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Int J Med Robot ; 3(3): 207-16, 2007 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-17631675

RESUMO

INTRODUCTION: Tissue engineering provides an alternative modality allowing for decreased morbidity of donor site grafting and decreased rejection of less compatible alloplastic tissues. METHODS: Using image-based design and computer software, a precisely sized and shaped scaffold for osseous tissue regeneration can be created via selective laser sintering. Polycaprolactone has been used to create a condylar ramus unit (CRU) scaffold for application in temporomandibular joint reconstruction in a Yucatan minipig animal model. Following sacrifice, micro-computed tomography and histology was used to demonstrate the efficacy of this particular scaffold design. RESULTS: A proof-of-concept surgery has demonstrated cartilaginous tissue regeneration along the articulating surface with exuberant osseous tissue formation. Bone volumes and tissue mineral density at both the 1 and 3 month time points demonstrated significant new bone growth interior and exterior to the scaffold. CONCLUSION: Computationally designed scaffolds can support masticatory function in a large animal model as well as both osseous and cartilage regeneration. Our group is continuing to evaluate multiple implant designs in both young and mature Yucatan minipig animals.


Assuntos
Cartilagem/transplante , Procedimentos de Cirurgia Plástica/métodos , Crânio/diagnóstico por imagem , Crânio/cirurgia , Cirurgia Assistida por Computador/métodos , Engenharia Tecidual/métodos , Tomografia Computadorizada por Raios X/métodos , Animais , Cartilagem/diagnóstico por imagem , Cartilagem/crescimento & desenvolvimento , Suínos , Porco Miniatura
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