Skull repairing material and preparation method thereof

A technology for repairing materials and skulls, which can be used in bone implants, medical science, prostheses, etc., and can solve problems such as shock resistance, sound insulation, cushioning, limited clinical application, and poor biocompatibility

Inactive Publication Date: 2009-10-21
杨立群
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Plexiglass has poor biocompatibility and is not widely used clinically; HAP materials have good biocompatibility, but the manufacturing cost is high, and HAP is gradually absorbed by the human body over time, and its strength will decrease; the most widely used clinically It is a titanium mesh, which has good biocompatibility and sufficient strength, and is easy to make, but the above products have common shortcomings in clinical applications:
[0005] 2. Biological activity cannot be reflected
The adverse result that can be produced is that the screw or steel wire fixing the titanium mesh compresses the edge of the skull for a long time, causing local bone ischemia in the skull, resulting in o

Method used

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  • Skull repairing material and preparation method thereof
  • Skull repairing material and preparation method thereof
  • Skull repairing material and preparation method thereof

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Embodiment Construction

[0040] Combine below figure 1 The structure of a kind of cranial repair material of the present invention is described in further detail, has titanium mesh support 1, and the mesh shape of described titanium mesh support is circular, and the surface of described titanium mesh support is made of hydroxyapatite (HAP) and titanium dioxide ( TiO 2 ) The bioceramic film layer 2 formed by micro-arc oxidation, the surface of the titanium mesh is closely combined with the ceramic film layer, and the TiO 2 The ceramic film layer is distributed with micropores with a diameter of about 10 μm, and the Ca content in the film layer reaches 16%; the Ca / P ratio is about 1.67, which is very close to the Ca / P ratio in bone tissue; one side of the titanium mesh stent is fixed with a medical The bionic layer 3 made of silica gel, the side adjacent to the bionic layer and the titanium mesh support has a circular lock, which helps the bionic layer and the titanium mesh support to be tightly connec...

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PUM

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Abstract

The invention discloses a skull repairing material which is provided with a titanium mesh bracket. The surface of the titanium mesh bracket is provided with a film layer consisting of hydroxylapatite and titanium dioxide, and one side of the titanium mesh bracket is provided with a bionic layer. The skull repairing material has biological activity, a TiO2 ceramic film layer containing HAP generated on the surface of a titanium mesh through micro-arc oxidation plays a role of biological activity, and HAP in human tissue fluid and skull edges are tightly combined with TiO2 under the role of -OH to reach the function of cell bonding. The bionic layer below the titanium mesh bracket can play a role of cold insulation, heat insulation, shock prevention and buffer, and the entire product is humanized and scientific.

Description

technical field [0001] The invention relates to a skull injury repairing material, in particular to a bionic skull repairing material and a preparation method thereof. Background technique [0002] The skull is one of the most important parts of the human skeleton. It protects and supports the brain receptors, forms the cranial cavity that houses the brain, and supports the cranial surface. Once a skull injury occurs, it will bring great pain to the patient, not only affect the appearance, but also make the patient feel insecure, and even cause various adverse consequences such as skull defect syndrome, brain atrophy, and traumatic epilepsy. At present, there are many repair materials for skull defects, such as plexiglass, hydroxyapatite (HAP) materials, titanium mesh, etc., each with its own advantages and disadvantages. Plexiglass has poor biocompatibility and is not widely used clinically; HAP materials have good biocompatibility, but the manufacturing cost is high, and ...

Claims

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Application Information

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IPC IPC(8): A61L27/40A61L27/32A61L27/34A61L27/06A61F2/28C23G1/10C25D11/02
CPCA61F2/28A61F2002/30001
Inventor 杨立群
Owner 杨立群
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