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31results about How to "Promote new bone growth" patented technology

Bone-tendon-bone assembly with cancellous allograft bone block having cortical end portion

The invention is directed toward a sterile bone-tendon-bone assembly with two allograft bone blocks constructed with a cancellous portion and a cortical end portion. Each bone block has an outer curved surface with two opposing longitudinal arcuate grooves cut into the exterior surface which will allow a tendon replacement member to be wrapped around the bone block. The second bone block being in reversed orientation to the first bone block.
Owner:MUSCULOSKELETAL TRANSPLANT FOUND INC

Implant with Independent Endplates

In some aspects, the present invention is a medical implant with an independent endplate structure that can stimulate bone or tissue growth in or around the implant. When used as a scaffold for bone growth, the inventive structure can increase the strength of new bone growth. The independent endplate structures generally include implants with endplates positioned on opposite sides of the implant and capable of at least some movement relative to one another. In most examples, the endplates have a higher elastic modulus than that of the bulk of the implant to allow the use of an implant with a low elastic modulus, without risk of damage from the patient's bone.A method of designing independent endplate implants is also disclosed, including ranges of elastic moduli for the endplates and bulk of the implant for given implant parameters. Implants with elastic moduli within the ranges disclosed herein can optimize the loading of new bone growth to provide increased bone strength.
Owner:NANOHIVE MEDICAL LLC

Injectable self-cured calcium phosphate bone-rehabilitating material and its preparing process

ActiveCN1970093AStrengthen the fixationPromote new bone growthProsthesisSolid phasesChemistry
The invention discloses an injectable self-solidifying calcium phosphate bone-repairing material and making method, which consists of solid phase and liquid phase, wherein the solid phase contains 0.2-2.0% degeneration starch, 0-15% beta-dicalcium silicate powder, 0-15% strontium and bismuth compound and 0-30% macromolecular microball or microcapsule; the liquid phase is composed of one or more composition of deionized water, diluted phosphoric acid, physiological saline, blood, soluble phosphate solution and organic acid; the rate of liquid phase and solid phase is 0.3-1.2ml / g.
Owner:SOUTH CHINA UNIV OF TECH

In-situ mineralized bionic bone hydrogel composite material with oriented structure as well as preparation method and application thereof

ActiveCN112402695APromote new bone growthGood osseointegration and mechanical stabilityTissue regenerationProsthesisOsteoblast adhesionMacromolecule
The invention relates to an in-situ mineralized bionic bone hydrogel composite material with an oriented structure as well as a preparation method and application thereof, which comprises a natural plant fiber template, natural polymer hydrogel directionally filled in the natural plant fiber template and hydroxyapatite directionally deposited in the natural plant fiber template. The hydrogel composite material has a three-dimensional porous structure and is anisotropic, which overcomes the problem of uneven distribution of hydroxyapatite particles in the hydrogel matrix; the material has super-strong tensile strength, compression strength, bending strength and toughness, and the mechanical properties are matched with those of hard bone tissues. The material is beneficial to induce pre-osteoblast adhesion and osteogenic differentiation, promote new bone growth, has good osseointegration and mechanical stability, and is suitable for large-area hard bone tissue repair; in addition, the material has adjustable surface activity, and fine adjustment and control of the structure and the surface can be achieved.
Owner:SOUTH UNIVERSITY OF SCIENCE AND TECHNOLOGY OF CHINA
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