[Hepatic amebiasis with perforation of the pericardium].
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Biomedical subjects
Publications and source records attributed to J Espino-Vela.
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The case is described of a 4 1/2-year-old girl with a previously unreported malformation: a heart with three arterial trunks, aorta, main pulmonary artery, and an intermediate vessel, called "intermediate trunk" because it was situated between the aorta and the main pulmonary artery. Each of these three arteries had a semilunar valve at its origin, and their lumens were completely separated from each other. The pulmonary trunk arose from the right ventricle, while the aorta and the intermediate trunk arose from the left ventricle. The intermediate trunk continued as the right pulmonary artery. The pulmonary trunk continued as the left pulmonary artery. The outflow tracts of both ventricles were normal. There were therefore three arterial trunks arising from a heart with two outflow tracts. Our hypothesis on the embryopathogenesis of this case is that there was double septation of the primitive arterial trunk and the aortic sac, without involvement of the conus. In addition, there was a malalignment between the truncal and conal septa. This entity, however rare, should be considered in the differential diagnosis of absent or anomalous right pulmonary artery.
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A classification of one type of congenital malformation previously reported (de la Cruz et al., 1967) is based on the integration of an embryological theory for ventricular inversions with the embryological concepts of trunco-conal malformations (de la Cruz and da Rocha, 1956). In that classification we consider that in each situs, either solitus or inversus ventricular inversions may be associated with: (a) normally arranged great vessels (not transposed); (b) transposition of the great vessels; (c) persistent truncus arteriosus. The patients had ventricular inversion without transposition of the great vessels in situs inversus.THE CORRECT ANATOMICAL DIAGNOSIS WAS NOT FORESEEN BUT THE PHYSIOPATHOLOGICAL DIAGNOSIS WAS CORRECT: pulmonary ischaemia associated with septal defects. In one case these facts were substantiated by catheterization and by angiocardiographic findings which led us to advise surgery. Haemodynamically isolated inversion of the ventricles is as severe a malformation as complete (not corrected) transposition of the great vessels. However, an operation of the anastomotic type between a systemic vessel and the narrow pulmonary artery seemed justified in these cases, as a means to convey more blood to the lungs and improve the saturation of the arterial blood. It was unsuccessfully carried out in one patient.The anatomical, radiological, and electrocardiographic features which might aid in the diagnosis are analysed.
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Transvalvular turbulence caused by the blood flow in implanted cardiac valvular prosthesis is the cause of thrombosis at the post-valvular region. The literature in this connection indicates that thromboembolic complications are more common with the tilting disc mechanical valves. In order to study the turbulence caused by porcine biological prosthetic valves, by a caged-ball Biomed mechanical valve and by a tilting disc Björk-Shiley valve, a device was developed which permits to visualize and to photograph flow characteristics in the three types of valves with the purpose of determining the degree of turbulence generated in each case. An additional accessory equipment was devised for the purpose of measuring static and dynamic pressures at various levels of the test tube containing the prosthetic valve wherein the variations in pressure reflect the degree of turbulence. The data obtained from 500 pressure registrations were analyzed in a computer. The data indicate that the porcine biological valve causes the least turbulence, whereas the mechanical valves create greater turbulence. Of the mechanical valves, the tilting disc prosthetic valve causes considerably greater turbulence, in particular in the vicinity of the smaller orifice.
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