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1.
PLoS One ; 12(11): e0188328, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-29186157

RESUMO

Arthrodesis is a recommended treatment in advanced stages of degenerative disc disease. Despite dynamic fixations were designed to prevent abnormal motions with better physiological load transmission, improving lumbar pain and reducing stress on adjacent segments, contradictory results have been obtained. This study was designed to compare differences in the biomechanical behaviour between the healthy lumbar spine and the spine with DYNESYS and DIAM fixation, respectively, at L4-L5 level. Behaviour under flexion, extension, lateral bending and axial rotation are compared using healthy lumbar spine as reference. Three 3D finite element models of lumbar spine (healthy, DYNESYS and DIAM implemented, respectively) were developed, together a clinical follow-up of 58 patients operated on for degenerative disc disease. DYNESYS produced higher variations of motion with a maximum value for lateral bending, decreasing intradiscal pressure and facet joint forces at instrumented level, whereas screw insertion zones concentrated stress. DIAM increased movement during flexion, decreased it in another three movements, and produced stress concentration at the apophyses at instrumented level. Dynamic systems, used as single systems without vertebral fusion, could be a good alternative to degenerative disc disease for grade II and grade III of Pfirrmann.


Assuntos
Fenômenos Biomecânicos , Vértebras Lombares/cirurgia , Adulto , Simulação por Computador , Análise de Elementos Finitos , Seguimentos , Humanos , Pessoa de Meia-Idade
2.
Biomed Res Int ; 2015: 386461, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-25802848

RESUMO

More than twenty years ago, hydroxyapatite (HA), calcium phosphate ceramics, was introduced as a coating for cementless hip prostheses. The choice of this ceramic is due to its composition being similar to organic apatite bone crystals. This ceramic is biocompatible, bioactive, and osteoconductive. These qualities facilitate the primary stability and osseointegration of implants. Our surgical experience includes the implantation of more than 4,000 cementless hydroxyapatite coated hip prostheses since 1990. The models implanted are coated with HA in the acetabulum and in the metaphyseal area of the stem. The results corresponding to survival and stability of implants were very satisfactory in the long-term. From our experience, HA-coated hip implants are a reliable alternative which can achieve long term survival, provided that certain requirements are met: good design selection, sound choice of bearing surfaces based on patient life expectancy, meticulous surgical technique, and indications based on adequate bone quality.


Assuntos
Materiais Revestidos Biocompatíveis/uso terapêutico , Durapatita/uso terapêutico , Osseointegração/fisiologia , Ossos Pélvicos/cirurgia , Acetábulo/química , Adulto , Idoso , Artroplastia de Quadril/métodos , Fosfatos de Cálcio/uso terapêutico , Cerâmica/uso terapêutico , Feminino , Prótese de Quadril , Humanos , Masculino , Pessoa de Meia-Idade , Desenho de Prótese/métodos , Adulto Jovem
3.
Biomed Res Int ; 2013: 705185, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23509766

RESUMO

The knowledge of the lumbar spine biomechanics is essential for clinical applications. Due to the difficulties to experiment on living people and the irregular results published, simulation based on finite elements (FE) has been developed, making it possible to adequately reproduce the biomechanics of the lumbar spine. A 3D FE model of the complete lumbar spine (vertebrae, discs, and ligaments) has been developed. To verify the model, radiological images (X-rays) were taken over a group of 25 healthy, male individuals with average age of 27.4 and average weight of 78.6 kg with the corresponding informed consent. A maximum angle of 34.40° is achieved in flexion and of 35.58° in extension with a flexion-extension angle of 69.98°. The radiological measurements were 33.94 ± 4.91°, 38.73 ± 4.29°, and 72.67°, respectively. In lateral bending, the maximum angles were 19.33° and 23.40 ± 2.39, respectively. In rotation a maximum angle of 9.96° was obtained. The model incorporates a precise geometrical characterization of several elements (vertebrae, discs, and ligaments), respecting anatomical features and being capable of reproducing a wide range of physiological movements. Application to disc degeneration (L5-S1) allows predicting the affection in the mobility of the different lumbar segments, by means of parametric studies for different ranges of degeneration.


Assuntos
Análise de Elementos Finitos , Degeneração do Disco Intervertebral/diagnóstico por imagem , Vértebras Lombares/diagnóstico por imagem , Vértebras Lombares/fisiologia , Adulto , Fenômenos Biomecânicos , Simulação por Computador , Elasticidade , Humanos , Disco Intervertebral/diagnóstico por imagem , Disco Intervertebral/fisiopatologia , Degeneração do Disco Intervertebral/fisiopatologia , Masculino , Modelos Anatômicos , Pressão , Radiografia , Amplitude de Movimento Articular/fisiologia , Suporte de Carga/fisiologia , Raios X
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