PubMed Health⌕ Search

Biomedical subjects

A Batisse

Publications and source records attributed to A Batisse.

At least 37 records · Page 2Linked to original sources

Anatomic repair of anomalies of ventriculoarterial connection associated with ventricular septal defect. I. Criteria of surgical decision.

The feasibility of anatomic repair (defined as the reconstruction of normal ventriculoarterial connection) was investigated in 104 patients who underwent an operation for anomalies of ventriculoarterial connection associated with ventricular septal defect. Three types of anatomic repair were used: intraventricular rerouting, REV (association of intraventricular rerouting with translocation of the pulmonary arterial trunk on the right ventricle), and arterial switch associated with closure of the ventricular septal defect. Intraventricular repair was considered to be the best and simplest method when possible. In the other cases, REV was indicated if pulmonary outflow tract obstruction was present, and arterial switch was performed when the tract was patent. The feasibility of intraventricular repair was related to the distances between the tricuspid valve and the semilunar valves. Preoperative measurement of these distances is an essential criterion to choose the appropriate repair of anomalies of ventriculoarterial connection associated with ventricular septal defect.

Double Outlet Right Ventricle↗

Anatomic repair of anomalies of ventriculoarterial connection associated with ventricular septal defect. II. Clinical results in 50 patients with pulmonary outflow tract obstruction.

From November 1980 to November 1985, 50 patients underwent anatomic repair of anomalies of ventriculoarterial connection associated with ventricular septal defect and pulmonary outflow tract obstruction. The technique used was one that we have previously described, which we call REV. The principles of this technique are resection of the infundibular septum, construction of a tunnel connecting the left ventricle to the aorta, and direct anastomosis, without a prosthetic conduit, of the pulmonary arterial trunk with the right ventricle. The tunnel is situated beneath the aortic valve and occupies very little space in the right ventricular cavity. Age at operation ranged from 4 months to 13 years (mean 3.5 years). Twenty-six patients had a classic type of transposition of the great arteries; all other patients had various types of anomalies of ventriculoarterial connection in which it was impossible, after the intraventricular connection of the left ventricle to the aorta, to use the natural pulmonary orifice for the pulmonary outflow tract reconstruction. There were nine hospital deaths (18%) and one late death. Twenty-six of 29 patients whose follow-up time exceeded 1 year had an excellent clinical result. No stenosis of the aortic outflow tract was found. Four patients had significant pressure gradients on the pulmonary outflow tract. Our present experience with REV suggests that this technique allows anatomic repair in a wide variety of anomalies of ventriculoarterial connection associated with ventricular septal defect and pulmonary outflow tract obstruction, even in infants, with an acceptable rate of mortality and morbidity.

Adolescent↗

[Anti-arrhythmia efficacy of propafenone in children. Apropos of 30 cases].

Thirty children aged from 3 months to 20 years were treated with propafenone 250 to 650 mg/m2 divided into 2 to 4 daily doses, for a mean period of 14 months (range: 4 days to 5 years); 8 had chronic atrial tachycardia, 9 had junctional arrhythmia and 13 had ventricular arrhythmia. There were 17 good results (suppression of the arrhythmia), 7 fair results (good clinical effect but partial persistence of the arrhythmia) and 6 failures, either because the drug proved ineffective (3 cases) or on account of side-effects (3 cases). In the treatment of chronic atrial tachycardia propafenone seemed to be more effective than amiodarone in 3 cases and as effective as that drug in 2 cases. In junctional arrhythmia propafenone was certainly effective but unpredictably so (3 good results, 2 fair results, 4 failures). Among ventricular arrhythmias, ventricular tachycardia in bursts was the one which benefited most regularly from treatment with propafenone: the results in 8 patients were better than those obtained with other antiarrhythmic agents (class I drugs, beta-blockers, calcium antagonists); only amiodarone proved superior to propafenone in this type of arrhythmia. Despite a 27% incidence of side-effects, propafenone was generally well tolerated by the children, with no significant gastrointestinal disorders. No depressive effect on the myocardium was noted in 6 children with moderate heart failure well controlled by digitalis and diuretics. However, since overdosage may cause severe disorders of conduction with widened ventriculogram, we recommend regular ECG monitoring during the first 3 days of treatment at least: although there is little slowing down of sinus rate (12%) and little modification of the slow phase under treatment, serious toxicity is possible. Thus, propafenone is a drug that should be handled with caution, but it constitutes a major addition to the range of antiarrhythmic agents which can be used in paediatrics.

Adolescent↗

[Arrhythmia after atrial correction of transposition of the great vessels. Holter recording study of 123 surgically treated patients].

Sinus node dysfunction after intra-atrial repair of transposition of the great arteries by a Mustard or Senning procedure is well known. We undertook this study to evaluate the frequency, the nature, the severity and evolution of these dysrhythmias by performing Holter monitoring in 123 children followed up over 5 years; 302 Holter recordings were reviewed. The patients were divided into 3 groups of increasing severity: I = no sinus node dysfunction, II = moderate sinus node dysfunction, III = severe sinus node dysfunction with bradycardia of less than 30/min and/or pauses of over 2000 ms. The association of atrial hyperexcitability was classified in 3 subgroups: A = no extrasystoles, B = at least 4 extrasystoles per 24 hours, C = atrial tachycardia (focal tachycardia or flutter) after the first six postoperative months. There were only 15% of normal recordings (IA) and the majority of children (58%) were classified in the intermediary groups (IB, IIA and IIB). Sinus node dysfunction tended to become more severe with time in nearly 30% of the 69 cases followed up sequentially. The bradycardia tended to become more severe and associated with episodes of atrial tachycardia: the frequency of type B and C increased to 30% in Group I, to 68% in Group II and to 91% in Group III. The attacks were severe, especially in patients with a mediocre postoperative haemodynamic result. This explains the global mortality of 3%, the morbidity of 15% and the pacemaker implantation rate of 12%.(ABSTRACT TRUNCATED AT 250 WORDS)

Arrhythmias, Cardiac↗

[Evaluation of the systolic pressure of the right ventricle by echocardiographic study of left ventricular geometry].

Right ventricular systolic pressure is an important parameter in paediatric cardiology. A critical haemodynamic situation is attained if it exceeds the systemic pressure: strain proximal to severe pulmonary stenosis or the result of pulmonary hypertension. In these circumstances, the patient must be closely followed up at the least, and appropriate treatment, often surgical, has to be instituted. Ambulatory methods of assessing this parameter are either unreliable, like the surface electrocardiogram, or relatively complex, like certain ultrasonic methods. We therefore looked for a method relating the systolic pressures of the two ventricles and the end systolic geometry of the left ventricle as assessed simply from a short axis view of the left ventricle at the level of the junction between the chordae and papillary muscles. Two orthogonal diameters are measured and the ratio of the two dimensions calculated: this ratio which we call the "septal curvature" reflects left ventricular compression by the pressure that the right ventricle exerts through the interventricular septum. Seventy-two children aged 6 hours to 18 years (average 5.2 years) hospitalised for pre or post-operative investigation of congenital heart disease were evaluated by this method. The results were compared by statistical analysis with the ratio of ventricular pressures measured directly almost simultaneously during cardiac catheterisation. In general, a linear relation was observed between septal curvature (x) and ratio of pressures (y); y = 0.88, x - 0.63 and R = 0.92.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[Medical treatment and long-term development of permanent reciprocal tachycardia in children. Apropos of 10 cases followed for 11 years].

Incessant reciprocating tachycardia (IRT) was diagnosed in 10 children aged 0-11 years (mean 2.5 years), followed-up for an average of 11 years (range 4-22 years). 8 children were treated for an average period of 2.8 years (range 0.5-6 years) with the association of amiodarone and digitoxine. All children were treated initially or secondarily with verapamil and/or betablockers with digitoxine for an average of 4.6 years (range 1-9 years). The true frequency of IRT, its tolerance and the age at diagnosis did not indicate the probable required length of treatment with amiodarone, but only the initial response to this drug. Finally, 5 patients were cured and in sinus rhythm, and the other 5 were well controlled, having only occasional bursts of tachycardia. When we compared one group of 5 cases with clinical signs of cardiac failure and radiological cardiomegaly (CTR greater than 0.60) with a second group of 5 cases in which the arrhythmia was better tolerated, surprisingly, the frequency of intreated IRT was not t he factor which influenced its tolerance (198/min vs 194/min). On the other hand, the following differences were observed between the two groups: a younger age at diagnosis in the first group (5 months vs 4.6 years) responsible for the longer follow-up period (14.5 vs 7 years), earlier treatment period with amiodarone (3.6 years compared to 5.5 years) and a longer treatment period with this drug (3.5 vs 2 years). It was only at about the age of 7 that this treatment could be withdrawn or changed with half the children completely cured, and the other half only controlled.(ABSTRACT TRUNCATED AT 250 WORDS)

Amiodarone↗

[Problems posed by preparation of the left ventricle for anatomical correction in simple transposition of the great vessels].

Surgical correction of simple transposition of the great arteries by arterial detransposition can only be considered if the left ventricle is capable of functioning under systemic conditions. This is possible at birth but the operation is too big for it to succeed. After a few weeks the left ventricle may lose this capacity but it can be induced to redevelop if it is given a systolic stress by pulmonary banding. This was attempted initially in 30 children aged from 5 weeks to 3,5 years old (20 aged less than 2 months) but had to be abandoned for the following reasons: 8 immediate failures due to severe hypoxia and acidemia, 7 left ventricular failures, mainly in 3 children operated after 6 months of age; 7 severe hypoxemias, 5 pulmonary arterial lesions due to banding and/or the systemo-pulmonary anastomosis associated in some cases; in all, there were 8 failures out of the 17 anatomical corrections performed to date in 22 survivors of banding. The criteria of left ventricular readaptation after banding were difficult to determine. The final result did not appear to be related to either the duration of banding, the degree of aortic desaturation, the ratio of ventricular pressures, or to the various echocardiographic indices. Only the initial hypoxemia (less than 50 p. 100 saturation) with respect to the risk of banding, and the age at which banding was performed (over 6 months) with respect to the risk of anatomical correction, appeared to be obvious risk factors. This is the reason for a new protocol at present under study to try to maintain left ventricular growth by banding in the first days of life, so to ensure a more harmonious and effective, and also less dangerous preparation for anatomical correction. Six new born children have been "prepared" in this way: three had adequate loose banding and underwent atrial correction. Very good results were obtained in the other three patients who have already undergone detransposition at 2,5 and 3 months with excellent immediate results. We believe that neonatal pulmonary banding (before 5 days) when aortic saturation after atrioseptostomy is over 50 p. 100, provides a real alternative to the classical methods of treating simple transposition of the great arteries (Mustard or Senning). Anatomical correction can then be carried out a few weeks later under good conditions.

Angiocardiography↗