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H Todt

Publications and source records attributed to H Todt.

At least 19 recordsLinked to original sources

Lidocaine has a narrow antiarrhythmic dose range against ventricular arrhythmias induced by programmed electrical stimulation in conscious postinfarction dogs.

The aim of the present study was to investigate the dose-dependent antiarrhythmic efficacy of lidocaine against electrically induced tachycardias in conscious, chronically instrumented postinfarction dogs. Programmed electrical stimulation (PES) was performed in 16 dogs 8 to 21 days after a 4 h occlusion of the left anterior descending coronary artery (LAD). Infusion of saline in 8 control animals with sustained ventricular tachycardia (SVT) inducible at baseline did not affect subsequent inducibility. In the treatment group 7 of 8 animals responded with SVT and one exhibited ventricular fibrillation at baseline. After an initial bolus of 1 mg/kg lidocaine intravenously (i.v.), the drug was infused at infusion rates of 40, 80 and 120 micrograms/kg/min (i.v.). During 80 micrograms/kg/min lidocaine (mean plasma level 3.5 micrograms/ml) 7 out of 8 animals displayed an antiarrhythmic response; both the lower and the higher infusion rate were associated with a smaller antiarrhythmic efficacy (3 of 8 animals responded to 40 micrograms/kg/min and 4 of 8 to 120 micrograms/kg/min). Licocaine did not affect ventricular refractory periods, but induced an increase in intraventricular conduction time at all infusion rates, from 66.2 ms at baseline to 67.7 ms (p less than 0.05), 67.7 ms (p less than 0.05), 70.0 ms (p less than 0.01) respectively. In conclusion the present study demonstrates that lidocaine is of considerable value in the management of PES-induced ventricular arrhythmias in the postinfarction phase. However there is only a small optimal therapeutic plasma level range, where lidocaine exhibits its antiarrhythmic efficacy against this type of arrhythmia; this makes a carefully titration of the drug necessary both in the experimental and in the clinical setting.

Animals

Mode of QT correction for heart rate: implications for the detection of inhomogeneous repolarization after myocardial infarction.

In 22 conscious, chronically instrumented dogs, the relationship between R-R interval and QT interval was better explained by linear regression than by nonlinear regression according to Bazett's formula. The correction formula QTL = QT-0.1*(RR-1000), which is based on the assumption of a linear relationship between QT and R-R interval, was then compared with Bazett's formula regarding its capability to detect inhomogeneous repolarization 5 to 7 days after temporary occlusion of the left anterior descending coronary artery. This comparison was performed only in those dogs exhibiting changes in QRS duration of less than 5 msec in response to myocardial infarction (n = 12). In these animals, myocardial infarction resulted in a significant dispersion of repolarization between the left ventricular normal zone and the infarct zone and a shift to the right of strength-interval curves of the infarct zone with respect to the normal zone, indicating local dispersion of refractoriness. As opposed to QTc (Bazett's formula), QTL was significantly (p = 0.04) prolonged after occlusion. Hence the adequacy of QT correction contributes significantly to the detection of inhomogeneous ventricular recovery after acute myocardial infarction.

Animals

Epicardial His bundle recordings in the guinea pig in vivo.

In small animals, His bundle activity is commonly registered using intracavitary electrodes in Langendorff-perfused hearts. The present study evaluates the feasibility of epicardial registration of His bundle activity in 30 guinea pigs in vivo, anesthetized with 60 mg/kg sodium pentobarbital i.p. Following median sternotomy, a bipolar electrode, mounted on a flexible stand, was placed into the aortic-right atrial groove. His bundle activity was easily detected in all animals. Mean PA, AH, and HV intervals were 16.7 +/- 1.4 msec (range: 6.0-34.0 ms), 36.4 +/- 1.5 ms (range: 22.0-54.0 msec) and 14.4 +/- 0.4 msec (range: 9.0-20 msec), respectively. Administration of verapamil and vagal stimulation induced significant prolongations of AH intervals without affecting HV intervals; lidocaine prolonged both AH and HV intervals. Both at baseline and following drug administration there was excellent agreement between the AH and HV intervals assessed from simultaneously registered epicardial and endocardial His bundle electrograms (n = 12). The presented model provides reproducible values for atrioventricular (AV) nodal and His-to-ventricular conduction intervals in the guinea-pig in vivo and will, thus, be a valuable tool in electrophysiologic drug evaluation.

Animals

Mechanism of antiarrhythmic efficacy of propafenone as assessed by programmed electrical stimulation in conscious dogs.

Programmed electrical stimulation (PES) was performed in 18 conscious, chronically instrumented mongrel dogs 6-21 days after a 4-h occlusion of the left anterior descending coronary artery (LAD). At baseline, 8 of 10 animals responded with sustained ventricular tachycardia (SVT) and 2 of 10 responded with ventricular fibrillation (VF). Cumulative administration of 2 and 4 mg/kg propafenone intravenously (i.v.) prevented induction of the baseline arrhythmia in 7 of 10 (p less than 0.05) and 5 of 10 (p = 0.1) animals, respectively. Cumulative administration of two doses of saline to 8 control animals with SVT inducible at baseline did not affect subsequent inducibility. QRS duration was only slightly prolonged after 2 mg/kg propafenone (+3.5 +/- 1.1 ms, p less than 0.05). Administration of 4 mg/kg was associated with a further increase in QRS duration (+8.0 +/- 2.3 ms, p less than 0.01) and a decrease in sinus cycle length (-60.0 +/- 17.2 ms, p less than 0.05). Propafenone consistently and significantly prolonged ventricular refractoriness only in responders. Furthermore, at both dosages, there was a negative correlation between drug-induced increases in ventricular refractoriness and baseline refractoriness (r = -0.72, p = 0.02; r = -0.81, p = 0.005 with 2 mg/kg and 4 mg/kg propafenone, respectively). Thus, the lesser antiarrhythmic efficacy of 4 mg/kg as compared with 2 mg/kg may result from excessive increases in intraventricular conduction time and/or unfavorable hemodynamic effects of this dose. Furthermore, our study confirms an association of the antiarrhythmic efficacy of propafenone with increases in ventricular refractoriness. In addition, the present investigation demonstrated that such increases in refractoriness are most likely to occur at short baseline values.

Animals

Efficacy of verapamil against ventricular arrhythmias induced by programmed electrical stimulation in the late myocardial infarction phase in dogs.

The aim of the present study was to investigate the antiarrhythmic potential of verapamil in the late myocardial infarction period in conscious dogs. Verapamil was administered in cumulative doses (0.3 + 0.3 mg kg-1). The drug significantly lowered systolic and diastolic blood pressure after both doses. ECG signals showed short-lasting significant decrease in RR and QT intervals together with an increase in QTc interval. The parameters of the atrioventricular conduction system (PQ interval, 2:1 AV-conduction point) were significantly prolonged over the entire observation period. Ventricular effective refractory periods remained unaltered. In contrast to results obtained during acute ischaemia and in the first week thereafter, the present study demonstrates that verapamil moderately increases intraventricular conduction time 14 days after acute myocardial infarction. Verapamil prevented the induction of arrhythmias by programmed electrical stimulation (PES) in only 11% of all induction attempts. The lack of lengthening of refractory periods in the presence of a prolongation of intraventricular conduction time may be responsible for the poor antiarrhythmic efficacy. We conclude that verapamil is only of negligible value for the management of PES-induced ventricular arrhythmias in the late myocardial infarction period.

Animals

The therapy of benign myoclonic epilepsy in infants.

The authors report the results of treatment of 14 patients (10 male, 4 female, average age 20.3 years) with benign myoclonic epilepsy. Valproate monotherapy led to control of seizures in 10 cases, and to a distinct reduction of seizure frequency in 3 cases. Thrombocytopenia was the only side-effect encountered in this study.

Adolescent

Effects of beta-adrenoceptor antagonism upon delayed reperfusion arrhythmias in conscious dogs.

Whereas isolated heart preparations or anesthetized animals have been used to assess the actions of beta-adrenoceptor antagonists upon reperfusion-induced arrhythmias, this study evaluated the possible antiarrhythmic effects of beta-adrenoceptor antagonism in conscious animals. Conscious, chronically instrumented dogs were subjected to a temporary occlusion of the left anterior descending coronary artery for 4 h. After the first hour of reperfusion, flestolol (N-(1,1-dimethyl-2- ureidoethyl)-2-hydroxy-3-(O-fluorobenzoyloxy)-propylamine sulfate), an ultra short-acting beta-adrenoceptor antagonist, was administered i.v. at infusion rates of 1 and 2.6 micrograms/kg per min. A control group received the equivalent volume of saline during this period. Delayed reperfusion-induced arrhythmias were evaluated by using a computerized analysis system. Treatment with flestolol did not affect the total number of beats, the number of normal and ectopic beats, and the arrhythmic ratio, i.e. the ratio of ectopic beats to the total number of beats. Hence, beta-adrenoceptor antagonism does not appear to suppress delayed ectopic activity during coronary reperfusion in conscious dogs.

Adrenergic beta-Antagonists

Ventricular arrhythmias after reperfusion: is there a correlation with infarct size?

The aim of this investigation was to examine whether any correlation exists between enzymatically estimated infarct size and arrhythmias arising in response to coronary reperfusion. Four hour occlusion of the left anterior coronary artery followed by reperfusion was carried out in conscious dogs. Serum creatine phosphokinase (CPK) analysis and planimetric determination of infarct size were performed. The Holter monitoring technique was used to analyze the arrhythmias. A good correlation was observed between the number of premature ventricular complexes (PVC) occurring during 4-h coronary artery occlusion and peak serum CPK values (CPKmax; r = 0.74). While PVC in the early 2-h reperfusion phase and on days 1 and 2 of the late reperfusion phase did not show a correlation with CPKmax nor with occlusion arrhythmias, arrhythmic activity on day 3 of the late reperfusion phase correlated well with CPKmax (r = 0.71) and occlusion arrhythmias (r = 0.75). Whereas it cannot be ruled out that arrhythmias on days 1 and 2 are related to coronary reperfusion as well as to the established infarction, we speculated that arrhythmias on day 3 are delayed arrhythmias in response to the occlusion procedure and not a consequence of reperfusion. Providing that arrhythmias occurring in the early reperfusion phase are almost exclusively induced by the arrhythmogenic phenomenon of reperfusion, we conclude that in contrast to occlusion arrhythmias, reperfusion arrhythmias are not markers of infarct size. Thus, a higher number of arrhythmias after reperfusion is not necessarily associated with a larger infarct size.

Animals

[Cardiovascular pharmacology. An example of the need of clinically relevant pharmacological research].

Like all other scientific disciplines, preclinical pharmacological research is subject to permanent changes. New measuring devices and the possibility of continuous on line data acquisition have markedly influenced basic research in this field. Another aim of modern cardiovascular pharmacology is the testing of promising drugs in clinically relevant animal models of disease, particularly under conditions, referring to the everyday situation in patients, e.g. physical activity. Investigations carried out in this way allow an exact assessment of the clinical efficacy of new drugs, and are, thus, clearly indispensable, also from the ethical point of view, before primary evaluation of the drug in man.

Angina Pectoris

Programmed electrical stimulation after myocardial infarction and reperfusion in conscious dogs.

The hemodynamic and electrophysiologic variables and the inducibility of arrhythmias were studied before coronary artery occlusion (CAO, 4h) and on days 4, 14, and 28 of the late reperfusion phase in conscious, chronically instrumented dogs. Despite a lack of significant changes in the hemodynamic and the electrophysiologic variables, the response to programmed electrical stimulation (PES) before and after CAO with subsequent reperfusion varied substantially. Before intervention arrhythmias such as sustained ventricular tachycardia (SVT) or ventricular fibrillation (VFib) could not be induced by PES via ultrasonic crystals located subendocardially (LAD and LCX region) or via common stimulation electrodes (right ventricle) in any of six instrumented animals. All six animals were inducible after CAO and reperfusion. Five animals showed SVT and one animal showed VFib in response to stimulation on days 4 and 14 of the late reperfusion phase after CAO. On day 28 four animals showed SVT, and two showed VFib. Antiarrhythmic drug testing carried out in the late reperfusion phase with lidocaine (1 mg/kg bolus followed by continuous infusion) revealed 50% efficacy at a dosage of 40 micrograms/kg/min, 100% at 80 micrograms/kg/min, and 67% at 120 mu/kg/min. The persistent inducibility of arrhythmias for the entire experimental period of 24 days may be attributable to the following features of our model: 1. Electrical stimulation carried out from three different locations. 2. The use of up to three extrastimuli in the PES studies. 3. The use of conscious dogs during CAO, reperfusion, and PES. This novel experimental approach thus promises to be of clinical relevance for the investigation of new antiarrhythmic drugs.

Animals

Antiarrhythmic efficacy of labetalol as assessed by programmed electrical stimulation.

1. The purpose of the present study was to investigate the haemodynamic, electrophysiological and antiarrhythmic effects of labetalol in the late reperfusion phase after myocardial infarction in conscious dogs. 2. Labetalol was administered in cumulative doses (0.5, 1 and 3 mg kg-1 90 min-1, i.v.). Compared to control the systolic blood pressure was significantly decreased 20 min after 0.5, 1 and 3 mg kg-1 and up to 30 min after 3 mg kg-1 labetalol. The diastolic blood pressure was significantly decreased 20 and 30 min after 0.5 and 3 mg kg-1 but was not significantly altered after 1 mg kg-1 labetalol. 3. Labetalol significantly increased the PQ, QRS, QT and QTc intervals, the 2:1 AV-conduction point, the ventricular effective refractory periods and the intraventricular conduction time from the apex of the right ventricle to the infarcted LAD-area. With the exception of the alterations in the PQ interval and 2:1 AV-conduction point the effects described above were dose-dependent. 4. Labetalol was active against arrhythmias induced by programmed electrical stimulation. This effect was already present after the lowest dose (0.5 mg kg-1). 5. The good antiarrhythmic activity of labetalol in this study can be explained by the adrenoceptor blocking properties and both the class I and III activity of this drug. Labetalol may be of potential benefit in controlling arrhythmias arising following myocardial infarction.

Animals

[The value of sleep EEG following sleep deprivation before terminating anticonvulsive therapy in epileptic children and adolescents].

A sleep electroencephalogram was carried out after deprivation of sleep in 70 epileptic children and young people. The EEG was done before an intended reduction of anticonvulsants. Patients who had generalized paroxysmal patterns in the sleep EEG suffered from significantly more frequent relapse after and of therapy than those ones with local paroxysmal activity or electroencephalogram without paroxysmal activity respectively. A sleep EEG after deprivation of sleep should be carried out before a decision is made on the end of the therapy in patients with expected generalized paroxysmal patterns.

Adolescent

[Ptosis as the leading symptom of Kearns-Sayre syndrome. A case report for differential diagnosis of external ophthalmoplegia].

Progressive external ophthalmoplegia has generally been considered a brainstem syndrome, but new investigative techniques have identified a variety of etiologies. We report a 17-year-old girl in whom Kearns-Sayre syndrome presented as unilateral ptosis with progression to bilateral ptosis, and discuss the clinical, biochemical, electrophysiological, histopathological and computerized tomographical findings.

Adolescent

[Multiple sclerosis with early manifestation in children].

From the starting point of cases reported in literature, five of the authors' own cases are reported in which multiple sclerosis had its origins not later than in the fourteenth year of the patient's life. There is no basic difference from adult cases in respect of neurological symptoms, course, and cerebrospinal-fluid condition, but unmistakably, well remitting episodic courses were in the foreground, multilocular failures preponderated, and cerebral symptoms predominated over spinal symptoms. As in adult cases, females were more commonly affected. There were inflammatory changes in the cerebrospinal fluid.

Adolescent

Holter monitoring in conscious dogs. Assessment of arrhythmias occurring during ischemia and in the early reperfusion phase.

Myocardial ischemic episodes of 5 min, 15 min, and 4 hr duration, with interposed reperfusion periods, were induced in the same conscious, chronically instrumented dogs. A drop in systolic blood pressure and an increase in heart rate and in the arrhythmic ratio (AR% = number of ectopic beats x 100/total number of beats, as assessed by Holter monitoring) was registered in response to the induction of myocardial ischemia. Reperfusion-induced salvage after coronary occlusion of 5 and 15 min duration was documented by an immediate return of systolic blood pressure, heart rate, and AR to the preocclusion control level. However, after coronary occlusion lasting for 4 hr, reperfusion induced a further drop in blood pressure and an increase in heart rate and in AR. We conclude that in conscious dogs, reperfusion-induced arrhythmias do not occur after short-lasting myocardial ischemic episodes. Reperfusion after long-lasting ischemia induces marked ventricular ectopic activity, yielding an arrhythmic ratio of more than 80%. Although these reperfusion-induced arrhythmias impair the hemodynamic state, they are well tolerated in the conscious dog and can be assessed by the Holter monitoring technique. This new experimental approach promises to be of clinical relevance for investigations on the therapeutic efficacy of new antiarrhythmic drugs.

Animals

Holter monitoring in conscious dogs. Assessment of arrhythmias occurring in the late reperfusion phase after coronary occlusion.

Arrhythmias occurring in the late reperfusion phase, i.e., up to 3 days after episodes of 5 min, 15 min, and 4 hr of coronary occlusion (CAO), were investigated in six conscious, chronically instrumented dogs using the Holter monitoring technique. The arrhythmic ratio (AR% = number of premature ventricular complexes x 100/total number of beats) of a 24-hr preocclusion control record was 0.004% and did not differ from the values assessed for day 1 (0.004%) and 2 (0.001%) of the late reperfusion phase after 5 min CAO. After 15 min, CAO increased, but insignificantly elevated AR values were registered on days 1 (2.5%), 2 (0.26%), and 3 (0.1%) of the late reperfusion phase. On day 1 of the late reperfusion phase after 4 hr CAO, the AR increased markedly to 75%. On day 2 of this phase, the AR was lower (20%) but still significantly elevated. On day 3, the AR was 3.5%, a value still markedly, although not significantly, above the preocclusion control level. We conclude that in conscious dogs, arrhythmias in the late reperfusion phase do not occur after 5 min CAO. However, after 15 min CAO and, especially, after 4 hr CAO, an increase in arrhythmic activity occurs in the late reperfusion phase and gradually declines towards the preocclusion control level over a period of 3 days. Thus, it could be demonstrated that the long-term assessment of reperfusion arrhythmias by ECG monitoring using the Holter technique is feasible in conscious dogs. This method represents a promising approach to clinically relevant experimental investigations on the therapeutic efficacy of a new antiarrhythmic drugs.

Animals