PubMed Health⌕ Search

Biomedical subjects

M López Gil

Publications and source records attributed to M López Gil.

At least 19 recordsLinked to original sources

[Transient complete atrioventricular block following a nonpenetrating chest trauma].

Cardiac contusion may cause disorders of impulse formation and propagation in the specific conduction system. Transient complete atrioventricular block following a nonpenetrating chest trauma is a rare complication.We describe the case of a patient who presented a transient complete atrioventricular block, and later a transient right bundle branch block and a left anterior hemiblock, following a nonpenetrating chest trauma due to a car accident. The difficulty for diagnosing myocardial contusion is pointed out, and the usefulness of the electrophysiological study for detecting baseline conduction system disorders is discussed.

Accidents, Traffic↗

Radiofrequency ablation of atrial tachycardia and atrial flutter.

Atrial endocardial mapping defines the activation pattern during regular atrial arrhythmias. The response to pacing (entrainment mapping) yields additional information about the mechanism and location of the circuit. Regarding radiofrequency ablation, the regular atrial tachycardias may be classified in two broad patterns: 1) macroreentrant tachycardias, characterized by circular activation, including typical atrial flutter and reentry around scars, and 2) focal tachycardias, characterized by radial activation from a small myocardial area. Catheter ablation of right atrial macroreentrant circuits and focal tachycardias are now standard procedures. The target for ablation of focal tachycardia is the point of earliest activation, and single application is effective in most cases. Ablation of macroreentrant tachycardias requires identifying a narrow isthmus inside the circuit, and linear ablation is needed in most cases. The goal of radiofrequency ablation for typical atrial flutter is to interrupt conduction across the inferior vena cavatricuspid valve isthmus. The procedure is highly effective and safe, although recurrences of the arrhythmia are not rare. Incisional macroreentrant tachycardias after surgical correction of congenital heart diseases and primary cardiac tumors may also be ablated identifying critical isthmuses in the circuit by a combination of mapping and entrainment techniques. Left atrial macroreentry is much less known and at present more information is needed before catheter ablation becomes a standard procedure.

Adult↗

[Endocardial ablation of substrate of postinfarction ventricular tachycardia during sinus rhythm].

OBJECTIVE: Radiofrequency ablation of ventricular tachycardia requires good tachycardia tolerance during mapping and entrainment, and this limits its application. We present our initial experience with ventricular tachycardia ablation during sinus rhythm in 7 patients with previous inferior myocardial infarction. METHODS: Seven men, 56-70 years old (mean +/- SD, 65 +/- 4.5) were included in the study. Ventricular tachycardia was unstable in 6 and in 1 it was induced non-sustained. The scar was localized by recording low-voltage, fragmented electrograms (< 2 mV). Ventricular tachycardia "exit" was localized by pace-mapping in sinus rhythm. Radiofrequency lines were made radially, point by point, from normal to scarred tissue. One of the lines crossed the exit area. The objective was to achieve non-inducibility. RESULTS: Sustained clinical ventricular tachycardia was induced in 6 and non-sustained in 1. Two-four lines were performed per patient with 11-28 (21 +/- 5.4) radio frequency applications. The procedure duration was of 130-280 min (230 +/- 61) and being 49-75 min (63 +/- 7.9) for fluoroscopy. There were no complications. Clinical ventricular tachycardia became non-inducible in 6, although in 4 a rapid (cycle < or = 250 ms), non-clinical ventricular tachycardia remained inducible. Defibrillators were implanted in the patient remaining inducible for clinical ventricular tachycardia and another with > 60 tachycardia episodes the previous week. During 3-22 months (13.8 +/- 5.9) of follow-up, 1 patient died of heart failure at 20 months and another received 3 defibrillator shocks for VT at 13 months. There were no other episodes of ventricular tachycardia, syncope or sudden death. CONCLUSIONS: This preliminary experience suggests that radiofrequency ablation of post-infarction ventricular tachycardia substrate is possible during sinus rhythm, suggesting that radiofrequency ablation may be applicable in a large proportion of patients with post-infarction sustained ventricular tachycardia.

Aged↗

Ventricular fibrillation induced by rapid atrial rates in patients with hypertrophic cardiomyopathy.

AIMS: To describe the mechanisms of induction of ventricular fibrillation (VF) by rapid atrial rates in patients with hypertrophic cardiomyopathy (HCM). METHODS: Electrophysiological studies, management and follow-up in three patients with HCM with VF induced by atrial pacing. RESULTS: In one patient, spontaneous sinus tachycardia triggered VF. In another patient, VF occurred after verapamil infusion during rapid atrial fibrillation, and in the remaining patient there was no clinical VF. In all three patients, short runs of atrial pacing (cycle length 272-380 ms) induced VF, and QRS widening preceded fibrillation in all patients. Marked ventricular electrogram fragmentation was documented in one patient during atrial pacing and in another patient during late ventricular extra-stimuli. Hypotension was associated with sinus tachycardia in one patient. The two patients developing clinical VF underwent atrioventricular (AV) junctional ablation; a ventricular defibrillator was implanted in one, and a mode-switching dual-chamber pacemaker in the other. No arrhythmic events occurred during 34- and 35-month follow-up, respectively. In the other patient, postatrial fibrillation pauses caused syncope, and he is asymptomatic 52 months after implantation of a dual-chamber pacemaker. CONCLUSIONS: Rapid atrial rates can trigger VF in some patients with HCM, probably through a combination of electrophysiological and ischaemic mechanisms. AV junctional ablation may prevent VF in selected cases.

Adolescent↗

[The ablation of atrial flutter. The long-term results after 8 years of experience].

OBJECTIVE: Since the 1990's radiofrequency ablation radiofrequency ablation of atrial flutter has evolved in its methods and results. We have reviewed the long term outcome in 62 patients with typical (common) or reversed (clockwise) flutter undergoing radiofrequency ablation between 1990 and 1997. PATIENTS AND METHODS: Fifty men and 12 women, aged 22-78 years (57 +/- 12) with flutter recurring after cardioversion and antiarrhythmic drugs make this series. Flutter was typical in 59 cases and reversed in 3. There was no heart disease in 14, bronchopulmonary disease in 10, coronary disease in 9, cardiomyopathies in 6 and other processes in the remainder. In 5 cases with previous surgery for atrial or ventricular septal defect, Ebstein's anomaly or myxoma, we treated also a macro-reentry tachycardia around the atriotomy in the right atrium. Radiofrequency ablation was directed to the inferior vena cava-tricuspid isthmus in typical and reversed flutter, and to the isthmus between the inferior end of the atriotomy and the inferior vena cava, in the lateral right atrium, in the atriotomy tachycardias. We subdivided our patients in Group 1 (24 patients), treated until the end of 1994, and Group 2 (38 patients) treated since 1995 using specially designed catheters and trying to produce isthmus block as the endpoint of the procedure. RESULTS: Radiofrequency ablation interrupted flutter in 61 of 62 cases (98.4%), and the atriotomy tachycardia in all 5. The number of application in Group 1 was 18.6 +/- 10.1 vs 12 +/- 10 in Group 2 (p < 0.05). Follow-up was 40 +/- 24 months in Group 1 vs 16 +/- 9.5 in Group 2. Flutter recurred in 58% of Group 1 and 13% of Group 2 patients (p < 0.001), usually 1-3 months after radiofrequency ablation and they were successfully treated by new radiofrequency ablation with a small number of applications. There was no recurrence of atriotomy tachycardia. Atrial fibrillation occurred in 14 patients (23%) (11 paroxysmal, 3 persistent), with equal incidence in both groups. At the end of follow-up 85% of the patients were in sinus rhythm, although 6 needed pacemakers for sinus node dysfunction (3) or AV ablation (3). Antiarrhythmic drugs were used by 46% of patients in Group 1 and 26% in Group 2 (p = NS) for atrial arrhythmias or recurrent flutter. CONCLUSIONS: Radiofrequency ablation is an effective treatment for flutter and macro-reentry atriotomy tachycardia. Progress in methods have improved results significantly. Atrial fibrillation can still be a problem in 20-25% of the patients after flutter control.

Adult↗

[Hypertensive cardiopathy and arrhythmias].

The anatomical and tissue changes caused by hypertension are responsible of the higher incidence of atrial and ventricular arrhythmias as compared to normal population. Hypertension, when associated with atrial fibrillation, becomes an important risk factor for systemic embolism. Atrial dilatation and/or fibrosis because of haemodynamic overload due to left ventricular hypertrophy are the arrhythmic substrate. The higher incidence of ventricular arrhythmias is related to left ventricular hypertrophy. Ventricular premature beats, frequent and/or polymorphic in most of the cases, and short runs are the usual picture. Sustained ventricular tachycardia is seldom documented. The substrate is created by hypertrophy itself, resulting in conduction disturbances favoring reentry. Associated myocardial ischemia plays an important role in the genesis of ventricular arrhythmias. Left ventricular hypertrophy is associated with an increased incidence of total cardiac death and sudden death. Ventricular arrhythmias are suggested to be a poor prognostic factor. The aim of this article is to offer a simplified review of the meaning of cardiac arrhythmias in the hypertensive patient, and to give some clues to the practical approach in the clinical setting.

Arrhythmias, Cardiac↗

[Hemodynamic and electrophysiologic changes in hypertrophic cardiomyopathy].

Hypertrophic cardiomyopathy is characterized by abnormalities of the myocardium, and the activation and conduction tissues, that may have separate manifestations, but often occur together in complex clinical pictures. The subaortic gradient, although not always present, is the most classical manifestation of the disease, with its typical dynamic behavior, changing with preload, afterload and contractility. In most cases it is due to systolic motion of the mitral valve against the septum in systole, but in a few it is caused by midventricular "constriction". Alteration of diastolic ventricular function is important, and probably the main cause of heart failure, that is usually accompanied by normal systolic function. Mitral insufficiency is common in the obstructive forms, due to the abnormal mitral valve motion, but in some cases it may be due to structural abnormalities of the valve. There may be systolic constriction, or nonatherosclerotic occlusion of the intramyocardial coronary arteries, causing myocardial infarction and ventricular aneurysms, that may lead to systolic dysfunction. The electrocardiogram is rarely normal. Hypertrophy patterns, deeply inverted T waves, deep Q waves, QRS slurring suggestive of WPW syndrome without true preexcitation are the most common manifestations. Rhythm disturbances are common and include sinus node dysfunction, superconductor atrioventricular node or heart block. Atrial fibrillation is frequent and may have catastrophic consequences, including systemic embolism. Non-sustained ventricular arrhythmias are often present, but its predictive value for sudden death is unclear. Monomorphic ventricular tachycardia is infrequent, and programmed stimulation is more likely to precipitate polymorphic ventricular tachycardia of difficult clinical interpretation. Sudden death may be due to multiple mechanisms, and it is difficult to predict and prevent.

Arrhythmias, Cardiac↗

[Pharmacologic maintenance of sinusal rhythm and/or control of the ventricular response in patients with atrial fibrillation or flutter].

Atrial fibrillation is the most common cardiac arrhythmia and is usually responsible for symptoms requiring some treatment. Antiarrhythmic drugs are the first choice therapy, but their potential risks are significant. This together with their limited efficacy restricts their use. Antiarrhythmic drug use should be tailored; mainly according to the underlying heart disease. When reversion to sinus rhythm is not eligible, the adequate control of ventricular rate and the reduction of embolic risk are the therapeutic goals. Atrial flutter shows different behaviour regarding the very limited efficacy of antiarrhythmic drugs for reversion to and maintenance in sinus rhythm.

Anti-Arrhythmia Agents↗

[Catheter ablation of atrial flutter and fibrillation].

The knowledge of the anatomic and functional bases of common flutter circuits has allowed the definition of an anatomic isthmus, between the inferior vena cava and the tricuspid valve, where radiofrequency application can interrupt the circuit. Some atypical flutter circuits are identical to common flutter circuits, but for an inverted rotation (clockwise), and these can be also ablated in the same isthmus. In cases of flutter (or reentrant tachycardia) due to surgical scars in the atrium, mapping supported with programmed stimulation, can define anatomic isthmuses, where ablation can also interrupt the circuit. There is still no definition of left atrial flutter circuits, that may guide ablation in these cases. Atrial fibrillation ablation is still in its infancy. Some initial experiences have tried to reproduce the division of atrial myocardium as in the maze procedure, and fibrillation was interrupted in a number of patients, submitted to very long procedures. There is still no clear definition of the muscular anatomy of the left atrium, in relation with the fibrillatory process, to guide the design of effective ablation lines. There are also technical problems to produce continuous, transmural ablation lines, that are not arrhythmogenic by themselves. The wide clinical application of ablation to treat atrial fibrillation is still in the distant future.

Atrial Fibrillation↗

Mechanisms of entrainment of human common flutter studied with multiple endocardial recordings.

BACKGROUND: The mechanisms of common atrial flutter entrainment have not been directly studied in humans. METHODS AND RESULTS: Endocardial mapping in six cases of common flutter showed large right atrial (RA) reentry circuits. Activation was craniocaudal in the anterolateral right atrium and caudocranial in the septum. The inferior vena cava-tricuspid isthmus (IVC-TV) closed the circuit. The high right atrium was paced at progressively shorter cycle lengths (CLs) in all, and the IVC-TV was paced in three cases. We recorded six to eight simultaneous RA electrograms from septum and anterior wall. Transient entrainment was recognized from all sites by capture of all electrograms at two or more paced CLs, with total or partial preservation of baseline flutter sequence and return to baseline after pacing. Antidromic circuit penetration was documented in five cases during high RA pacing and in one with IVC-TV pacing. Short CLs induced orthodromic conduction delays that resulted in a postpacing pause longer than basal flutter CL. ECG fusion with high RA pacing correlated poorly with antidromic septal penetration. This was related to overlap of orthodromic septal activation with anterior wall activation of the following cycle. Pacing disorganized flutter into a brief irregular rapid rhythm in two cases and atrial fibrillation in one case. In two cases, complete antidromic septal penetration led to sudden flutter interruption, and in another case it led to circuit inversion. CONCLUSIONS: Direct recordings confirm orthodromic and antidromic penetration of flutter circuits by high and low RA pacing. Short CLs modify the circuit. Disorganization is the most common mode of flutter interruption.

Aged↗

[The curative treatment of incessant atrioventricular tachycardia by radiofrequency ablation].

The permanent form of junctional reciprocating tachycardia is due to accessory pathways with retrograde long conduction times. We report the localization of the atrial insertion of the accessory pathway and successful ablation with radiofrequency in 3 patients. The participation of an accessory pathway in the tachycardia was demonstrated by atrial capture without changes in the sequence, with ventricular stimuli during His bundle refractoriness. The atrial insertion was localized by mapping near the os of the coronary sinus. In all cases one to three radiofrequency pulses applied at this point interrupted the tachycardia. Retrograde conduction through the accessory pathway reappeared in 30 min or earlier in all, with displacement of the point of earliest atrial activation, and tachycardia recurred. Total abolition of accessory pathway conduction and cure of the tachycardia required new radiofrequency applications, that in one case were done in a second procedure.

Cardiac Pacing, Artificial↗

[Chronotropic competence in patients with the sick sinus syndrome wearing AAI or DDD pacemakers].

The prevalence of chronotropic incompetence in patients with sinus node disease (SND) is not well defined. To assess this, we evaluated 18 patients (7 men, 11 women; mean age: 64 +/- 11) with SND and permanent pacemakers (AAI/DDD) with Holter monitoring and treadmill stress test. Only 2 patients received active cardiac drugs (1, L-dopa an 1 propafenone). The treadmill tests results were compared with a control group of 15 men and 18 women (mean age: 66 +/- 5, p = NS) without organic heart disease. During ambulatory activity all pacemaker patients increased their own cardiac rate to a value higher than the programmed basic pacemaker rate. In 8 patients the maximal rate attained was over 100/min (mean 95 +/- 19/min). The maximal rate during treadmill test in pacemaker patients was 131 +/- 25 (control group 138 +/- 14, p = NS). Exercise tolerance in METs was similar in pacemaker patients (5.2 +/- 2.6) and in controls (5.8 +/- 1.2) (p = NS). Two pacemaker patients (12%) didn't reach 100/min during stress test. Most patients with SND and permanent pacemakers (AAI/DDD) are able to increase cardiac rate during exercise. Rate responsive pacing (AAIR/DDDR) should be limited to a minority of patients with true chronotropic incompetence.

Aged↗

[Exercise-induced atrioventricular block].

Exercise-induced atrioventricular block in patients with normal atrioventricular conduction at rest is uncommon. Electrophysiologic studies have documented block distal to the atrioventricular node in these patients. Implantation of a permanent pacemaker is recommended because of a high incidence of subsequent symptomatic block. We report three symptomatic patients with exercise-induced atrioventricular block. Two patients showed a bundle branch block in the baseline electrocardiogram, suggesting a distal location of the block. In the remainder, with a normal QRS, the electrophysiologic study revealed AV block within the His bundle in response to atrial pacing.

Aged↗

Suppression of Torsades de Pointes with verapamil in patients with atrio-ventricular block.

Experimental data have suggested a relation between Torsades de Pointes and early post-depolarization (EPD). We have studied the effect of intravenous verapamil in three patients with atrioventricular block (AVB) and Torsades de Pointes (TP), to obtain indirect evidence of slow membrane channel involvement in the TP mechanism. In two cases TP were completely suppressed and in one there was marked, albeit partial, suppression. In two cases verapamil did not shorten QT, while in the third suppression verapamil was related to junctional escape acceleration and QT shortening. In one of the cases where QT was not changed, the abolition of long pauses may have played a role in TP suppression. The affect of verapamil on TP in our patients is consistent with a combination of mechanisms, including direct membrane effects (EPD inhibition) and junctional pacemaker acceleration. Verapamil might be of therapeutic value in this clinical setting.

Aged↗

[Relationship between echocardiographic measurement of left atrial size and the incidence of systemic embolism in mitral stenosis].

In order to correlate left atrial diameter (LAD) with the prevalence of systemic embolism (SE) in mitral stenosis (MS), we assessed LAD by M mode tracings in 51 patients with SE and in 50 patients with MS without ES as control group (C). Mean age was similar in both groups (SE 47.3 +/- 12 vs C 46.8 +/- 14 years; p NS) (mean +/- SD). Functional class, cardiothoracic ratio and association of other valvular lesions were similar in both groups. Atrial fibrillation (AF) was more frequent in SE group (n = 39) than in C group (n = 20) (p less than 0.01). LAD in SE patients ranged from 2.9 to 9 cm (5.2 +/- 1) whereas in C patients range was from 2.8 to 7.5 (4.6 +/- 1) (p less than 0.01). Nevertheless, LAD in patients with AF was rather similar in both groups (SE 5.3 +/- 1.1 vs C 5.3 +/- 1; p NS). Our results suggest that LAD is not a good predictive parameter for SE in MS. The main risk factor for SE was the existence of AF. Echocardiographic LAD is not a useful parameter to prescribe chronic oral anticoagulation as prophylaxis for SE in patients with MS.

Adult↗