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1.
Artif Organs ; 44(8): 779-784, 2020 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-31612546

RESUMEN

This study presents an assessment for long-term use of the apical aortic blood pump (AABP), focusing on wear reduction in the bearing system. AABP is a centrifugal left ventricle assist device initially developed for bridge to transplant application. To analyze AABP performance in long-term applications, a durability test was performed. This test indicated that wear in the lower bearing pivot causes device failure in long-term. A wear test in the bearing system was conducted to demonstrate the correlation of the load in the bearing system with wear. Results from the wear test showed a direct correlation between load and wear at the lower bearing pivot. In order to reduce load, thus reducing wear, a new stator topology has been proposed. In this topology, a radial stator would replace the axial stator previously used. Another durability test with the new stator has accounted twice the time without failure when compared with the original model.


Asunto(s)
Corazón Auxiliar , Aorta/fisiología , Análisis de Falla de Equipo , Corazón Auxiliar/efectos adversos , Humanos , Diseño de Prótesis , Falla de Prótesis , Factores de Tiempo
2.
Artif Organs ; 32(4): 349-54, 2008 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-18370952

RESUMEN

This work presents the initial studies and the proposal for a cardiovascular system electro-fluid-dynamic simulator to be applied in the development of left ventricular assist devices (LVADs). The simulator, which is being developed at University Sao Judas Tadeu and at Institute Dante Pazzanese of Cardiology, is composed of three modules: (i) an electrical analog model of the cardiovascular system operating in the PSpice electrical simulator environment; (ii) an electronic controller, based on laboratory virtual instrumentation engineering workbench (LabVIEW) acquisition and control tool, which will act over the physical simulator; and (iii) the physical simulator: a fluid-dynamic equipment composed of pneumatic actuators and compliance tubes for the simulation of active cardiac chambers and big vessels. The physical simulator (iii) is based on results obtained from the electrical analog model (i) and physiological parameters.


Asunto(s)
Simulación por Computador , Corazón Auxiliar , Hemorreología , Modelos Cardiovasculares , Fenómenos Biomecánicos , Vasos Sanguíneos/fisiología , Diseño de Equipo , Humanos , Proyectos Piloto , Función Ventricular
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