWP (acute normovolemic hemodilution [ANH]). Fifteen comparable patients without HD served as controls. Significantly less HS-HES (210 +/- 20 mL) than HES 6% (890 +/- 90 mL) was necessary to sustain hemodynamics during HD. Stable cardiocirculatory conditions were obtained even after termination of bypass. Fluid balance during cardiopulmonary bypass as well as in the postoperative period was significantly lower in HS-HES-treated patients. With regard to hemodynamics, CI increased most in the HS-HES group (+36%), whereas systemic vascular resistance was lower in these patients. Right ventricular ejection fraction increased only in HS-HES patients (+15%). However, sodium concentration as well as osmolarity increased after volume replacement with HS-HES, without exceeding normal values. None of the patients suffered from organ failure. Pulmonary gas exchange (PaO2) was less compromised in the HS-HES patients. There were no renal function differences between the groups. In conclusion, HS solution prepared in HES is an attractive alternative for blood substitution in cardiac patients undergoing acute hemodilution for blood conservation.

Atrial Function, Right↗

The spatial dispersion of atrial refractoriness and atrial fibrillation vulnerability.

The local dispersion of conduction and refractoriness has been considered essential for induction of atrial arrhythmias. This study sought to determine whether a difference of refractoriness and vulnerability for induction of atrial fibrillation between trabeculated and smooth as well as high and low right atrium may contribute to initiation of atrial fibrillation in dogs. In 14 healthy mongrel dogs weighing 22.4 +/- 1 kg, closed-chest endocardial programmed stimulation was performed from four distinct right atrial sites. Atrial refractory periods and vulnerability for induction of atrial fibrillation or premature atrial complexes were determined during a basic cycle length of 400 and 300 ms and an increasing pacing current strength. For a pacing cycle length of 300 ms, atrial refractory periods were longer on the smooth, as compared to the trabeculated right atrium (102 +/- 25 vs. 97 +/- 17 ms, p < 0.05), whereas for a pacing cycle length of 400 ms, there was no significant difference. The duration of the vulnerability zone for induction of atrial fibrillation was longer on the smooth right atrium, for a cycle length of both 400 ms (40 +/- 30 vs. 31 +/- 22 ms; p < 0.05) and 300 ms (33 +/- 25 vs. 23 +/- 21 ms; p < 0. 01). When comparing high and low right atrium, refractory periods were longer on the the low right atrium, for a cycle length of both 400 ms (111 +/- 23 vs. 94 +/- 24 ms; p < 0.01) and 300 ms (104 +/- 20 vs. 96 +/- 23 ms; p < 0.01). For a pacing cycle length of 300 ms, the duration of the atrial fibrillation vulnerability zone was longer for the high, as compared to the low right atrium (34 +/- 22 vs. 22 +/- 22, p < 0.01). Seven dogs with easily inducible episodes of atrial fibrillation demonstrated significantly shorter refractory periods as compared to 7 non-vulnerable dogs, regardless of pacing site and current strength. In conclusion, significant differences in refractoriness and vulnerability for induction of atrial fibrillation can be observed in the area of the crista terminalis in healthy dogs. Thus, local anatomic factors may play a role in the initiation of atrial fibrillation.

Animals↗

Accuracy of central venous pressure measurement from the abdominal inferior vena cava.

Central venous pressure measurements in the abdominal inferior vena cava were compared with measurements in the right atrium in 10 infants and 10 children during cardiac catheterization. At end expiration, the mean pressures at these two sites were within 1 mm Hg of each other in all 20 patients, with a mean difference of 0.0 +/- 0.36 mm Hg. The abdominal inferior vena cava is a safe and convenient site for measurement of central venous pressure, and our study confirms that such measurements are accurate.

Adolescent↗

[The constant level of the right atrial pressure and its role in the venous return characteristics].

Dynamics of the central venous pressure, superior and inferior v. cava flow and venous return following action of pressor stimuli were studied in acute experiments on anaesthetised mongrel cats with artificial lung ventilation and opened chest. The central venous pressure returned to the initial level faster as compared with the dynamics of superior and inferior v. cava flow and venous return. The superior v. cava blood flow increased more than that of inferior v. cava. The data suggest that the central venous pressure is controlled near the lower constant level.

Animals↗

Relationship between directly measured portal pressure gradient and variceal hemorrhage.

OBJECTIVE: It is commonly believed that variceal hemorrhage in patients with cirrhosis and portal hypertension does not occur below a portal pressure gradient (PPG) of 12 mm Hg. The aim of this study was to assess the relationship between directly measured portal pressure gradient and variceal hemorrhage. METHODS: The procedure of insertion of the transjugular intrahepatic portosystemic stent-shunt (TIPSS) for variceal hemorrhage provides access to the portal vein and allows direct measurement of the portal pressure. Right atrial, inferior vena caval, and portal pressure were recorded, and the PPG was calculated (portal pressure-inferior vena caval pressure) in 48 patients undergoing TIPSS for variceal hemorrhage. RESULTS: PPG was reduced from a mean of 21.4 (6.4) before TIPSS to 10.6 (3.1) mm Hg after the procedure. Seven patients (14.7%) had a baseline portal pressure gradient of < 12 mm Hg. CONCLUSION: The results of this study do not support the concept of a discrete bleeding threshold.

Atrial Function, Right↗

Effect of pneumoperitoneum on interatrial pressure gradient during laparoscopic cholecystectomy.

Alterations of the left atrial/right atrial pressure gradient were determined using a Swan-Ganz thermodilution catheter in 20 patients who underwent laparoscopic cholecystectomy with 12 mmHg pneumoperitoneum (LAP) and 13 patients who underwent minilaparotomy cholecystectomy (MINI). Right and left atrial pressures were both elevated by pneumoperitoneum. A diminished or reversed left/right interatrial pressure gradient was recognized during pneumoperitoneum in 4 of the 20 patients (20%) in the LAP group, whereas it was not recognized during operation in any of the 13 patients in the MINI group. Evaluation of the elevation of intrathoracic pressure during pneumoperitoneum using peak inspiratory airway pressure or pulmonary arterial pressure could not predict the occurrence of this paradoxical interatrial pressure gradient.

Atrial Function, Left↗

Prevalence and severity of Doppler-detected valvular regurgitation and estimation of right-sided cardiac pressures in patients with normal two-dimensional echocardiograms.

To assess the prevalence and severity of Doppler-detected valvular regurgitation, as assessed by multiple Doppler modalities, in patients with structurally normal hearts, we analyzed Doppler echocardiograms in a consecutive sample of 206 referred patients who were found to have completely normal M-mode and two-dimensional echocardiograms. Valvular regurgitation was detected by Doppler in 94 percent, and 56 percent had regurgitation in at least two valves (mitral, tricuspid, and/or aortic). Mitral, tricuspid, and aortic regurgitation was detected in 73 percent, 68 percent, and 12 percent, respectively, with moderate regurgitation occurring in 6 percent, 5 percent, and 2 percent, respectively. The presence of mitral and tricuspid regurgitation was not related to age, although the prevalence of moderate regurgitation was three times more prevalent (p < 0.05) in those > 50 years old compared with those < or = 50 years. Aortic regurgitation was two to three times more prevalent (p < 0.01) in patients > 50 years compared with younger subjects, and moderate aortic regurgitation was three times more prevalent in older patients. Of those with measurable right-sided cardiac pressures, estimated right atrial pressure was < 10 mm Hg in 93 percent of patients, and estimated pulmonary artery systolic pressure was < or = 30 mm Hg in 57 percent of patients. Estimated right atrial pressure was > 10 mm Hg in only 7 percent, and only 13 percent had estimated pulmonary artery systolic pressure > or = 40 mm Hg. These data indicate a very high prevalence of trivial and mild mitral and tricuspid regurgitation in patients with otherwise "normal" hearts, suggesting that these findings are physiologically normal. These data should be considered when addressing management in patients with Doppler-detected valvular regurgitation in order to prevent "iatrogenic heart disease."

Adolescent↗

[Hemodynamics of right circulation in ewes: normal values].

The right cardiac pressure was measured on 24 anesthetized adult ewes (Halothane) with a Swan Ganz catheter. After a review of the catheterization technique, the results (mean +/- standard deviation) in mmHg were: right auricle 17 +/- 5, right ventricle 30 +/- 6 (systolic) and 12 +/- 6 (telediastolic), pulmonary artery 29 +/- 6 (systolic), 13 +/- 6 (diastolic) and 20 +/- 6 (mean), capillary pressure 17 +/- 7. We observed slight variations in the pressure curve morphology compared to those found for man and the pressures were 5-10 mmHg higher than what is observed in man and slightly higher than those observed in dogs. These results also demonstrate a great variation between animals.

Anesthesia, General↗

Localization of the initial fibrillatory cycle in patients with paroxysmal atrial fibrillation.

BACKGROUND: Recent reports suggest the presence of conduction delay in the posterior septal region during sinus rhythm in patients with lone paroxysmal atrial fibrillation (AF). OBJECTIVE: To explore the location of intra-atrial conduction delay associated with initiation of AF. DESIGN: In 8 lone AF patients (51 +/- 10 years), 20 AF paroxysms were induced during electrophysiological examination. Bipolar electrograms were acquired from a 10-polar catheter in the coronary sinus (CS), a 4-polar His bundle catheter, and a 20-polar Halo catheter in the right atrium. RESULTS: Induced AF paroxysms showed earliest registered atrial activity in interatrial septum (IAS) or proximal CS in 17 cases (85%). Conduction delay at the posterior IAS or proximal CS accompanied induction of 18 AF paroxysms (6 patients). Atrial activation sequence at the beginning of the AF paroxysms was stable and reproducible in six repeatedly induced AF episodes (3 patients). CONCLUSION: In lone AF patients, induction of AF is associated with conduction disturbances in the IAS and proximal CS regions.

Adult↗

Right heart catheterization in acute lung injury: an observational study.

Right heart catheterization (RHC) is commonly used in the diagnosis and management of acute lung injury (ALI). However, controversy exists regarding RHC. We examined RHC use during the first 3 d of ALI in an observational study of 135 patients defined by American-European Consensus Conference criteria. Study parameters examined for association with RHC included the Acute Physiology and Chronic Health Evaluation (APACHE) III score, lung injury score (LIS), and 20 additional epidemiologic, clinical, and laboratory parameters. RHC was performed in 70 patients (52%) within the first 3 d of ALI. RHC was positively associated (p < 0.05) with a diagnosis of sepsis, APACHE III score, blood urea nitrogen (BUN), creatinine, net fluid balance, and positive end-expiratory pressure. RHC was negatively associated (p < 0.05) with mean arterial pressure (Pa) and PaO2/FIO2. Logistic regression identified four predictors for RHC placement: sepsis, PaO2/FIO2, BUN, and Pa. Initial right atrial and pulmonary artery occlusion pressure measurements demonstrated a moderately strong correlation (r = 0.72). Use of RHC was associated with a change in one or more therapeutic interventions (intravascular fluids, vasopressors, diuretics) in 78% of patients. In summary, patients receiving RHC during the first 3 d of ALI were more severely ill than those who did not receive RHC, and RHC was associated with a change in therapy in most patients.

APACHE↗

Electrophysiological evaluation and ablation of atypical right atrial flutter.

Right atrial reentry which does not critically depend upon activation through the cavotricuspid isthmus is considered to be a subtype of atypical flutter. Diagnosis is dependent upon demonstrating the nonparticipation of the cavotricuspid isthmus. Right atrial free wall atriotomy incisions, the superior vena cava, the inferior vena cava, electrically silent or mute areas, incomplete variants of the posterior intercaval crista terminalis line of block and other functional/anisotropic lines of block form the central barriers around which macroreentry occurs. The length, location and orientation of fixed lines of block such as atriotomy incisions are important determinants of their arrhythmogenicity. Successful catheter ablation depends upon delineating the circuit in order to choose the optimal isthmus for ablation and producing complete block across it.

Adult↗

[Comparative characteristics of systemic and pulmonary hemodynamics during changes in the heart preloading].

A greater degree of relative shifts in the systemic arterial pressure in enhancing the right heart pre-load as compared with its diminishing. A primary role of the compensation mechanisms of the enhanced systemic arterial pressure level. The main role in the compensation of integral shifts of the arterial pressure induced by changes in the heart pre-load was shown to belong to the vascular resistance both in the major and the minor circulation circles. An idea of a greater involvement of the capacity function of the vascular bed in the minor circulation circle as compared with that in the major circulation circle in systemic haemodynamic shifts in changes of the heart pre-load, has been advanced.

Animals↗

Electrical connection between the right atrium and the superior vena cava, and the extent of myocardial sleeve in a patient with atrial fibrillation originating from the superior vena cava.

We describe a case in which the superior vena cava (SVC) was electrically isolated by an application of radiofrequency energy to a point with electrical connection between the right atrium and the SVC in a patient with atrial fibrillation (AF) originating from the SVC. The connection was located in the posteroseptal region between the right atrium and the myocardial sleeve extending into the SVC. Local AF occurred after radiofrequency ablation and rapid activities were recorded all around the SVC, whereas the atrium was still in sinus rhythm. It is suggested that focal AF in the SVC contributes not only to the initiation but also to the maintenance of AF, and the myocardial sleeve extends into the SVC through a connection point to cover the entire internal lumen.

Adult↗

Cardiac versus noncardiac limits to exercise after heart transplantation.

BACKGROUND: To determine whether the reduced exercise capacity of patients after heart transplantation is primarily a result of decreased cardiac or peripheral vascular factors, we examined the cardiac output (CO) and right atrial pressure (Pra) relation during graded cycle ergometry. METHODS AND RESULTS: We studied 12 male patients (51.2+/-15.3 years [mean+/-SD]) 35.3+/-12.5 weeks after heart transplantation and 6 young healthy men. Patients had a normal increase in CO with increasing oxygen uptake (VO2) (CO = 0.00597 VO2 + 4.4, r = 0.83). Mean (+/-SEM) heart rate increased from 97.0+/-5.0 beats/min at rest to 146.9+/-6.9 beats/min at peak effort compared with the increase of 67.2+/-1.9 beats/min to 187.2+/-2.5 beats/min in the normal group. Pra in patients increased from 1.6+/-1.0 mm Hg at rest to 8.9+/-1.6 mm Hg during mild exercise but did not increase further at the highest work rates, even though CO continued to increase. In the normal group there was an initial increase in Pra from rest to exercise transition but little further change in Pra with increasing CO. Aerobic capacity (peak VO2) did not increase when cardiac function was increased with dobutamine during exercise in two patients. CONCLUSIONS: The steep increase in CO relative to Pra during severe exercise in patients who undergo heart transplantation argues against the heart as the sole limiting factor during maximal effort.

Atrial Function, Right↗

Rate-dependent [K+](o) accumulation in canine right atria in vivo: electrophysiological consequences.

Sudden increases in heart rate cause accumulation of K+ in the extracellular space. However, the exact relationship between rate and extracellular K+ concentration ([K+](o)) in vivo is unknown. We measured [K+](o) in right atria of anesthetized dogs by using K(+)-sensitive electrodes. Peak increase in [K+](o) ranged from 0.18 +/- 0.04 mM [means +/- SE; cycle length (CL) = 350 ms] to 0.80 +/- 0.09 mM (CL = 250 ms) above baseline (3.50 +/- 0.08 mM at CL = 380 ms; n = 5). During rapid pacing-induced atrial fibrillation, peak increase in [K+](o) averaged 0.80 +/- 0.07 mM (n = 5). Whole cell current-clamp measurements in single right atrial myocytes (n = 5) showed that raising [K+](o) from 3 to 5 mM in 1-mM steps progressively depolarized resting membrane potential and reduced both phase 0 action potential amplitude and maximal upstroke velocity. Multisite epicardial mapping (n = 4) demonstrated that sudden rate increases changed longitudinal conduction velocity (CV(L)) by -3.6 +/- 1.8% to -5.9 +/- 1.2% over a CL range of 330 to 250 ms. Our observations suggest that rate-related [K+](o) accumulation in vivo is of sufficient magnitude to modulate those cellular electrophysiological properties that determine atrial CV(L).

Action Potentials↗