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[Cor triatriatum in adulthood: Doppler echocardiographic diagnosis. Case report of an asymptomatic adult].

Cor triatriatum is a rare cardiac malformation occurring in about 0.1% of all congenital heart disease. As symptoms are usually present soon after birth, diagnosis in adulthood is extremely rare. We describe a case of a 33-year-old asymptomatic woman who was referred for echocardiographic examination because of a postural variable systolic click. The anatomy of the malformation and the hemodynamics of the left atrium were accurately assessed by means of conventional transthoracic Doppler echocardiography. The antero-inferior course of the intraatrial membrane inserting proximal to the left atrial appendage was documented in multiple perpendicular planes of examination. All pulmonary veins drained correctly into the proximal compartment of the left atrium. Additionally, a small atrial septal defect communicated between the distal compartment of the left atrium and the right atrium. Using pulsed wave Doppler, no site of pressure gradient could be detected between the two compartments of the left atrium. Thus, conventional transthoracic Doppler echocardiography represents an adequate tool for assessing cor triatriatum in adults. The patient refused transesophageal echocardiography.

Adult↗

Partial left ventriculectomy for dilated cardiomyopathy: is this an alternative to transplantation?

OBJECTIVE: To determine the late effectiveness of partial left ventriculectomy and risk factors for failure. METHODS: Between May 1996 and December 1998, partial left ventriculectomy and concomitant mitral valve surgery were performed in 62 patients (95% transplant candidates) with a mean age of 54 years (range 17-72 years). All patients were in New York Heart Association functional class III (38%) or IV (62%) because of idiopathic dilated cardiomyopathy (59 patients) or ischemic, valvular, or familial cardiomyopathy (1 patient each). Outcomes considered for multivariable analysis included implantation of left ventricular assist device, return to class IV heart failure, relisting for transplantation, and death. RESULTS: Partial left ventriculectomy reduced the left ventricular end-diastolic diameter immediately preoperatively to immediately postoperatively (from 8.4 +/- 1.1 cm to 5.92 +/- 0.8 cm; P =.01), reduced the left ventricular end-diastolic volume index (from 133 +/- 48.6 mL to 64.1 +/- 26 mL; P <.0001), and increased the left ventricular ejection fraction (from 16 +/- 7.6 to 31.5 +/- 10.9; P <.0001). Survival was 80% and 60% at 1 and 3 years after surgery and freedom from failure was 49% and 26%, respectively. Increased systolic pulmonary artery pressure, decreased maximum exercise oxygen consumption, and increased left atrial pressure were associated with failure and/or death. The degree of preoperative mitral regurgitation did not correlate with clinical outcome. CONCLUSIONS: Early and late failures preclude the widespread use of partial left ventriculectomy. However, in view of its sometimes beneficial effect, use in situations that do not allow for transplantation or as a biologic bridge to transplantation may be appropriate.

Adolescent↗

Noninvasive measurement of rate of left ventricular relaxation by Doppler echocardiography. Validation with simultaneous cardiac catheterization.

BACKGROUND: The instantaneous pressure gradient between the left ventricle and left atrium during systole can be calculated from the mitral regurgitation Doppler velocity curve. The purpose of our study was to determine the accuracy of measuring the time constant of relaxation (TAU) derived from the Doppler mitral regurgitation signal by comparing it with simultaneous high-fidelity left ventricular pressure measurements in humans. METHODS AND RESULTS: Twenty-five patients had continuous-wave Doppler mitral regurgitation recordings performed with simultaneous high-fidelity left ventricular pressure measurements. Fifteen of these patients had measurements of six to eight beats at various RR intervals. Doppler velocity curves were converted to left ventricular pressure curves by different methods through application of the modified Bernoulli equation at 3-msec intervals. The correlation between catheter-derived and Doppler-derived TAU was best when a zero asymptote and knowledge of the left ventricular end-diastolic pressure were used. A less optimal but acceptable method used the addition of 20 mm Hg to the Doppler-derived ventriculoatrial gradient. Use of a nonzero asymptote for calculation of TAU yielded poor correlation between catheter and Doppler measurements. The correlation of percentage change in Doppler-derived TAU plotted against percentage change in catheter-derived TAU was poor. CONCLUSIONS: The descending limb of the Doppler-derived mitral regurgitation velocity signal can be used as a semiquantitative estimate of the rate of ventricular relaxation. This method requires knowledge of left atrial pressure and may not be sufficiently accurate for detecting small changes in the rate of relaxation on a beat-to-beat basis.

Atrial Function, Left↗

Transesophageal pulsed Doppler echocardiographic study of pulmonary venous flow in mitral stenosis.

For evaluation of pulmonary venous flow (PVF) in mitral stenosis, transthoracic and transesophageal echocardiography were performed in 33 patients with mitral stenosis and 20 normal controls. The peak systolic flow velocity of the PVF was significantly lower in patients with mitral stenosis and atrial fibrillation. The peak diastolic flow velocity of the PVF was significantly lower in the patients with mitral stenosis than in normal controls. The diastolic wave recorded as laminar flow in the mitral stenosis group showed a peak in the rapid filling phase with a gradually descending slope of velocity during mid to late diastole. There was a significant negative correlation between the peak diastolic flow velocity of the PVF and the pressure half time from transmitral flow obtained by continuous wave Doppler in the mitral stenosis group. These results demonstrate that evaluation of the PVF is helpful in understanding hemodynamic events between the left atrium and left ventricle in patients with mitral stenosis.

Adult↗

Proposal of a method for automatic optimization of left heart atrioventricular interval applicable to DDD pacemakers.

Electrical pacing of the right heart is known to cause delays in the depolarization of left heart chambers, leading to abnormal left heart AV sequence. Interatrial conduction time, defined as the time from the right atrial pacing pulse or intrinsic P to the onset of left atrial P wave, and P wave sensing delay cause a shorter left heart AV interval during atrial pacing-ventricular sensing and atrial sense-ventricular pace. Interventricular conduction time (the time from the right ventricular pacing pulse to the onset of left ventricular depolarization), lengthens left heart AV interval during atrial sensing-ventricular pacing. These delays may add up or partly cancel out, depending on pacing mode. Thus, an algorithm for DDD pacemakers to optimize left heart AV interval by compensating for the above delays is proposed. This algorithm takes into account pacing and sensing delays to deliver a certain AV sequence to the right heart, aimed at producing a physiological left heart AV interval. The optimization of left heart AV interval is achieved by automatically changing right heart AV interval and pacing mode in accordance with known interatrial and interventricular conduction delays, and P wave sense offset.

Algorithms↗

Catheter and surgical ablation strategies in atrial fibrillation: what have we learned?

PURPOSE OF REVIEW: Atrial fibrillation can be eliminated by catheter or surgical ablation, using significantly different approaches and end points. The former has mostly been guided by electrophysiologic recordings, whereas the latter uses direct anatomic visualization. RECENT FINDINGS: Rather than focusing only on ablating triggers of atrial fibrillation, such as pulmonary vein potentials, catheter ablation has evolved toward modification of the left atrial tissue substrate. Correlation of ablation sites with vagal denervation appears to enhance the success of ablation. Integration and eventually registration of spiral CT or MRI images with direct electrophysiologic intracardiac signals will lead to superimposition of true anatomic-electrophysiologic sites, providing enhanced accuracy during mapping. As for surgery, combining endocardial surgical ablation at the time of valvular heart surgery in patients who also have atrial fibrillation has become an integral aspect of surgery. The development of minimally invasive surgery has led to epicardial ablation of atrial fibrillation and even removal of the left atrial appendage, without even entering the heart. SUMMARY: The favorable benefit-to-risk profile, associated with improved outcomes, should eventually lead to reduced morbidity and mortality associated with atrial fibrillation.

Atrial Appendage↗

Influence of aging on left atrial appendage flow velocity patterns in normal subjects.

Transesophageal pulsed Doppler echocardiography was performed to examine changes with age in the left atrial appendage flow velocity patterns in 50 normal subjects (15 to 80 years) in sinus rhythm. There was a significant negative correlation between the peak early diastolic forward and backward left atrial appendage flow velocities and age, as well as a significant positive correlation between the peak early diastolic forward left atrial appendage flow velocity and the peak early diastolic transmitral and pulmonary venous flow velocities. Although there was a significant positive correlation between the peak atrial systolic transmitral flow velocity and age, there was a negative correlation between the peak atrial systolic forward and backward left atrial appendage flow velocities and age. There was a positive correlation between both the maximum left atrial diameter and the amplitude of the interatrial septal motion during atrial systole and age. There was a significant negative correlation between the left atrial appendage ejection fraction during atrial systole and age. Left atrial appendage thrombi and spontaneous echo contrast were detected in two subjects with low peak early diastolic and atrial systolic left atrial appendage flow velocities. In conclusion, both peak early diastolic and atrial systolic left atrial appendage flow velocities decreased with age. A decrease in the peak atrial systolic flow velocity appeared to be an important sign of left atrial appendage thrombus formation even in normal elderly subjects in sinus rhythm.

Adolescent↗

Left atrial pacing induces memory and is associated with atrial tachyarrhythmias.

OBJECTIVE: Transiently altering the atrial activation sequence induces atrial memory, manifested as an altered atrial gradient as measured in electrocardiographic XYZ leads. We hypothesized that protracted periods of left atrial impulse initiation alter the atrial gradient in a manner predictive of arrhythmias. METHODS: A total of 12 chronically instrumented mongrel dogs in complete heart block were paced AV sequentially from the left or right atrium for 7-28 days, and then recovered in normal sinus rhythm for 21 days. Rate histograms were recorded during the entire period, and electrophysiological studies were conducted to note changes in the atrial gradient, effective refractory period and atrial rhythm. No atrial arrhythmias were seen in eight control animals that were instrumented but not paced. RESULTS: Left atrial pacing was associated with a decreased atrial gradient and occurrence of atrial tachycardias that appeared during pacing and persisted during recovery from pacing. In contrast, right atrial pacing did not alter the atrial gradient significantly. Atrial tachycardias occurring during right atrial pacing disappeared after cessation of pacing, when dogs recovered in sinus rhythm. The effective refractory period did not change in either group. CONCLUSIONS: Pacing-induced impulse initiation from the left atrium alters the atrial gradient and is associated with atrial tachycardias. These changes in atrial gradient occur in the absence of ERP changes and may be early predictors of an arrhythmogenic substrate.

Animals↗

Occupation of the prostaglandin E2-type 1 receptor increases rat atrial contractility via a Y-27632-sensitive pathway.

This study investigated whether rat left atria (LA) contain the prostaglandin E2 type 1 receptor (EP1) and whether EP1 occupation induces positive inotropic responses in superfused LA. Western analysis demonstrated that LA contain EP1 and the EP1 splice variant. Exposing isolated, superfused LA to 17-phenyl trinor PGE2, an EP1 agonist, increased isometric contractile force and its corresponding dF/dTs to approximately 70% of the isoproterenol maximum with an EC50 of approximately 80 nM. In contrast, agonists for EP2, EP3, and EP4 caused little change in LA function. While the EP1 antagonists SC-51089 and SC-19220 blocked 17-phenyl trinor PGE2-induced inotropy, neither prazosin, nadolol, atropine nor EI-283, a pan-specific protein kinase C inhibitor, affected 17-phenyl trinor PGE2-induced inotropy. However, Y-27632 and HA-1077, inhibitors of rho A-activated protein kinases, prevented and reversed the increase in LA contractility that occurred in the presence of 17-phenyl trinor PGE2. Thus, atria contain EP1 and EP1 occupation increases LA contractility via a pathway sensitive to inhibitors of rho A-activated protein kinases.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Noninvasive evaluation of the athletic heart: sprinters versus endurance runners.

To evaluate possible differences in the cardiac effects of different types of running training, 22 competing male runners--10 sprinters and 12 endurance runners--were studied with a physical examination, electrocardiography, chest X-ray film and echocardiography. Thirteen sedentary men served as control subjects. There were no differences between the athletic groups in physical findings. However, left ventricular hypertrophy in the electrocardiogram was more apparent in the endurance runners (P less than 0.05), whose relative heart size on chest X-ray examination was also greater than in the sprinters (P less than 0.02). On echocardiography the left ventricular end-diastolic volume was equally greater than normal in both groups of athletes (P less than 0.005), but in the endurance runners the percent chance of the minor axis diameter in systole was greater than in the sprinters or control subjects (P less than 0.02). Values for left ventricular wall thickness and mass were greater than normal in both groups of athletes but were higher in the endurance runners than in the sprinters (P less than 0.001). The left atrial diameter was apparently greater in the endurance runners than in the sprinters or control subjects (P less than 0.001), whereas that of the sprinters did not differ from normal. Thus, intensive sprinter training seems to dilate the left ventricle but causes less increase in wall thickness and mass than training for endurance running and no change in left ventricular function or left atrial size. Endurance running causes left ventricular dilatation equal to that of sprinter training, greater wall hypertrophy and improved systolic emptying of the left ventricle, and it also dilates the left atrium perhaps because of decreased left ventricular compliance.

Adolescent↗

Automatic beat-to-beat left heart AV normalization: is it possible?

Programming the right heart AV interval to a normal value may cause a nonphysiological left heart AV due to interatrial and interventricular conduction delays, thus affecting cardiac performance. Since AV normalization at rest and exercise may be invalidated by pacing or sensing (mode) changes, the aim of this study was to (1) study the feasibility of a mode independent pacemaker (PM) algorithm for automatic beat-to-beat left AV normalization, (2) establish normal values for the time between mitral flow A wave (Af) and ventricular activation (Va), the AfVa interval, the mechanical surrogate of left AV, and (C) determine the range of values of the interatrial electromechanical delays (IAEMDs) and the effect of RA pacing. To pace with the proper right AV, the previously reported RV-paced interventricular electromechanical delay and the interatrial electromechanical delay, either P-sensed (IAEMDs) or atrial-paced (IAEMDp) are required inputs. Data were collected during diagnostic echo Doppler studies in 84 subjects divided in three groups: (1) control with narrow QRS and no structural heart disease (n = 33, age 50 +/- 21 years, 42% men); (2) patients in sinus rhythm with diverse cardiac pathologies except LBBB (n = 39, age 69 +/- 14 years, 56% men), and (3) DDD-paced patients (n = 12, mean age 71 +/- 6 years). Normal values of AfVa were established from the control group, while IAEMDs and IAEMDp and active atrial flow time (A-peak), in all subjects. The algorithm was tested by computer simulation under all possible modes with the following calculation: RAV = N + IAEMD - IVD, where RAV is the right AV, N is the desired normal AfVa value, IAEMD is either P-sensed or A-paced, and IVD is close to zero for intrinsic narrow QRS and biventricular pacing, or 79 ms for RV pacing. The results demonstrated (1) Normal (controls) AfVa: 85 +/- 15 ms (range 52-110 ms); (2) IAEMDs (All): 84 +/- 16 ms; (3) atrial pacing prolonged IAEMDs by 57 +/- 18 ms (from 93 +/- 15 to 150 +/- 25 ms, P < 0.0001); and (4) Computer simulation of rate and mode changes validated the normalization algorithm. An automatic, beat-to-beat left AV normalization algorithm to preserve a normal AfVa without a hemodynamic sensor is feasible. The normal value of AfVa is 85 +/- 15 ms.

Aged↗

Effects of left atrial and airway pressures on airway blood flow.

The blood flow contributions of the pulmonary and systemic circulations to airway blood flow from the trachea down to the 5th generation airways when either 15 cmH2O positive end expiratory pressure (PEEP) or 20 mmHg left atrial pressure was applied were assessed in anesthetized dogs by injecting 15-microns radiolabeled microspheres into the right and left heart, respectively. After the microsphere injections, the animals were killed, and the tracheal cartilage, tracheal muscle-mucosa, main bronchi and the 2nd generation bronchi down to the 5th generation airways were excised and collected for radioactive counting. The results of this study showed that under normal conditions, tracheal blood flow was primarily systemic (> 95% of total tracheal blood flow) averaging 15-26 ml.min-1 x (100 g)-1, while both the pulmonary [10 ml.min-1 x (100 g)-1] and systemic circulations [15 ml.min-1 x (100 g)-1] contributed substantially to main bronchi blood flow. The systemic blood flow contribution to the lower airway generations (2nd to the 5th generation airways) stayed relatively constant, averaging 13-31 ml.min.(100 g)-1 while the pulmonary blood flow contribution increased significantly in these airway segments to a maximum of over 100 ml.min-1 x (100 g)-1 at the 5th generation. At 15 cmH2O PEEP, the systemic contribution to all of the airway segments (except the 5th generation, P < 0.09) and the pulmonary component to the main bronchi, significantly decreased (P < 0.05). In contrast, elevated left atrial pressure had little effect on the pulmonary and systemic contributions to airway blood flow. The results of this study suggest that elevated PEEP has a greater effect than elevated left atrial pressure on the systemic blood flow contribution to the airways, while the pulmonary blood flow contribution to the airways is affected very little by either of these perturbations.

Animals↗

Cardiac performance early after cardioversion from atrial fibrillation.

BACKGROUND: The mechanism for early improvement in cardiac function after cardioversion from atrial fibrillation is unknown. METHODS: We measured ventricular volumes and load-independent contractility during atrial fibrillation and within 24 hours after cardioversion to sinus rhythm in 15 adult patients (10 men, 5 women; mean age 63+/-4 years, range 31 to 81 years). Duration of atrial fibrillation ranged from <1 day to 6 months. RESULTS: After cardioversion, left ventricular ejection fraction increased from 51%+/-4% to 61%+/-4% (P=.001, 95% confidence intervals for the difference, 7% to 15%), stroke volume increased from 57+/-4 mL to 76+/-6 mL (P < .001, 95% confidence intervals 8 to 32 mL), and mean cycle length increased from 0.77+/-.04 seconds in atrial fibrillation to 1.02+/-.04 seconds in sinus rhythm (P=.002, 95% confidence intervals, 0.1 to 0.4 seconds). Cardiac contractility, as expressed by the slope and the intercept of the relation between rate-corrected circumferential velocity of fiber shortening and end-systolic wall stress (Vcfc/ESWS) remained unaltered in 13 of 15 patients, suggesting that intrinsic inotropic state was unchanged immediately after return of normal sinus rhythm. Finally, a significant correlation was observed between improvement in stroke volume and peak A-wave velocity (r=0.79, P=.035). CONCLUSION: Both left ventricular stroke volume and ejection fraction increase immediately after cardioversion, whereas intrinsic cardiac contractility is largely unchanged. These data suggest that the mechanism of this increase is enhanced left ventricular diastolic filling due mostly to increased cycle length and return of left atrial mechanical function.

Adult↗

Atypical left atrial flutters.

Left atrial flutters are not as common as peri-tricuspidian circuits. Their systematic study is much more recent and had greatly benefited from the use of 3 D mapping systems. Reentry has been demonstrated as being the mechanism but the circuits are not stereotypical like in the right atrium. Multiple macroreentrant circuits with one or more loops have been described as well as small re-entrant circuits. The complexity and variability of these circuits is related to the presence of zone of block, slow conduction and electrically silent areas. They create the conditions for the arrhythmia maintenance as they stabilize the circuit and prevent short circuiting. Most of the patients with left atrial flutter have an underlying structural heart disease, but their arrhythmia is amenable to curative catheter ablation.

Atrial Flutter↗

Time interval from the initiation of the electrocardiographic P wave to the start of left atrial appendage ejection flow: A novel method for predicting atrial fibrillation recurrence.

OBJECTIVE: The incidence of paroxysmal and persistent atrial fibrillation (AF) recurrence is high and unpredictable. In this study, a novel noninvasive method that was thought to reflect the interatrial conduction time was investigated to predict AF recurrence. This method was on the basis of the measurement of time interval from initiation of the electrocardiographic P wave to the start of left atrial (LA) appendage (LAA) ejection flow (P-LAA). METHODS AND RESULTS: Forty-five consecutive patients (age, 61 +/- 11 years; 20 male) with newly diagnosed AF (mean duration, 132 hours; range: 6 hours-3 months) who converted to in sinus rhythm spontaneously or with cardioversion were studied prospectively. Transthoracic and transesophageal echocardiography were performed to measure LA size, mechanical functions, LAA ejection velocity, and P-LAA. Transesophageal echocardiography was performed for the measurement of P-LAA 1 to 2 days after conversion to in sinus rhythm. The patients were followed up for a period of 163 +/- 72 days for the recurrence of AF. AF recurred in 17 (38%) patients after a mean time of 81 +/- 67 days. P-LAA was significantly higher in patients with AF recurrence (123 +/- 36 vs 92 +/- 24 milliseconds, P =.0047) and multiple regression analysis indicated that P-LAA was an independent predictor of AF recurrence. Multiple regression analysis revealed no significant differences in LA size parameters, or in clinical and LA mechanical function parameters recorded after restoration of in sinus rhythm between patients with and without AF recurrence. CONCLUSION: P-LAA may be considered to be an independent predictor of recurrent AF.

Atrial Appendage↗

Hemodynamic abnormalities in the left atrial appendage in patients with paroxysmal atrial fibrillation, with special reference to albumin-contrast echocardiographic aspects.

AIM: We assessed the prolonged dysfunction of the left atrial appendage caused by paroxysmal atrial fibrillation. METHODS AND RESULTS: Transesophageal echocardiography with intravenous albumin-microspheres (Albunex, 0.2 ml/kg) was performed in 100 consecutive patients (44 patients in sinus rhythm without previous paroxysmal atrial fibrillation: 13 patients in sinus rhythm who had had previous episodes of paroxysmal atrial fibrillation; and 43 patients with sustained atrial fibrillation). We compared the left atrial appendage ejection fraction and degree of opacification in the left atrial appendage with Albunex in the groups. Patients with previous paroxysmal atrial fibrillation had lower left atrial appendage ejection fractions than patients in sinus rhythm without paroxysmal atrial fibrillation (33 +/- 14 vs. 47 +/- 14%, p < 0.001). More than half of the patients (7/13 [54%]) with previous paroxysmal atrial fibrillation showed delayed and incomplete opacification of the left atrial appendage with Albunex. CONCLUSION: We conclude that paroxysmal atrial fibrillation causes left atrial appendage stunning, at least in some patients.

Aged↗

Hematologic correlates of left atrial spontaneous echo contrast and thromboembolism in nonvalvular atrial fibrillation.

OBJECTIVES: This study examined the relation between left atrial spontaneous echo contrast, hematologic variables and thrombo-embolism in patients with nonvalvular atrial fibrillation. BACKGROUND: Left atrial spontaneous echo contrast is associated with left atrial stasis and thromboembolism in patients with nonvalvular atrial fibrillation. However, its hematologic determinants in patients with nonvalvular atrial fibrillation are unknown. METHODS: Clinical, hematologic and echocardiographic variables were prospectively measured in 135 consecutive patients with nonvalvular atrial fibrillation undergoing transesophageal echocardiography. RESULTS: Patients with left atrial spontaneous echo contrast (n = 74, 55%) had an increased fibrinogen concentration (p = 0.029), platelet count (p = 0.045), hematocrit (p = NS) and left atrial dimension (p = 0.005). Multivariate analysis showed that left atrial spontaneous echo contrast was independently related to hematocrit (odds ratio = 2.24, p = 0.002), fibrinogen concentration (odds ratio = 2.08, p = 0.008) and left atrial dimension (odds ratio = 1.90, p = 0.004) but not platelet count. It was also associated with left atrial thrombus (n = 15, p = 0.001) and with recent embolism (n = 40, p < 0.001). In 40 clinically stable outpatients without previous embolism, left atrial spontaneous echo contrast was significantly related to hematocrit (p = 0.005), fibrinogen concentration (p = 0.035) and left atrial dimension (p = 0.029) but not to coagulation factor VII, D-dimer, erythrocyte sedimentation rate, platelet count, plasma beta-thromboglobulin, plasma glycocalicin or glycocalicin index. CONCLUSIONS: Left atrial spontaneous echo contrast in patients with nonvalvular atrial fibrillation is independently related to hematocrit, fibrinogen concentration and left atrial dimension, indicating a relatively hypercoagulable state in addition to stasis. These findings support the hypothesis that left atrial spontaneous echo contrast is due to erythrocyte aggregation. Hematologic factors may contribute to its association with thromboembolism.

Aged↗

Factors determining long-term maintenance of sinus rhythm after cardioversion of persistent atrial fibrillation.

BACKGROUND: Long-term maintenance of sinus rhythm (SR) after successful cardioversion (CV) of persistent atrial fibrillation (AF) carries a low risk of stroke and may avoid the risks associated with anticoagulation. AIM: To determine the clinical and echocardiographic predictors of maintaining SR during one-year follow-up. METHODS: The initial study group consisted of 205 patients with persistent AF of whom 104 (33 females, 71 males, mean age 60.4+/-7.4 years) were randomised to SR restoration and maintenance. The results of transthoracic echocardiography, obtained before CV, were compared between patients who remained in SR and those in whom AF recurred during a one-year follow-up period, using the linear and logistic regression analysis. RESULTS: SR was present in 63.5% of patients at the end of the follow-up period. Of several analysed echocardiographic parameters, an increased left atrial area (<28 cm(2)) (p<0.02; RR 1.72, OR 1.09-2.71) and an increase in the fractional shortening of the left ventricle (range 25-40%, p<0.05, RR 1.2, OR 1.01-1.44) were significantly associated with SR maintenance during a 12-month follow-up period. CONCLUSIONS: Left atrial area and left ventricular fractional shortening are the independent predictors of the maintenance of SR after successful CV in patients with persistent AF.

Aged↗