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Biomedical subjects

R A Winkle

Publications and source records attributed to R A Winkle.

At least 55 records · Page 3Linked to original sources

Metabolite cumulation during chronic propafenone dosing in arrhythmia.

The cumulation of propafenone and two of its metabolites, 5-hydroxypropafenone (5-OHP) and N-depropylpropafenone (NDPP), was examined in patients with frequent ventricular ectopy. After 2 weeks of propafenone therapy (300 mg twice a day), propafenone was discontinued and blood samples were drawn for 24 hours. The mean (+/- SD) steady-state concentrations of propafenone, 5-OHP, and NDPP were 1010 +/- 411, 174 +/- 113, and 179 +/- 93 ng/ml. The concentration ratios of 5-OHP/propafenone and NDPP/propafenone were 0.177 +/- 0.049 and 0.227 +/- 0.203. Plasma concentrations of 5-OHP and NDPP did not decay in a log-linear manner during the sampling period and thus estimates of their disappearance t1/2s were not possible. At 24 hours after propafenone dosing, concentrations of 5-OHP and NDPP were 63% +/- 37% and 50% +/- 21% of their mean steady-state levels. Our data indicate that these propafenone metabolites cumulate in the plasma during chronic oral propafenone therapy, and that their clinical role needs to be elucidated.

Adult↗

Clinical experience, complications, and survival in 70 patients with the automatic implantable cardioverter/defibrillator.

Seventy patients received the automatic implantable defibrillator, five original devices and 72 modified second-generation devices using only bipolar rate sensing and delivering an R wave synchronous cardioverting/defibrillating shock, for either ventricular tachycardia or fibrillation. The primary clinical arrhythmia was sustained ventricular tachycardia in 32 patients, ventricular fibrillation in 20 patients, and both ventricular tachycardia and fibrillation in 18 patients. Before implantation of the device the patients had survived 3.1 +/- 2.3 arrhythmic episodes, including 1.9 +/- 1.7 cardiac arrest, and had received 4.0 +/- 2.1 antiarrhythmic drugs without improvement. Sixty-eight patients ultimately received devices. After a follow-up period of 8.9 +/- 7.7 months (range 1 to 33), 37 patients received a total of 463 discharges. Inability to determine the precise reason for most discharges and the unpleasant nature of the discharges were the major clinical problems encountered. Complications included postoperative death (one patient), lead problems (six patients), inadequate energy requiring explanation (two patients), and pocket infection (one patient. Life-table analysis revealed 6 and 12 month cardiovascular survival of 95.0% and 89.9% and sudden death survival of 98.2%. In our experience, survival with the automatic implantable cardioverter/defibrillator exceeds that with other forms of therapy.

Arrhythmias, Cardiac↗

Facilitation of ventricular tachyarrhythmia induction by isoproterenol.

Ventricular tachyarrhythmia induction was facilitated during infusion of isoproterenol in 21 of 60 patients with ventricular tachycardia (VT) or ventricular fibrillation (VF) in whom programmed electrical stimulation alone failed to reproducibly induce sustained ventricular tachyarrhythmias. Of 44 patients with no ventricular tachyarrhythmias induced before isoproterenol infusion, 11 had a sustained ventricular tachyarrhythmia and 1 patient had unsustained VT induced by isoproterenol alone or by programmed stimulation during the infusion. In 9 of 16 patients in whom nonreproducible or unsustained ventricular tachyarrhythmias were induced before isoproterenol infusion, more reproducible or more sustained ventricular tachyarrhythmias were induced during the infusion. Tachyarrhythmia induction was facilitated by isoproterenol in 20 of 40 patients with sustained VT clinically, but in only 1 of 20 patients with unsustained VT or VF clinically. Among patients with sustained VT clinically, those with exercise-provoked VT and those who had not been tested with stimulation at a second right ventricular site or in the left ventricle were more likely to have induction facilitated by isoproterenol. Drugs effective against induction of isoproterenol-facilitated ventricular tachyarrhythmias were identified in 13 of 25 trials. These drugs were effective during a mean follow-up of 17 months in 7 of 9 long-term trials.

Anti-Arrhythmia Agents↗

Clinical efficacy and electrophysiology of imipramine for ventricular tachycardia.

Invasive electrophysiologic studies were performed before and during treatment with imipramine in 18 patients with inducible ventricular tachycardia (VT). All received imipramine, 50 mg twice daily for 3 days, and then 100 mg twice daily for 3 days. Imipramine increased the infranodal conduction times (HV) (from 58 +/- 7.8 to 65 +/- 10 ms) and QRS duration (from 133 +/- 21 to 153 +/- 39 ms) and significantly decreased sinus cycle length (from 875 +/- 145 to 711 +/- 116 ms) and maximal corrected sinus nodal recovery time (from 457 +/- 656 to 380 +/- 603 ms). The Wenckebach cycle length tended to decrease and the QT interval to increase, but these changes were not statistically significant. Atrial and ventricular refractory periods, atrioventricular nodal conduction times and induced VT cycle length did not change significantly. Imipramine prevented induction of VT in 2 patients, and VT was more difficult to induce in 1 patient. These 3 patients received chronic imipramine therapy. The 2 patients in whom no VT could be induced while taking imipramine have had no recurrence of arrhythmia at 6 and 12 months of follow-up. The third patient died suddenly 4 months after discharge from the hospital. One patient had worsening of arrhythmias while taking imipramine and 61% had minor adverse effects. The mean combined plasma imipramine and desmethylimipramine concentration at the time of the repeat electrophysiologic study was 227 +/- 114 ng/ml. Imipramine is effective against VT in some patients; however, like other type I antiarrhythmic drugs, the rate of efficacy is low.

Adult↗

Pharmacodynamics of the initiation of antiarrhythmic therapy with lorcainide.

Lorcainide is an antiarrhythmic drug with unusual pharmacokinetics and an active metabolite, norlorcainide, which complicate oral drug loading. In order to characterize the accumulation of lorcainide and norlorcainide and to define the onset of antiarrhythmic action during lorcainide loading, 9 patients with frequent ventricular ectopic beats were studied. During lorcainide loading with 100 mg orally twice daily, frequent ambulatory electrocardiographic recordings were monitored and blood samples for drug concentrations were determined. There was a 10-fold range of intersubject variation in plasma concentrations. Despite a half-life of only 8.9 +/- 2.3 hours, lorcainide did not reach steady state until after 4.5 days of therapy. Norlorcainide had a half-life of 26.5 +/- 7.2 hours and was estimated to come to steady state after 7 to 10 days. There was considerable intersubject variation in time of onset of antiarrhythmic response (2 to more than 4.5 days) and a 4- to 5-fold range of intersubject variation in threshold therapeutic plasma concentration (lorcainide 40 to 200 ng/ml, norlorcainide 80 to 300 ng/ml). These observations suggest that lorcainide should be started at low doses and the dose should not be increased more frequently than once a week.

Administration, Oral↗

Propafenone disposition kinetics in cardiac arrhythmia.

Propafenone disposition kinetics were studied after intravenous and oral doses in patients with ventricular arrhythmias. Plasma concentration-time data were fit to a two-compartment model for all but one patient, whose data required fitting to a three-compartment model. The model-independent calculated values of clearance, steady-state volume of distribution, and terminal t1/2 were 11.2 +/- 4.8 ml/min/kg, 3.6 +/- 2.1 l/kg, and 5.0 +/- 3.6 hr. After 5 days on oral propafenone, elimination t1/2 was 6.2 +/- 3.3 hr. The longer t1/2s and the estimates of steady-state bioavailability above 100% suggests that clearance decreases during chronic oral dosing. Considerable intersubject variability was noted in all disposition parameters.

Adult↗

Electronic control of ventricular tachyarrhythmias: overview and future directions.

Although pacing techniques for the termination of ventricular tachycardia are successful in some patients, the widespread use of these devices has not been possible until the recent availability of high energy (25 J) automatic defibrillators. The implantable defibrillator will serve both as a primary means of arrhythmia termination and as backup device to treat pacer mediated acceleration of ventricular tachycardia. The subsequent mortality of patients with ventricular tachycardia and/or fibrillation should diminish considerably.

Cardiac Pacing, Artificial↗

Recordings of basal ventricular preexcitation from electrode catheters in patients with accessory atrioventricular connections.

To determine the effects of ventricular preexcitation via accessory atrioventricular connections (ACs) on the sequence of basal ventricular activation, electrophysiologic study records of 22 patients with AC were reviewed. In each, AC site was confirmed by mapping done at operation. Local ventricular preexcitation (VP), defined as earlier timing of a local ventricular electrogram relative to the surface electrocardiographic QRS onset in preexcited compared with in normal QRS complexes, was assessed at the coronary sinus and at the ventricular septal summit recorded from the His bundle site. Five patients with concealed AC did not have VP. VP patterns with manifest AC were similar during average fusion QRS complexes and maximum ventricular preexcitation. Left free wall and left crux AC produced VP apparent on the ventricular electrogram recorded at the coronary sinus alone. With anteroseptal AC, VP was noted only at the ventricular septal summit. Posteroseptal AC produced VP that was apparent on the ventricular electrogram recorded at the coronary sinus and on the electrogram of the ventricular septal summit. Right free wall AC preexcited neither of these basal ventricular regions. The observation of VP patterns may help in localizing AC and may be particularly useful in patients without retrograde AC function at electrophysiologic study.

Adolescent↗

Measurement of cardioversion/defibrillation thresholds in man by a truncated exponential waveform and an apical patch-superior vena caval spring electrode configuration.

Defibrillation/cardioversion thresholds were measured in 33 patients undergoing defibrillator implants. Each patient had a 12 cm2 patch placed near the left ventricular apex via a thoracotomy and a 10 cm2 spring lead placed pervenously at the right atrial-superior vena caval junction. Ventricular tachycardia of stable morphology, polymorphic ventricular tachycardia, or ventricular fibrillation was induced four times in each patient and 1, 5, 10, and 25 J truncated exponential shocks with 60% tilt were given in a random sequence. The conversion rate was constant (77%, 86%, 87%, 85%) with increasing energy for ventricular tachycardia but progressively increased for polymorphic ventricular tachycardia and ventricular fibrillation (8%, 33%, 58%, 92%). The ventricular tachycardia acceleration rates for 1, 5, 10, and 25 J were 23%, 14%, 10%, and 15%. Patients not reliably converted with 25 J may require repositioning of leads or two patches. We conclude that for the spring-patch electrodes, increasing energy from 1 to 25 J improves the conversion rate for polymorphic ventricular tachycardia and ventricular fibrillation; the ventricular tachycardia conversion rate is constant. Acceleration of ventricular tachycardia occurs at all energies. Defibrillator implantation requires extensive intraoperative electrophysiologic testing to ensure safe and reliable termination of ventricular tachycardia and fibrillation.

Adult↗

Clinical efficacy and electrophysiology of oral propafenone for ventricular tachycardia.

Sixteen patients with ventricular tachycardia (VT) or nonfatal cardiac arrest were treated with propafenone (P), 900 mg/day. Electrophysiologic studies were performed before and during therapy with P. All patients had inducible sustained VT at the baseline study. During P therapy, VT was not inducible in 1 patient, was unsustained in 1 and was harder to induce in 2 patients. P increased the cycle length of VT from 307 +/- 67 to 382 +/- 107 ms. Five patients began outpatient therapy with P, including 2 in whom VT was slowed to less than 125 beats/min. Two are arrhythmia-free during follow-up of 2 and 8 months. P significantly increased intraatrial conduction time (from 44 +/- 12 to 72 +/- 22 ms), AH interval (from 115 +/- 36 to 152 +/- 45 ms), HV interval (from 55 +/- 18 to 92 +/- 42 ms), QRS duration (from 140 +/- 36 to 180 +/- 48 ms) and QT interval (from 402 +/- 30 to 459 +/- 60 ms). P increased atrial (from 247 +/- 36 to 288 +/- 38 ms) and ventricular (from 249 +/- 20 to 277 +/- 32 ms) effective refractory periods, Sinus cycle length did not change, but the corrected sinus node recovery time increased (from 162 +/- 85 to 821 +/- 1,607 ms). P aggravated arrhythmias in 4 patients. The plasma P concentration, measured either at the time of electrophysiologic studies of when therapy was discontinued, was 753 +/- 428 ng/ml. P suppressed ventricular ectopic beats in 33% and increased them in 1 patient. P has antiarrhythmic activity against VT similar to that of other antiarrhythmic drugs and has potential for serious adverse effects in some patients.

Administration, Oral↗

Hemodynamic effects of antiarrhythmic drugs.

In order to use antiarrhythmic drugs safely, one must understand their hemodynamic effects. Quinidine and the calcium antagonists have direct cardiac effects and frequently opposing autonomically mediated or indirect cardiac effects. Lidocaine is exceptionally well tolerated, even by patients with severe left ventricular dysfunction. Phenytoin and procainamide have the potential for serious adverse effects, but are generally well tolerated at usual doses. Disopyramide causes serious depression of left ventricular function in many patients because of its direct myocardial depressant and peripheral vasoconstricting actions. Although bretylium causes an immediate increase in contractility, it can ultimately result in important hypotension. In this review the in vitro and in vivo hemodynamic effects of these and other antiarrhythmic drugs are discussed to provide information that will assist the clinician in using these drugs properly.

Amiodarone↗

Cardiac arrhythmia and conduction disturbances during sleep in 400 patients with sleep apnea syndrome.

This report presents the first study of cardiac arrhythmias and conduction disturbance in a large group (400 patients) with sleep apnea syndrome studied between 1974 and 1979 with 24-hour Holter electrocardiography and a simultaneously recorded polygraph during late afternoon or nocturnal sleep. Of the 400, 193 patients (48%) had cardiac arrhythmias during the recorded night. The mean number of apneic events, age, weight and lowest oxygen saturation during sleep were not significantly different in those with arrhythmias. The most significant abnormalities were unsustained ventricular tachycardia in 8 patients, sinus arrest that lasted for 2.5 to 13 seconds in 43 patients, and second-degree atrioventricular conduction block in 31. Seventy-five had frequent (greater than 2 beats/min) premature ventricular contractions during sleep. Fifty patients with significant arrhythmias had a tracheostomy and were monitored again after surgery. No arrhythmia was present in these patients except for premature ventricular contractions.

Adult↗

Determinants of survival in patients with ventricular tachyarrhythmias.

We analyzed data from 239 patients with sustained ventricular tachycardia or ventricular fibrillation to determine prognosis, predictors of survival, and the prognostic value of inducing arrhythmia and assessing therapy at the time of electrophysiologic study. Therapy predicted to be effective on the basis of electrophysiologic study was administered over a sustained period. There were 71 cardiac deaths, including 44 sudden deaths, during a mean (+/- S.D.) follow-up period of 14.8 +/- 13.9 months (range, one day to 67 months). At one, two, and three years, the actuarial incidence of sudden death was 17 +/- 3, 25 +/- 4, and 34 +/- 6 per cent, and that of cardiac death was 28 +/- 3, 37 +/- 4, and 50 +/- 6 per cent. Multivariate regression analyses demonstrated that the two strongest predictors of both sudden death and cardiac death were a higher New York Heart Association functional class (P less than 0.0001 for sudden death and P less than 0.0001 for cardiac death) and the failure of any therapy to be identified as potentially effective on the basis of electrophysiologic study (P = 0.0019 and P = 0.0003). The majority of deaths in patients with ventricular tachyarrhythmias were sudden, but the severity of heart failure was the strongest independent predictor of mortality. Response to therapy during electrophysiologic study was also an independent predictor of survival.

Adult↗

The automatic implantable defibrillator: local ventricular bipolar sensing to detect ventricular tachycardia and fibrillation.

The first-generation automatic implantable defibrillator implanted in man sensed arrhythmias by monitoring a transcardiac electrocardiographic signal. This sensing system reliably detected ventricular fibrillation and sinusoidal ventricular tachycardia but failed to sense all nonsinusoidal ventricular tachycardias. To solve this problem, a new ventricular tachycardia detection scheme was developed using a local ventricular bipolar electrogram and electronic circuits using rate averaging and automatic gain control to permit sensing of electrograms down to 0.1 mV. This detection scheme was tested during electrophysiologic studies in 11 patients with ventricular tachycardia and fibrillation. All 22 episodes of induced ventricular tachycardia with a rate above the selected cutoff were detected after an average of 5.1 +/- 1.8 seconds. No episodes below the rate cutoff were detected. The bipolar circuits also reliably detected ventricular fibrillation. Arrhythmia detection and signal quality in 9 patients receiving automatic defibrillators using the new bipolar rate detection circuit were compared with the findings in 5 patients previously receiving units that sensed arrhythmias using the transcardiac electrocardiographic signal. Compared with the transcardiac monitoring units the newer bipolar units had shorter and more uniform sense times (5.5 +/- 1.4 versus 12.2 +/- 7.1 seconds). It is concluded that malignant ventricular tachyarrhythmias can be sensed accurately using bipolar rate detection and that this system has numerous advantages over the previously used transcardiac electrocardiographic signal.

Aged↗

Possible contribution of encainide metabolites to the long-term antiarrhythmic efficacy of encainide.

To establish long-term efficacy and the relation between drug plasma concentration and antiarrhythmic response, 12 patients with encainide-responsive frequent complex ventricular ectopic activity underwent 1 year of therapy with encainide. Twenty-four hour ambulatory electrocardiograms were obtained at baseline and every 2 months. Drug withdrawal with concomitant plasma sampling and electrocardiographic monitoring was performed at 6 and 12 months. Average group premature ventricular contraction (PVC) suppression during the year was 97 to 99%, with nearly total suppression of pairs and salvos. The most common adverse effects were transient visual disturbances and dizziness or lightheadedness. During a dose interval (6 to 12 hours) the concentration of encainide metabolites exceeded that of encainide by several-fold. The median time of arrhythmia return after drug withdrawal was 12 to 14 hours. At the time of arrhythmia return encainide was generally no longer detectable but the average concentration of O-demethylencainide and 3 methoxy-O-demethylencainide was 72 +/- 49 and 172 +/- 74 ng/ml, respectively. It is concluded that encainide therapy is extremely effective for continuous long-term suppression of complex ventricular arrhythmias and its metabolites contribute significantly to its antiarrhythmic action during chronic oral therapy.

Adult↗

Safety and efficacy of intravenous quinidine.

The safety and efficacy of intravenous quinidine were evaluated in a patient population with a high prevalence of left ventricular dysfunction and intraventricular conduction delays. Quinidine gluconate (mean dose 9.1 +/- 1.6 mg/kg) was administered during electrophysiologic study to 100 patients with ventricular or supraventricular tachyarrhythmias. Clinical heart failure was present in 68 percent of the patients. Left ventricular end-diastolic pressure, cardiac index, and left ventricular ejection fraction were abnormal in 62, 48, and 70 percent, respectively. Major intraventricular conduction delays (QRS of 120 msec or more) were present in 27 percent, and the H-V interval was prolonged (over 55 msec) in 28 percent. Despite the prevalence of these abnormalities, quinidine was discontinued because of hypotension in only 10 patients. Saline solution was infused to maintain preload in 37 percent, and hypotension responded promptly to saline solution infusion or discontinuation of quinidine infusion in all subjects. Hypotension was not more common in patients with more severe left ventricular dysfunction. QRS duration, H-V interval, QTc, and right ventricular effective refractory period increased significantly (p less than 0.001) after quinidine administration. Heart block or QRS widening of 50 percent or more did not occur. Quinidine prevented arrhythmia induction in 26 percent of patients who received full doses. Ventricular tachycardia cycle length increased in all 41 patients in whom identical forms were induced before and after quinidine (287 +/- 71 msec versus 361 +/- 93 msec, p less than 0.001). Intravenous quinidine may be administered safely to patients with intraventricular conduction delays and moderate heart failure. When antiarrhythmic efficacy is assessed by electrophysiologic study, quinidine compares favorably with other antiarrhythmic agents.

Arrhythmias, Cardiac↗