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An Improved Mechanical Testing Method to Assess Bone-implant Anchorage
Published on: February 10, 2014
COMPARATIVE EVALUATION OF FIRST- AND ADAPTED SECOND-GENERATION BONE CEMENTATION IN POST-CURETTAGE BONE DEFECT FILLING
Mateus de Vita Mendes Cruz1, Nelson Fabrício Gava1, Vitor Freire da Rocha2
1Universidade de Sao Paulo, Faculdade de Medicina de Ribeirao Preto (HCFMRP), Hospital das Clinicas, Departamento de Ortopedia e Anestesiologia, Ribeirao Preto, SP, Brazil.
Introduction:
Bone cementation is fundamental for orthopedic stability, and different techniques have been proposed to optimize the bone-cement interface.
Objective:
To evaluate whether adapted second-generation cementation improves osteointegration compared with the first-generation technique.
Methods:
Bone defects created in the femora and tibiae of goats were filled with polymethylmethacrylate using either the first-generation technique (Group 1) or an adaptation of the second-generation technique (Group 2). Cementation quality and the bone-cement interface were assessed by radiography, CT, and photographic analysis, evaluated by orthopedic examiners. Statistical analyses employed the chi-square and Mann-Whitney U tests.
Results:
No statistical differences were observed between the groups regarding cementation quality (radiography and CT) or osteointegration (photographic analysis) (p > 0.05). On CT, the mean number of bubbles was higher in the second-generation (6.05 vs. 3.95), whereas the proportion of samples with ≥5 bubbles was higher in the first-generation (50% vs. 30%). Photographic analysis showed that the second-generation group had a higher mean number of interdigitations (2.4 vs. 1.6) and a greater frequency of rough interfaces (50% vs. 25%). However, the first-generation group presented greater interdigitation depth (0.40 mm vs. 0.35 mm).
Conclusion:
Adapted second-generation cementation showed no clear advantage over the first-generation technique. Level of evidence II; Investigation of treatment outcomes in an animal model.
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