This histologic report evaluated the early human bone response to a direct laser metal sintering implant surface retrieved after a short period of healing. A selective laser sintering procedure using a Ti-6Al-4V alloy powder with a particle size of 25-45 microm prepared this surface topography. One experimental microimplant was inserted into the anterior mandible of a patient during conventional implant surgery of the jaw. The microimplant and surrounding tissues were removed after 2 months of unloaded healing and were prepared for histomorphometric analysis. Histologically, the peri-implant bone appeared in close contact with the implant surface, whereas marrow spaces could be detected in other areas along with prominently stained cement lines. The mean of bone-to-implant contact was 69.51\%. The results of this histologic report suggest that the laser metal sintering surface could be a promising alternative to conventional implant surface topographies.

Early human bone response to laser metal sintering surface topography: a histologic report.

MANGANO, CARLO;
2010-01-01

Abstract

This histologic report evaluated the early human bone response to a direct laser metal sintering implant surface retrieved after a short period of healing. A selective laser sintering procedure using a Ti-6Al-4V alloy powder with a particle size of 25-45 microm prepared this surface topography. One experimental microimplant was inserted into the anterior mandible of a patient during conventional implant surgery of the jaw. The microimplant and surrounding tissues were removed after 2 months of unloaded healing and were prepared for histomorphometric analysis. Histologically, the peri-implant bone appeared in close contact with the implant surface, whereas marrow spaces could be detected in other areas along with prominently stained cement lines. The mean of bone-to-implant contact was 69.51\%. The results of this histologic report suggest that the laser metal sintering surface could be a promising alternative to conventional implant surface topographies.
2010
http://dx.doi.org/10.1563/AAID-JOI-D-09-00003
Dental Alloys, Dental Implantation; Endosseous; methods, Dental Implants, Dental Prosthesis Design, Hot Temperature, Humans, Lasers; Solid-State, Male, Mandible, Middle Aged, Osseointegration, Surface Properties, Titanium
Mangano, Carlo; A., Piattelli; S., D'Avila; G., Iezzi; F., Mangano; T., Onuma; J. A., Shibli
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/1746147
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