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Biomedical subjects

W M Miles

Publications and source records attributed to W M Miles.

At least 37 records · Page 2Linked to original sources

Differential effects of isoproterenol on sustained ventricular tachycardia before and during procainamide and quinidine antiarrhythmic drug therapy.

BACKGROUND: Autonomic modulation, especially increased sympathetic activity may play a role in the genesis of ventricular arrhythmias. The purpose of this study was to determine whether beta-sympathetic stimulation with isoproterenol would alter sustained ventricular tachycardia (VT) circuits similarly during the drug-free and antiarrhythmic drug-treated states. METHODS AND RESULTS: Twenty-five patients with repeatedly inducible, hemodynamically stable, sustained VT were evaluated by programmed ventricular stimulation. In the antiarrhythmic drug-free state, isoproterenol (0.03 microgram/kg per minute) shortened the following intervals (in milliseconds; mean +/- SEM; 25 patients; paired t test): sinus cycle length (792 +/- 37 to 568 +/- 18; (p < 0.001), ventricular paced QT interval (386 +/- 8 to 348 +/- 6; p < 0.001), ventricular paced QRS duration (185 +/- 4 to 182 +/- 4; p = 0.014), ventricular effective (238 +/- 5 to 208 +/- 4; p < 0.001) and functional (261 +/- 6 to 227 +/- 5; p < 0.001) refractory periods, and the VT cycle length (VTCL) (311 +/- 9 to 291 +/- 9; p < 0.001). Isoproterenol (0.03 microgram/kg per minute) was administered during 31 antiarrhythmic drug trials (procainamide, n = 18; quinidine, n = 13) in 22 patients. Isoproterenol shortened the sinus cycle length, QT interval during ventricular pacing, and ventricular effective and functional refractory periods before and during procainamide and quinidine therapy (ANOVA; isoproterenol effect, p < or = 0.0002 for all). The amount of decrease in these intervals with isoproterenol was the same before and during procainamide and quinidine therapy (ANOVA interaction, p = NS for all). The QRS duration during ventricular pacing and VTCL were also shortened by isoproterenol before and during procainamide (baseline, n = 17; QRS, 182 +/- 4 to 178 +/- 4 msec; VTCL, n = 18, 314 +/- 11 to 291 +/- 11 msec; during procainamide, QRS, 218 +/- 7 to 197 +/- 6 msec; VTCL, 422 +/- 15 to 359 +/- 11 msec) and quinidine (baseline, n = 13; QRS, 190 +/- 6 to 185 +/- 5 msec; VTCL, n = 12, 298 +/- 10 to 280 +/- 9 msec; during quinidine, QRS, 223 +/- 9 to 208 +/- 8 msec; VTCL, 415 +/- 14 to 355 +/- 10 msec) (isoproterenol effect p < or = 0.0003 for all). However, the amount of decrease in QRS duration and VTCL with isoproterenol was greater during procainamide and quinidine than in the drug-free state (ANOVA interaction, p < or = 0.02 for all). These changes continued to be significant when normalized for the initial QRS duration and VTCL (p < or = 0.03 for all). CONCLUSIONS: Isoproterenol affects presumed reentrant sustained VT circuits less in the absence of antiarrhythmic drugs but markedly attenuates the antiarrhythmic drug-induced slowing of sustained VT. To the extent that the change in QRS duration reflects a change in conduction within the VT circuit, these data imply that the attenuation of drug-induced slowing of VT by isoproterenol is due to a greater change in conduction rather than refractoriness.

Adult↗

Radiofrequency catheter ablation of ventricular tachycardia in patients without structural heart disease.

BACKGROUND: Radiofrequency energy has been used safely and successfully to eliminate accessory pathways in patients with the Wolff-Parkinson-White syndrome and the substrate for atrioventricular nodal reentrant tachycardia. However, this form of ablation has had only limited success in eliminating ventricular tachycardia in patients with structural heart disease. In contrast, direct-current catheter ablation has been used successfully to eliminate ventricular tachycardia in patients with and without structural heart disease. The purpose of this study was to test whether radiofrequency energy can safely and effectively ablate ventricular tachycardia in patients without structural heart disease. METHODS AND RESULTS: Sixteen patients (nine women and seven men; mean age, 38 years; range, 18-55 years) without structural heart disease who had ventricular tachycardia underwent radiofrequency catheter ablation to eliminate the ventricular tachycardia. Two patients presented with syncope, nine with presyncope, and five with palpitations only. Mean duration of symptoms was 6.7 years (range, 0.5-20 years). Radiofrequency catheter ablation successfully eliminated ventricular tachycardia in 15 of 16 patients (94%). Sites of ventricular tachycardia origin included the high right ventricular outflow tract (12 patients), the right ventricular septum near the tricuspid valve (three patients), and the left ventricular septum (one patient). The only ablation failure was in a patient whose ventricular tachycardia arose from a region near the His bundle. An accurate pace map, early local endocardial activation, and firm catheter contact with endocardium were associated with successful ablation. Radiofrequency ablation did not cause arrhythmias, produced minimal cardiac enzyme rise, and resulted in no detectable change in cardiac function by Doppler echocardiography. CONCLUSIONS: Radiofrequency catheter ablation of ventricular tachycardia in patients without structural heart disease is effective and safe and may be considered as early therapy in these patients.

Adolescent↗

Surgery for atrioventricular node reentry tachycardia. Results with surgical skeletonization of the atrioventricular node and discrete perinodal cryosurgery.

Surgical treatment options for interruption of atrioventricular node reentrant tachycardia include (1) skeletonization of the atrioventricular node by dissecting it from most of its atrial inputs and (2) discrete cryosurgery of the perinodal tissues by applying a series of sequential cryolesions to the atrial tissues immediately adjacent to the atrioventricular node. Both these techniques attempt to interrupt one of the dual atrioventricular node conduction pathways while preserving the other. This report describes 17 consecutive patients who underwent surgical treatment, 10 patients with skeletonization of the atrioventricular node and seven patients with discrete perinodal cryosurgery. There were 10 female and seven male patients and their ages ranged from 28 to 56 years (mean 38). Two of the 17 patients had Wolff-Parkinson-White syndrome and their accessory pathways were interrupted before the atrioventricular nodal reentrant tachycardia was ablated. All the procedures were performed in a normothermic beating heart while atrioventricular conduction was monitored closely. In the skeletonization technique, the right atrial septum was mobilized and the atrioventricular node exposed anterior to the tendon of the Todaro. The perinodal cryosurgical procedure was also performed through a right atriotomy and a series of sequential 3 mm cryolesions were placed around the borders of the triangle of Koch on the inferior right atrial septum. There were no operative deaths. Two patients who underwent the skeletonization operation had heart block necessitating pacemaker therapy. At postoperative electrophysiologic study, no echoes or atrioventricular nodal reentrant tachycardia were inducible in any of the 17 patients. All patients have remained free of arrhythmia recurrence and have required no antiarrhythmic therapy after a follow-up of 5 to 28 months (mean 14). In conclusion, both atrioventricular node skeletonization and perinodal cryosurgery successfully ablate atrioventricular nodal reentrant tachycardia; however, perinodal cryosurgery appears to be safer in avoiding heart block, is more easily performed, and is our procedure of choice for the management of medically refractory atrioventricular nodal reentrant tachycardia.

Adolescent↗

Catheter ablation of ventricular tachycardia using radiofrequency techniques in patients without structural heart disease.

It has been previously demonstrated that radiofrequency (RF) energy can be safely applied to successfully eliminate accessory pathways in patients with the Wolff-Parkinson-White syndrome. This technique may also be used to successfully eliminate atrioventricular (AV) nodal reentrant tachycardia by elimination of either the fast or slow AV nodal pathways. However, RF energy has achieved only limited success in eliminating ventricular tachycardia (VT) in patients with structural heart disease, such as coronary artery disease and dilated cardiomyopathy. Direct-current catheter techniques have successfully eliminated VT in patients with and without structural heart disease, but this technique is limited by the risk of barotrauma and proarrhythmia. We used RF catheter ablation techniques to eliminate VT in patients without structural heart disease. Our results from the basis of this report. 16 patients (nine women and seven men; mean age 38; range 18 to 55 years) who did not have any identifiable structural heart disease by echocardiography where included in this study. These patients underwent RF catheter ablation to eliminate VT. Two patients had presented with syncope, nine with presyncope and five with palpitations only. The mean duration of symptoms was 6.7 years (range 0.5 to 20 years). VT was successfully eliminated by RF catheter techniques in 15 of the 16 patients (a 94% success rate). Importantly, successful ablation sites included regions other than the right ventricular outflow tract. Areas of VT origin therefore included the high right ventricular outflow tract (twelve patients), right ventricular septum near the tricuspid valve (three patients), and the left ventricular septum (one patient). The only ablation failure was in a patient whose VT arose from a region near the His bundle. Successful ablation occurred in patients in whom an accurate pace map could be obtained and early local endocardial activation was obtainable. Further, firm catheter contact with endocardium was required for successful elimination of VT. RF ablation did not cause any identifiable arrhythmia and produced a minimal cardiac enzyme rise. It also resulted in no detectable change in cardiac function by Doppler echocardiography. Based on these findings, we conclude that RF catheter ablation of VT in patients without structural heart disease was highly effective and safe. It may therefore be considered as early therapy in these patients.

Adult↗

Antitachycardia devices: realities and promises.

Nonpharmacologic therapy for ventricular arrhythmias has gained growing attention with the development of the implantable cardioverter-defibrillator. In addition, the reports of adverse effects of drug therapy from several studies, including the Cardiac Arrhythmia Suppression Trial (CAST), have supported the need for these devices. The development of new implantable cardioverter-defibrillators that have the capability of antitachycardia pacing, bradycardia pacing, cardioversion and defibrillation has enhanced their clinical utility. The currently available implantable cardioverter-defibrillators have been shown to significantly improve survival after sudden cardiac arrest in patients with life-threatening ventricular arrhythmias. Newer devices with expanded capabilities may reduce mortality even further. In this report the features of currently available antitachycardia devices and implantable cardioverter-defibrillators are reviewed and the features and current implant data on newer antitachycardia devices are discussed.

Arrhythmias, Cardiac↗

Electrophysiologic and anatomic characteristics of ventricular tachycardia induced at the right ventricular outflow tract but not at the apex.

The site of ventricular stimulation is an important variable in the initiation of ventricular tachycardia (VT) by programmed ventricular stimulation. Among 169 patients studied consecutively, 17 (10%) had ventricular tachycardia induced by programmed electrical stimulation from the right ventricular outflow tract but not from the apex. Fourteen of these 17 patients had had prior myocardial infarction (12 had inferior, and two had both inferior and anterior myocardial infarction), two had a dilated cardiomyopathy, and one had a localized cardiomyopathy. Fourteen patients had echocardiograms suitable for analysis. Of these, 12 had posterior/inferior ventricular wall motion abnormalities located at the base of the heart. The ventricular effective refractory periods from the right ventricular outflow tract and right ventricular apex were 237 +/- 4 and 244 +/- 5 msec, respectively (p less than 0.05, mean +/- SEM). Induced VT had a cycle length of 229 +/- 4 msec and had the morphology of right bundle branch block in 12 patients, of left bundle branch block in three patients, and had both morphologies in two patients. In 14 patients the axis was superior. VT was initiated with two extrastimuli in 15 patients and with burst right ventricular pacing in two patients. Similar pacing techniques with identical pacing intervals did not induce VT at the right ventricular apex in 14 of these 17 patients. Further, among the 15 patients whose VT was induced at the right ventricular outflow tract with two extrastimuli, neither burst pacing (n = 13) nor two extrastimuli introduced at faster paced rates (n = 12) induced VT at the right ventricular apex.(ABSTRACT TRUNCATED AT 250 WORDS)

Cardiac Pacing, Artificial↗

Clinical features of amiodarone-induced pulmonary toxicity.

The incidence and clinical predictors of amiodarone pulmonary toxicity were examined in 573 patients treated with amiodarone for recurrent ventricular (456 patients) or supraventricular (117 patients) tachyarrhythmias. Amiodarone pulmonary toxicity was diagnosed in 33 of the 573 patients (5.8%), based on symptoms and new chest radiographic abnormalities (32 of 33 patients) and supported by abnormal pulmonary biopsy (13 of 14 patients), low pulmonary diffusion capacity (DLCO) (nine of 13 patients), and/or abnormal gallium lung scan (11 of 16 patients). Toxicity occurred between 6 days and 60 months of treatment for a cumulative risk of 9.1%, with the highest incidence occurring during the first 12 months (18 of 33 patients). Older patients developed it more frequently (62.7 +/- 1.7 versus 57.4 +/- 0.5 years, p = 0.018), with no cases diagnosed in patients who started therapy at less than 40 years of age. Gender, underlying heart disease, arrhythmia, and pretreatment chest radiographic, spirometric, or lung volume abnormalities did not predict development of amiodarone pulmonary toxicity, whereas pretreatment DLCO was lower in the group developing it (76.0 +/- 5.5% versus 90.4 +/- 1.4%, p = 0.01). There was a higher mean daily amiodarone maintenance dose in the pulmonary toxicity group (517 +/- 25 versus 409 +/- 6 mg, p less than 0.001) but no difference in loading dose. No patient receiving a mean daily maintenance dose less than 305 mg developed pulmonary toxicity. Patients who developed toxicity had higher plasma desethylamiodarone (2.34 +/- 0.18 versus 1.92 +/- 0.04 micrograms/ml, p = 0.009) but not amiodarone concentrations during maintenance therapy.(ABSTRACT TRUNCATED AT 250 WORDS)

Amiodarone↗

Effect of atrioventricular interval during pacing or reciprocating tachycardia on atrial size, pressure, and refractory period. Contraction-excitation feedback in human atrium.

To determine whether a contraction-excitation feedback mechanism exists in human atrium, we investigated the effects of varying the atrioventricular (AV) interval from 0 to 360 msec during AV pacing at a cycle length of 400 msec on atrial pressure, size, and refractoriness in 10 patients (group 1, without supraventricular tachycardia). The same parameters were determined in another 10 patients (group 2, with different spontaneous AV relations) during AV reciprocating tachycardia or AV nodal reciprocating tachycardia and during high right atrial (RA) pacing at the tachycardia cycle length. In group 1 patients, peak and mean RA pressure, RA effective refractory period (RA-ERP), and left atrial (LA) size all decreased to minimal values at an AV interval of 120 msec and remained low as the AV interval was increased and approached 400 msec. The increase in each of the variables from its lowest to greatest value was as follows: Mean systemic blood pressure, 20.9 +/- 3.1 mm Hg; LA size, 0.55 +/- 0.05 cm; RA peak pressure, 10.4 +/- 1.8 mm Hg; RA mean pressure, 3.5 +/- 0.6 mm Hg; and RA-ERP, 22.5 +/- 3.0 msec, p less than 0.001 for each. The weighted mean correlation coefficient with RA-ERP was significant for RA peak pressure and LA size (p less than 0.001 for each). These same relations were investigated in five patients with the Wolff-Parkinson-White syndrome and AV reciprocating tachycardia and five patients with AV nodal reciprocating tachycardia (group 2).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Regional sympathetic denervation after myocardial infarction in humans detected noninvasively using I-123-metaiodobenzylguanidine.

Transmural myocardial infarction in dogs produces denervation of sympathetic nerves in viable myocardium apical to the infarct that may be arrhythmogenic. It is unknown whether sympathetic denervation occurs in humans. The purpose of this study was to use iodine-123-metaiodobenzylguanidine (MIBG), a radiolabeled guanethidine analog that is actively taken up by sympathetic nerve terminals, to image noninvasively the cardiac sympathetic nerves in patients with and without ventricular arrhythmias after myocardial infarction. Results showed that 10 of 12 patients with spontaneous ventricular tachyarrhythmias after myocardial infarction exhibited regions of thallium-201 uptake indicating viable perfused myocardium, with no MIBG uptake. Such a finding is consistent with sympathetic denervation. One patient had frequent episodes of nonsustained ventricular tachycardia induced at exercise testing that was eliminated by beta-adrenoceptor blockade. Eleven of the 12 patients had ventricular tachycardia induced at electrophysiologic study and metoprolol never prevented induction. Sympathetic denervation was also detected in two of seven postinfarction patients without ventricular arrhythmias. Normal control subjects had no regions lacking MIBG uptake. This study provides evidence that regional sympathetic denervation occurs in humans after myocardial infarction and can be detected noninvasively by comparing MIBG and thallium-201 images. Although the presence of sympathetic denervation may be related to the onset of spontaneous ventricular tachyarrhythmias in some patients, it does not appear to be related to sustained ventricular tachycardia induced at electrophysiologic study.

3-Iodobenzylguanidine↗

The electrophysiologic effects of enoximone in patients with preexisting ventricular tachyarrhythmias.

Electrophysiologic and hemodynamic effects of intravenous enoximone were studied in 15 male patients, mean age 62.2 years, with New York Heart Association classes II to IV congestive heart failure (coronary artery disease in 10 and idiopathic dilated cardiomyopathy in five patients; mean ejection fraction, 0.19). All patients had spontaneous ventricular tachyarrhythmias; eight had sustained ventricular tachycardia (VT), one had ventricular fibrillation, and six had nonsustained VT. Hemodynamic and electrophysiologic parameters including VT induction were determined before and during an intravenous infusion of enoximone. The cardiac index increased (2.49 +/- 0.89 to 2.96 +/- 0.78), and the pulmonary capillary wedge pressure decreased (22.4 +/- 13.2 to 10.0 +/- 9.0) after enoximone per predefined protocol endpoints. There was a significant decrease in spontaneous sinus cycle length, corrected sinus nodal recovery time, AH interval during atrial pacing, shortest cycle length at which 1:1 atrioventricular nodal conduction occurred, and refractory periods of the atrium, ventricle, and atrioventricular node. Enoximone did not alter the cycle length of induced VT, and there was no consistent change in the number of extrastimuli required for VT induction. A baseline 24-hour ECG recording was obtained on 14 patients (while receiving a long-term antiarrhythmic drug regimen, if needed) and repeated after 1 week and 1 month of oral enoximone therapy. There was no significant increase in the number of premature ventricular complexes per hour or VT episodes per 24 hours after 1 week or 1 month of therapy with enoximone. However, if four patients who received amiodarone and may not yet have reached steady state were excluded from analysis, there was a significant increase in the frequency of premature ventricular complexes per hour 1 month after initiation of enoximone. We conclude that intravenous enoximone reduces pulmonary capillary wedge pressure and increases cardiac output in most patients. Intravenous enoximone in doses sufficient to have hemodynamic effects shortens atrial, ventricular, and atrioventricular nodal refractoriness and decreases AV nodal conduction time but has no consistent effect on VT induction or VT cycle length. The frequency of spontaneous ventricular ectopy may increase in some patients after oral enoximone, but its clinical significance is undefined. Enoximone may be administered cautiously to patients with congestive heart failure and preexisting ventricular tachyarrhythmias.

Administration, Oral↗

Arrhythmogenic effects of antiarrhythmic drugs: a study of 506 patients treated for ventricular tachycardia or fibrillation.

Antiarrhythmic therapy in 506 consecutive patients undergoing 1,268 antiarrhythmic drug trials for ventricular tachycardia or ventricular fibrillation was reviewed for evidence of arrhythmogenic drug effect defined as the occurrence of a new form of ventricular tachyarrhythmia temporally associated with initiation of drug therapy or dosage increase. Arrhythmogenic effects occurred in 6.9% of patients and 3.4% of drug trials. This ranged from a high of 11.8% caused by encainide to none occurring with procainamide, tocainide or beta-adrenergic blocking drugs. The incidence of arrhythmogenesis was significantly greater in patients whose presenting arrhythmia was sustained ventricular tachycardia than it was in those who presented with nonsustained ventricular tachycardia or ventricular fibrillation (p = 0.02). Decreased systolic function measured echocardiographically at the base of the left ventricle was associated with an increased incidence of arrhythmogenic effects (p = 0.006) whereas global left ventricular ejection fraction was not. Age, gender, cardiac diagnosis, location of prior myocardial infarction and New York Heart Association functional class for heart failure were not related to the occurrence of drug-induced arrhythmias. These findings emphasize the need for in-hospital cardiac monitoring during initiation of antiarrhythmic drug therapy for ventricular tachyarrhythmias.

Adolescent↗

Encainide for treatment of atrioventricular reciprocating tachycardia in the Wolff-Parkinson-White syndrome.

Oral encainide, varying from 75 to 300 mg/day (mean 174 mg/day), was administered to 52 patients with drug-resistant atrioventricular reciprocating tachycardia (AVRT) associated with the Wolff-Parkinson-White syndrome. Electrophysiologic studies were performed before and during drug treatment. Encainide resulted in anterograde accessory pathway block in 15 of 37 (41%) and retrograde accessory pathway block in 11 of 46 (24%) patients. In patients with residual accessory pathway conduction, encainide significantly prolonged the shortest pacing cycle length maintaining anterograde (261 +/- 26 to 404 +/- 85 ms) and retrograde (279 +/- 46 to 436 +/- 87 ms) accessory pathway conduction, as well as the anterograde accessory pathway effective refractory period (271 +/- 32 to 329 +/- 73 ms). AVRT could not be induced during encainide therapy in 20 of 49 patients (41%). In the remaining patients, AVRT cycle length increased (319 +/- 44 to 426 +/- 90 ms, p less than 0.001) due to prolongation of HV and ventriculoatrial intervals. During follow-up (mean 38.5 months), 30 patients continued to take the drug and 7 patients with favorable drug response subsequently elected to undergo surgical accessory pathway ablation (71% overall favorable response). Encainide was ineffective in 11 patients, was discontinued because of drug intolerance in 2 patients and exacerbated ventricular tachycardia in 2 patients. Lack of AVRT inducibility at encainide electrophysiologic study did not always predict recurrence-free follow-up. Encainide is an effective and well-tolerated drug to prevent recurrence of AVRT in patients with Wolff-Parkinson-White syndrome.

Administration, Oral↗

Encainide for atrial fibrillation associated with Wolff-Parkinson-White syndrome.

Thirty-six patients with a history of atrial fibrillation and Wolff-Parkinson-White syndrome were treated with oral encainide, 175 +/- 44 mg/day, after undergoing baseline drug-free electrophysiologic studies. The mean age was 38 +/- 15 years, with structural heart disease present in only 3 patients. Nine patients had only paroxysmal atrial fibrillation and 27 patients had both atrial fibrillation and atrioventricular reciprocating tachycardia (AVRT). Symptoms were present for a mean of 195 +/- 168 months and were treated with an average of 2.7 +/- 1.6 drugs before encainide. Anterograde block in the accessory pathway occurred in 12 of 30 patients (40%) and retrograde block accessory pathway occurred in 10 of 24 patients in whom comparison could be made. AVRT was initiated in 29 of 36 patients during the control study and could be initiated in 19 of 29 patients while receiving encainide. Drug efficacy was determined by the clinical response judged completely effective, partially effective or ineffective. During a mean follow-up of 30.1 +/- 25 months, 24 patients (67%) continued to take encainide. Encainide was completely effective in 14 of 24 patients and partially effective in another 7 patients. Noncardiac side effects were mild and generally resolved, and required discontinuance in only 1 patient. More frequent AVRT occurred in 2 patients, but was managed with dose reduction and the addition of a beta blocker. Three patients had ventricular tachycardia requiring discontinuance; however 2 of 3 patients had a history of ventricular tachycardia before receiving encainide. Encainide is an effective and safe agent for treating atrial fibrillation in patients with Wolff-Parkinson-White syndrome.

Adolescent↗

Clinical characteristics of patients with ventricular fibrillation during antiarrhythmic drug therapy.

We retrospectively studied 28 patients with 38 episodes of newly occurring ventricular fibrillation during antiarrhythmic drug therapy. Twenty-six of these patients, who had ventricular fibrillation during single-drug therapy with quinidine, procainamide, or disopyramide, were compared with a control group of 62 patients who had been treated similarly for ventricular arrhythmias but did not have ventricular fibrillation during treatment. The median duration of therapy before ventricular fibrillation was three days. The left ventricular ejection fraction of the study group was lower than that of the control group (0.29 vs. 0.43; P less than 0.0001), and concomitant treatment with digitalis and diuretic agents was more common in the study group. The base-line QT interval (corrected for heart rate) was slightly longer in the study group than in the controls (0.47 vs. 0.44; P less than 0.005), although both groups had similar degrees of QT prolongation during drug therapy. Four of 13 patients (31 percent) who underwent multiple trials of antiarrhythmic drugs had recurrent episodes of ventricular fibrillation. Six patients died suddenly after a mean follow-up of 18 months--four who were receiving antiarrhythmic therapy and two who were not. We conclude that drug-associated ventricular fibrillation is an early event, that there may be an increased risk of its recurrence with subsequent trials of antiarrhythmic drugs, and that left ventricular dysfunction and concomitant therapy with digitalis and diuretic agents may predispose patients to this complication.

Anti-Arrhythmia Agents↗

Prospective evaluation of a discriminant function for prediction of recurrent symptomatic ventricular tachycardia or ventricular fibrillation in coronary artery disease patients receiving amiodarone and having inducible ventricular tachycardia at electrophysiologic study.

Induction of ventricular tachycardia (VT) at electrophysiologic study in patients taking amiodarone poorly predicts recurrence of VT. Consequently, a discriminant function was developed (using parameters based on retrospective data) that appeared to identify high-risk patients. These parameters included ventricular effective refractory period, corrected QT interval, initiation of a repetitive ventricular response and the mode of VT induction. In the present study these parameters were prospectively evaluated in 60 patients with coronary artery disease and sustained VT or ventricular fibrillation (VF), in whom VT was still induced at electrophysiologic study during amiodarone therapy. Thirteen patients had recurrent events (sudden death in 8 and sustained VT in 5) and 47 patients had no symptomatic arrhythmia recurrence (follow-up for 16 +/- 2 months, mean +/- standard error of the mean). The ventricular effective refractory period, corrected QT interval and presence of a repetitive ventricular response did not discriminate between patients with and without symptomatic arrhythmia recurrence. However, an easier mode of VT induction during amiodarone therapy versus control was highly predictive of arrhythmia recurrence: 9 of 13 (69%) recurrences were in this group. In contrast, only 4 of 44 (9%) patients who had either the same or harder mode of VT induction had a recurrent event. Overall, 9 of 16 (56%) patients with an easier mode of VT induction had a recurrence, including 6 of the 8 patients with subsequent sudden cardiac death. It is concluded that electrophysiologic testing during amiodarone therapy is useful to identify high-risk patients.

Administration, Oral↗

Parasympathetic and sympathetic alterations of Mobitz type II heart block.

This study examined the effects of changes in parasympathetic and sympathetic tone on the cycle length at which Mobitz type II second degree atrioventricular (AV) block occurred. Four patients who had electrocardiographic evidence of type II AV block and confirmation of block in the His-Purkinje system during electrophysiologic study were evaluated. These patients received intravenous atropine (1.0 to 2.4 mg), propranolol (0.15 mg/kg body weight) or isoproterenol (1 and 2 micrograms/min) alone or in combination. In two of three patients receiving propranolol, the atrial pacing cycle length at which 1:1 His-Purkinje conduction occurred was prolonged relative to control (from 360 to 470 ms and 440 to 590 ms, respectively). In contrast, atropine in the presence of beta-adrenergic blockade shortened the cycle length at which 1:1 His-Purkinje conduction occurred in three of four patients receiving the drug (470 to 390, 630 to 570 and 590 to 560 ms, respectively). Isoproterenol also improved His-Purkinje conduction in the one patient receiving this drug. No agent affected the duration of the HV interval during spontaneous sinus rhythm or right atrial pacing. Thus, drugs that alter autonomic tone influence abnormal His-Purkinje conduction minimally during sinus rhythm but, importantly, may modulate the atrial pacing cycle length at which type II AV block occurs.

Aged↗

Surgical division of Wolff-Parkinson-White pathways utilizing the closed-heart technique: a 2-year experience in 47 patients.

Kent bundle interruption for ventricular preexcitation has been successfully accomplished utilizing several different surgical techniques. The external closed-heart technique of Guiraudon combining surgical dissection and cryoablation has been used to interrupt 52 accessory pathways in 47 consecutive patients since May, 1985. The 35 male and 12 female patients ranged in age from 10 to 67 years (mean, 30 years). There were 25 left free wall, 13 right free wall, 13 posterior septal, and 1 anterior septal accessory pathways. Preoperative and intraoperative electrophysiological studies were performed in all patients to induce the arrhythmia and localize all accessory pathways. The operation consisted of dissection of the atrioventricular fat pad. Following this, the delta wave and retrograde accessory pathway conduction disappeared, thereby indicating successful pathway ablation. In 4 patients with right-sided accessory pathways, interruption of the pathway required cryoablation. Cryolesions (made with cryoprobe at -60 degrees C for two minutes) were created in the region of the accessory pathway insertion. All accessory pathways were successfully ablated without any deaths or heart block. Concomitant surgical procedures were performed in 4 patients. Two patients required a second operation the next day for an accessory pathway not found at the initial operation. Three patients had postpericardiotomy syndrome, and 4 had recurrent atrial fibrillation requiring therapy. The remaining patients have had no arrhythmia recurrence and have remained drug free after a follow-up of 1 month to 22 months (mean, 12.5 months). We conclude that the closed-heart technique of accessory pathway ablation is safe and reproducible, obviates the necessity for aortic cross-clamping and cardioplegic arrest, and allows instantaneous monitoring of conduction over the pathway.

Adolescent↗