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Stuart P Thomas

Publications and source records attributed to Stuart P Thomas.

14 recordsLinked to original sources

Phrenic nerve injury after atrial fibrillation catheter ablation: characterization and outcome in a multicenter study.

OBJECTIVES: The purpose of this study was to characterize the occurrence of phrenic nerve injury (PNI) and its outcome after radiofrequency (RF) ablation of atrial fibrillation (AF). BACKGROUND: It is recognized that extra-myocardial damage may develop owing to penetration of ablative energy. METHODS: Between 1997 and 2004, 3,755 consecutive patients underwent AF ablation at five centers. Among them, 18 patients (0.48%; 9 male, 54 +/- 10 years) had PNI (16 right, 2 left). The procedure consisted of pulmonary vein (PV) isolation in 15 patients and anatomic circumferential ablation in 3 patients, with additional left atrial lesions (n = 11) and/or superior vena cava (SVC) disconnection (n = 4). RESULTS: Right PNI occurred during ablation of right superior PV (n = 12) or SVC disconnection (n = 3). Left PNI occurred during ablation at the left atrial appendage. Immediate features were dyspnea, cough, hiccup, and/or sudden diaphragmatic elevation in 9, and in the remaining the diagnosis was made after ablation owing to dyspnea (n = 7) or on routine radiographic evaluation (n = 2). Four patients (22%) were asymptomatic. Complete recovery occurred in 12 patients (66%). Recovery occurred within 24 h in the two patients with left PNI and in one patient with right PNI occurring with SVC disconnection. In the other nine patients, right PNI recovery occurred after 4 +/- 5 months (1 to 12 months) with respiratory rehabilitation. After a mean follow-up of 36 +/- 33 months, six patients have persistent PNI (three with partial and three with no recovery). CONCLUSIONS: In this multicenter experience, PNI was a rare complication (0.48%) of AF ablation. Ablation of the right superior PV, SVC, and left atrial appendage were associated with PNI. Complete (66%) or partial (17%) recovery was observed in the majority.

Adult↗

Medium-term efficacy of segmental ostial pulmonary vein isolation for the treatment of permanent and persistent atrial fibrillation.

INTRODUCTION: Previous studies suggest that segmental ostial isolation of the pulmonary veins for the treatment of patients with persistent and permanent atrial fibrillation is associated with a high rate of recurrence. Recurrence of atrial fibrillation is usually associated with electrical reconnection of the pulmonary veins to the left atrium. METHODS: We examined the efficacy of isolating all four pulmonary veins using an open irrigated tip ablation catheter and multiple procedures, to overcome the problem of electrical reconnection in the veins. Fifty-one patients (59 +/- 10 years, 48 male) with drug resistant and highly symptomatic persistent or permanent atrial fibrillation had their pulmonary veins electrically isolated using mapping guided segmental radiofrequency ablation. Atrial fibrillation had been present for 7.6 +/- 7.3 years, and patients had failed treatment with 2.2 +/- 1.6 antiarrhythmic medications. Thirty-nine percent had structural heart disease. RESULTS: After a mean of 1.7 +/- 0.9 procedures per patient, 23 patients (45%) were in sinus rhythm (without cardioversion) after 16.9 +/- 9.1 months. Antiarrhythmic medications were required in four of those in sinus rhythm (17%). Recurrences were usually early (median 7 days). Neither age, duration of atrial fibrillation, type of atrial fibrillation, underlying heart disease, left atrial size, left ventricular wall thickness nor the number of failed antiarrhythmic drugs predicted outcomes. CONCLUSION: Persistent and permanent atrial fibrillation can be successfully treated using segmental isolation. However, recurrence is common even when all four veins are isolated using an open irrigated tip catheter, and multiple procedures are performed. Alternative techniques are required in this population.

Atrial Fibrillation↗

Organization of myocardial activation during ventricular fibrillation after myocardial infarction: evidence for sustained high-frequency sources.

BACKGROUND: Studies of ventricular fibrillation (VF) in small mammals have revealed localized sustained stationary reentry. However, studies in large mammals with surface mapping techniques have demonstrated only relatively short-lived rotors. The purpose of this study was to identify whether sustained high-frequency activation with low beat-to-beat variability was present at intramural sites in a postinfarct ovine model of VF. METHODS AND RESULTS: VF was induced in 12 sheep 77+/-40 days after anterior myocardial infarction. Electrical activation was recorded with 20 multielectrode transmural plunge needles. Unipolar electrogram frequency content and local cycle duration variability were studied in 30-second recordings beginning 5 seconds after the onset of VF. Higher mean beat frequency was associated with lower SD of the cycle duration intervals (r=-0.91, P<0.001). The mean beat frequency and the SD of cycle duration intervals of the highest-frequency electrode were 8.8+/-2.0 Hz and 17+/-11 ms. In 3 cases, a region with regular activation throughout the recording was identified (SD of the cycle duration interval, 6.0+/-0.7 ms). Two of these sites and 67% of all sites with low local cycle duration variability were intramural. They occurred within regions with a high dominant frequency as determined by fast Fourier transform of the unipolar electrogram. CONCLUSIONS: Regions with the highest frequency of activation during VF were always associated with a low local cycle duration variability and usually intramural in this chronic infarct model. In a minority of cases, a region of stable, rapid, and very regular activation could be identified. These findings support the hypothesis that relatively stable periodic sources form a component of the mechanism of VF in this model.

Animals↗

Invited commentary.

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Atrial Fibrillation↗

Infrequent syncope in a heavy vehicle driver.

We present a case study of a truck driver with sinus node dysfunction diagnosed with the help of an implantable loop recorder more than 18 months after implantation. This case emphasizes that cardiogenic syncope may be very infrequent and its diagnosis can be elusive despite extensive testing.

Humans↗

Comparison of left atrial volume and function after linear ablation and after cardioversion for chronic atrial fibrillation.

Several techniques for treatment of atrial fibrillation (AF) have been developed, including the direct placement of radiofrequency for lesions at open heart surgery. Detailed evaluation of left atrial (LA) function has not been performed after these procedures and has not been compared in patients with chronic AF. We compared the atrial function of patients with sustained sinus rhythm (SR) after linear ablation with a group who underwent direct-current cardioversion and a group of normal controls to investigate the measurable deleterious effects, if any, on atrial function after the surgical procedure. Twenty-one consecutive patients who had maintained SR for >6 months after a linear radiofrequency ablation (LRFA) procedure were studied. As control subjects, we examined 33 patients with chronic AF successfully restored to SR by cardioversion who maintained SR for >6 months and 42 age-matched normal subjects. LA function was decreased in both the LRFA and cardioverted AF groups compared with normal controls. The parameters of LA function, atrial fraction, LA ejection fraction, and the A' velocity were lowest in the LRFA group, intermediate in the cardioverted AF group, and highest in the normal controls (LA function: 15.8 +/- 10%, 26 +/- 10%, 33 +/- 7%; p = 0.0001; LA ejection fraction: 31 +13%, 41 +/- 12%, 51 +/- 9%; p = 0.0001; A' velocity: 4.2 +/- 1.4, 7.6 +/- 2.2, 9.5 +/- 1.9 cm/s; p = 0.0001). LA volumes were increased in the LRFA and cardioverted AF groups compared with normals (62.8 +/- 22 vs 70.6 +/- 17 vs 38.7 +/- 9.8 ml; p = 0.0001). Thus, although LA function is restored and maintained after LRFA has been performed during open heart surgery, LRFA use is associated with a measurable decrease in LA function over and above that found after conventional cardioversion.

Aged↗

A comparison of open irrigated and non-irrigated tip catheter ablation for pulmonary vein isolation.

AIMS: The relative efficacy and safety of open irrigated tip catheters compared with conventional non-irrigated catheters for pulmonary vein isolation (PVI) is unknown. METHODS: Forty-eight patients undergoing PVI using an open irrigated tip ablation catheter (Group 1) were compared with a group of 31 historical controls (Group 2). The control group underwent similar procedures using a standard, 4 mm tip, temperature controlled ablation catheter. Electrical mapping with a circular catheter was used to guide segmental radiofrequency ablation at the vein ostia. RESULTS: At follow-up (3.5+/-3.5 months) after a single procedure 35/48 (73%) patients in Group 1 and 14/31 (45%) in Group 2 were in sinus rhythm (p=0.03). Antiarrhythmic drug use was lower among those in Group 1 maintained in sinus rhythm (9/35 (26%) vs 8/14 (57%), p=0.002). Recurrent atrial fibrillation was more common in Group 2 (28/31 (90%) vs 28/48 (58%) p=0.004). Serious complications were uncommon in both groups. CONCLUSIONS: Compared with an historical control group, pulmonary vein isolation using open irrigated tip catheters was superior to ablation with conventional 4 mm tip catheters. Patients undergoing ablation with an irrigated tip catheter were less likely to experience symptomatic recurrences of atrial fibrillation or require further therapy for post-procedural arrhythmias.

Adult↗

Rapid loading of sotalol or amiodarone for management of recent onset symptomatic atrial fibrillation: a randomized, digoxin-controlled trial.

BACKGROUND: Amiodarone and sotalol are commonly used for the maintenance of sinus rhythm, but the efficacy of these agents administered as high-dose infusions for rapid conversion of atrial fibrillation is unknown. Use in this context would facilitate drug initiation in patients in whom ongoing prophylactic therapy is indicated. METHODS: We assessed the efficacy and safety of rapid high-dose intravenous infusions of amiodarone and sotalol for heart rate control and rapid reversion to sinus rhythm in patients who came to the emergency department with recent-onset symptomatic atrial fibrillation. Patients (n = 140) were randomized to receive 1.5mg/kg of sotalol infused in 10 minutes, 10mg/kg of amiodarone in 30 minutes, or 500 microg of digoxin in 20 minutes. Electrical cardioversion was attempted for patients not converting to sinus rhythm within 12 hours. RESULTS: The rapid infusion of sotalol or amiodarone resulted in more rapid rate control than digoxin. Each of the 3 trial strategies resulted in similar rates of pharmacological conversion to sinus rhythm (amiodarone, 51%; sotalol, 44%; digoxin, 50%; P = not significant). The overall rates of cardioversion after trial drug infusion and defibrillation were high for all groups (amiodarone, 94%; sotalol, 95%,; digoxin, 98%; P = not significant), but there was a trend toward a higher incidence of serious adverse reactions in the amiodarone group. CONCLUSION: The rapid infusion of sotalol or amiodarone in patients with symptomatic recent-onset atrial fibrillation results in rapid control of ventricular rate. Even with high-dose rapid infusions, all 3 agents are associated with a poor overall reversion rate within 12 hours. Almost all patients were returned to sinus rhythm with a combination of pharmacological therapy and electrical cardioversion.

Aged↗

Pulmonary vein stenosis and remodeling after electrical isolation for treatment of atrial fibrillation: short- and medium-term follow-up.

Asymptomatic pulmonary vein (PV) stenosis after PV electrical isolation for atrial fibrillation has been reported in several studies and may be due to dynamic factors. The purpose of this study was to determine if PV stenosis progresses after the initial procedure. Consecutive patients (n = 26) requiring repeat procedures for atrial fibrillation recurrence were studied (mean age 55 +/- 12 years). Segmental PV potential-guided ostial ablation was performed with transvenous catheters. Biplane angiographic images were obtained before and after each procedure (52 procedures). Stenoses were found in 14 (16%) of 87 targeted veins immediately after the initial procedures. After 129 +/- 94 days no new stenoses were found at the second procedure. PV stenoses were unchanged in 8 previously stenosed veins, slightly deteriorated in 1 vein, improved in 2 veins, and fully resolved in 3 veins. No patients had symptoms attributable to PV stenosis. PV stenosis occurred in 6 (9%) of 68 additional veins at the second procedure. No baseline or procedural characteristics predicted stenosis. Progression of PV stenosis is uncommon in the medium term. Complete or partial resolution of PV stenosis occurs in approximately one third of cases. Absence of PV stenosis after an initial procedure does not ensure PV stenosis will not occur with further ablation in the same vein.

Adult↗

Coupling of cardiac electrical activity over extended distances by fibroblasts of cardiac origin.

Roughly half of the cells of the heart consist of nonmyocardial cells, with fibroblasts representing the predominant cell type. It is well established that individual cardiomyocytes and fibroblasts in culture establish gap junctional communication at the single cell level (short-range interaction). However, it is not known whether such coupling permits activation of cardiac tissue over extended distances (long-range interaction). Long-range interactions may be responsible for electrical synchronization of donor and recipient tissue after heart transplantation and may play a role in arrhythmogenesis. This question was investigated using a novel heterocellular culture model with strands of cardiomyocytes interrupted by cardiac fibroblasts over defined distances. With use of optical recording techniques, it could be shown that impulse propagation along fibroblast inserts was successful over distances up to 300 microm and was characterized by length-dependent local propagation delays ranging from 11 to 68 ms (apparent local "conduction velocities" 4.6+/-1.8 mm/s, n=23). Involvement of mechanical stretch in this phenomenon was excluded by showing that inserts consisting of communication-deficient HeLa cells were incapable of supporting propagation. In contrast, HeLa cells expressing connexin43 permitted impulse conduction over distances as long as 600 microm. Immunocytochemistry showed that fibroblasts and cardiomyocytes expressed connexin43 and connexin45, whereas connexin40 was absent. These results illustrate that fibroblasts of cardiac origin are capable of synchronizing electrical activity of multicellular cardiac tissue over extended distances through electrotonic interactions. This synchronization is accompanied by extremely large local conduction delays, which might contribute to the generation of arrhythmias in fibrotic hearts.

Animals↗

Impulse propagation in synthetic strands of neonatal cardiac myocytes with genetically reduced levels of connexin43.

Connexin43 (Cx43) is a major determinant of the electrical properties of the myocardium. Closure of gap junctions causes rapid slowing of propagation velocity (theta), but the precise effect of a reduction in Cx43 levels due to genetic manipulation has only partially been clarified. In this study, morphological and electrical properties of synthetic strands of cultured neonatal ventricular myocytes from Cx43+/+ (wild type, WT) and Cx+/- (heterozygote, HZ) mice were compared. Quantitative immunofluorescence analysis of Cx43 demonstrated a 43% reduction of Cx43 expression in the HZ versus WT mice. Cell dimensions, connectivity, and alignment were independent of genotype. Measurement of electrical properties by microelectrodes and optical mapping showed no differences in action potential amplitude or minimum diastolic potential between WT and HZ. However, maximal upstroke velocity of the transmembrane action potential, dV/dtmax, was increased and action potential duration was reduced in HZ versus WT. theta was similar in the two genotypes. Computer simulation of propagation and dV/dtmax showed a relatively small dependence of theta on gap junction coupling, thus explaining the lack of observed differences in theta between WT and HZ. Importantly, the simulations suggested that the difference in dV/dtmax is due to an upregulation of INa in HZ versus WT. Thus, heterozygote-null mutation of Cx43 produces a complex electrical phenotype in synthetic strands that is characterized by both changes in ion channel function and cell-to-cell coupling. The lack of changes in theta in this tissue is explained by the dominating role of myoplasmic resistance and the compensatory increase of dV/dtmax.

Action Potentials↗

Atrial structural remodelling and restoration of atrial contraction after linear ablation for atrial fibrillation.

AIMS: We determined late atrial function following a surgical linear endocardial radiofrequency (RF) ablation procedure that aimed to restore and maintain sinus rhythm (SR) in atrial fibrillation (AF). We tested the hypothesis that successful restoration of SR is accompanied by measurable mechanical atrial function that is at normal or near normal levels. METHODS: Forty-seven patients who underwent the surgical RF procedure at least 6 months previously (median 2.86 years; range: 0.6-4.2 years) were studied using an array of echocardiographic variables. Two patient groups (SR restored [RF-SR], persistent AF [RF-AF]) and an age matched control group were studied. Among the echocardiographic variables measured were left atrial (LA) size and volume, LA active fractional emptying and mitral annular displacement corresponding to atrial contraction (A' velocity) by Doppler tissue imaging. RESULTS: At long term follow up 29/47of patients who underwent the RF procedure were in SR with atrial contraction present echocardiographically. Of the patients initially restored to SR, the proportion remaining in SR at 3 years was 79% (SE 9%). The atrial-emptying fraction was reduced in comparison to that seen in normal controls (27+/-14% vs 46+/-10%). The A' velocity was decreased in the surgical RF cohort vs controls (4.4+/-1.3 vs 9.7+/-1.7cm/s; P=0.0001). Despite LA size preoperatively being similar in both surgical groups, atrial size decreased in those in whom SR was restored (48.6+/-7.6 vs 44.8+/-4.7mm; P=0.0001) but increased in those in whom AF persisted (48.2+/-8.1mm vs 52.3+/-7.8mm; P=0.0001). CONCLUSION: The radial pattern of linear radiofrequency ablation used in the present study resulted in restoration of SR and atrial function. Procedural success was independent of preoperative atrial size. Restoration of SR results in 'reverse' atrial remodelling and improved atrial function. However atrial function remains modestly impaired, either due to the ablation lesions or pre-existing atrial disease.

Aged↗

Comparison of epicardial and endocardial linear ablation using handheld probes.

BACKGROUND: The optimal technique for producing linear radiofrequency thermal lesions in myocardial tissue is unclear. We compared epicardial ablation on the beating heart with endocardial ablation after cardioplegia. METHODS: Radiofrequency lesions were produced using a multielectrode malleable handheld probe in ovine myocardium with three wall thicknesses. Detailed analysis of lesion dimensions was used to assess the effects of site of ablation, muscle thickness, and duration of ablation. RESULTS: After epicardial atrial ablation, myocardial lesions were detected in all sections without macroscopically visible epicardial fat (n = 10), but only 43% (6/14) of sections with epicardial fat. Three of 24 atrial epicardial sections (13%) and 92% (23/25) of endocardial atrial lesion sections were clearly transmural. In thicker tissues lesion depth was independent of endocardial (right ventricle: 3.9 +/- 1.1 mm, left ventricle: 3.8 +/- 0.7 mm) or epicardial (right ventricle: 3.4 +/- 0.6 mm, left ventricle: 4.3 +/- 0.9 mm) ablation site. Epicardial lesions are less deep in thinner areas of myocardium (p = 0.003). Lesions were all wider than they were deep. There was no significant increase in lesion depth with the increase in ablation duration from 1 to 2 minutes. CONCLUSIONS: Lesions were unlikely to be transmural with either technique when the wall thickness was greater than about 4 mm. Epicardial fat has an important negative effect on epicardial lesion formation. Where epicardial fat is absent epicardially produced lesions penetrate less deeply when the wall thickness is small, possibly due to endocardial cooling by circulating blood. Prolongation of the duration of ablation from 1 to 2 minutes does not significantly increase lesion depth.

Animals↗

Increasing power versus duration for radiofrequency ablation with a high superfusate flow: implications for pulmonary vein ablation?

Radiofrequency (RF) ablation of pulmonary veins (PVs) is a new treatment for atrial fibrillation. Low energy ablation is usually used for this procedure. The effect of superfusate flow on lesion formation in this setting has not been studied previously. We examined lesion dimensions and intramural temperatures with varying powers and duration of RF application in this high flow environment. Ablation of fresh bovine hearts was performed with a 4-mm tip RF catheter in temperature control mode, target temperature 50 degrees C. At power levels of 20 W, 30 W, 40 W, and 50 W, effects of PV flow (no flow or 1 L/min) and 60- and 120-second durations were tested. Tissue temperatures were recorded at depths of 1, 4, 7, and 10 mm. Without flow, no lesions were created. The lowest power setting for lesion creation was 30 W at 60 seconds and 20 W at 120 seconds. Increasing power from 30 W to 50 W for 60 seconds increased lesion depth 0.7 mm (SE 0.3), P = 0.03 and 2.5 mm (SE 0.6), P = 0.003, at 120 seconds. Increasing RF application duration from 60 to 120 seconds increased depth for 30 W by 0.9 mm (SE 0.5), P = NS, 40 W 1.7 mm (SE 0.4), P = 0.002, and 50 W 2.6 mm (SE 0.5), P < 0.001. Power of 50 W for 60 seconds and >30 W for 120 seconds created lesions deeper than the wall thickness of a PV. Flow is necessary for creation of lesions with low power, low tip temperature RF ablation. When a resistant site to ablation is encountered, increasing duration of ablation is best for increasing lesion depth. Higher power has the potential to create lesions deeper than the PV wall and may increase the risk of complications.

Animals↗