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Osseoinductive metal implants for a living body and producing method thereof

TLDR
In this article, an Osseo-inductive metal implant for a living body and the producing method thereof and, more particularly, the producing process of the metal implant is described by forming, on the surface of a metal implant, the layer of metal oxide and the layer injected with bioactive material.
Abstract
This invention provides an Osseo-inductive metal implant for a living body and the producing method thereof and, more particularly, the Osseo-inductive metal implant for a living body according to the present invention is produced by forming, on the surface of the metal implant, the layer of metal oxide and the layer of bio-active material injected.

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Citations
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Purified oxides with novel morphologies formed from ti-alloys

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References
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Journal ArticleDOI

Osteoinduction of porous bioactive titanium metal.

TL;DR: The present study shows that even a non-soluble metal that contains no calcium or phosphorus can be an osteoinductive material when treated to form an appropriate macrostructure and microstructure.
Patent

Implant surface preparation

TL;DR: The surface of a device that is surgically implantable in living bone is prepared by removing the native oxide layer from the surface of the device and performing further treatment of the surface substantially in the absence of unreacted oxygen as discussed by the authors.
Journal ArticleDOI

Significance of the porosity and physical chemistry of calcium phosphate ceramics. Biodegradation-bioresorption.

TL;DR: The materials that have been appropriately characterized by X-ray diffraction were considered and sintered HA; aand P-TCP; BCP; and hydrothermally converted CaCO, (also known as corralline HA) are considered.
Journal ArticleDOI

Long-term in vivo bioactivity and degradability of bulk sol-gel bioactive glasses.

TL;DR: The long-term in vivo bioactivity and degradability of bulk sol-gel-derived glasses in a rabbit model and new bone formation was found to fill in areas that had been resorbed, similar to bone remodeling.
Journal ArticleDOI

Improving the biocompatibility of medical implants with plasma immersion ion implantation

TL;DR: In this review, the possibilities of plasma immersion ion implantation (PIII) for improving the biocompatibility of medical implants are shown and specific examples for total hip replacements, titanium based osteosynthesis plates and carbon based heart valves are given.
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