determinación del desgaste del componente acetabular en prótesis totales de cadera. // wear determination of acetabular component in total hip prosthesis.

determinación del desgaste del componente acetabular en prótesis totales de cadera. // wear determination of acetabular component in total hip prosthesis.

;G. García del Pino;E. Gonçalves;R. Gonzáles Lima;R. Dantas Queiroz;J. L. Valín Rivera
bmc musculoskeletal disorders 2002 Vol. 5 pp. 19-25
127
pino2002ingenieradeterminacin

Abstract

En este trabajo se realiza un estudio a través del Método de los Elementos Finitos “MEF” sobre el desgaste del componente
acetabular durante el ciclo de marcha y considerando algunos casos extremos de cargas como subir y bajar escaleras,
levantarse de una silla, etc. Utilizando el MEF fueron modelados independientemente los componentes acetabular y
femoral de la prótesis total de cadera y puestos en contacto posteriormente. Fueron estudiadas varias posiciones del
acetábulo así como diferentes casos de carga simulando pacientes con diferente peso corporal y actividades físicas. Para
evaluar los resultados se crearon rutinas en lenguaje C que organizaron los mismos para un tratamiento estadístico
posterior.


Palabras claves: biomecánica, ortopedia, elementos finitos, modelación, desgaste, prótesis de cadera.

___________________________________________________________________________

Abstract.
A wear study of acetabular component during the marching cycle, considering some extreme loads cases as: ascend and
descend stairways, get up from a seat, etc , by means of Finite Elements Method ( FEM ), is carried out. The acetabular and
femoral component of the total hip prosthesis were independently modeled and placed in contact lastly. Several acetabul
positions were studied as well as different load cases, simulating patients with different body weight and different physical
activities. To evaluate the results routines in C language were created in order to organized the same ones for a later
statistical treatment.


Key words. biomechanics, ortophedy, finite elements, modelation, wear, hip bone prosthesis.

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