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Enhanced Early Mineralization and Continuous Bone Ingrowth of 3D-Printed Trabecular Titanium Diaphyseal Prostheses Compared with Sandblasted Surfaces: An In Vivo Histomorphometric Study in a Goat Model

2026-05-25

Abstract excerpt

<title>Abstract</title> <p>Background Aseptic loosening secondary to insufficient osseointegration remains a principal cause of long-term failure in biologically fixed diaphyseal prostheses. Conventional sandblasting generates an irregular, non-interconnected surface microtopography with limited capacity for genuine bone ingrowth. Three-dimensional (3D) printing enables fabrication of biomimetic trabecular titan...

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Literature Corpus work
33cd1147-4e2e-59fd-b8c6-4987ab9ee036
DOI
10.21203/rs.3.rs-9560024/v1
Open publication

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Enhanced Early Mineralization and Continuous Bone Ingrowth of 3D-Printed Trabecular Titanium Diaphyseal Prostheses Compared with Sandblasted Surfaces: An In Vivo Histomorphometric Study in a Goat ModelDOI 10.21203/rs.3.rs-9560024/v1
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