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Three-phase support

A three-phase and bone scaffold technology, applied in the field of three-phase scaffolds, can solve the problems of avulsion of the joint point of the bone and tendon that cannot disperse the stress, the joint point of the bone and tendon cannot be completely restored, and the reconstruction of the fibrocartilage layer is incomplete, etc., and achieves accelerated decellularization. process, reduce decellularization time, and improve the effect of repair quality

Active Publication Date: 2018-08-03
XIANGYA HOSPITAL CENT SOUTH UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The traditional method of treating bone-tendon junction injuries often uses various surgical suture techniques to directly fix the tendon or ligament to the bone. The bone-tendon junction is filled with fibrous scar tissue in the early stage, and the reconstruction of its characteristic fibrocartilage layer is incomplete. The regeneration of the gradient structure, so it cannot effectively disperse the stress and prevent the avulsion of the bone-tendon junction, and the reconstructed bone-tendon structure is prone to rupture again after returning to sports
In recent years, with the improvement of surgical methods and the development of postoperative rehabilitation measures, great progress has been made in the healing of bone-tendon junctions, but the injured bone-tendon junctions still cannot fully restore to the normal tissue gradient structure, and their healing The effect is unsatisfactory

Method used

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Embodiment Construction

[0021] The present invention will be further described in detail below with reference to the drawings and specific embodiments of the specification.

[0022] Such as Figure 1 to Figure 3 As shown, an embodiment of the three-phase stent of the present invention includes a bone stent 1, a cartilage stent 2 and a tendon stent 3 that are sequentially stacked and integrated from top to bottom. One end of the bone stent 1 is set as a bone fixation wrapper 11, The other end of the bone support 1 is transversely cut with a plurality of bone book pages 12 extending to the bone fixation wrapper 11; one end of the cartilage support 2 is set as the cartilage fixation wrap 21, and the other end of the cartilage support 2 is transversely cut. There are multiple cartilage book pages 22 extending to the cartilage fixing wrapper 21; one end of the tendon bracket 3 is set as the tendon fixing wrapper 31, and the other end of the tendon bracket 3 is transversely cut with multiple pieces extending ...

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Abstract

The invention discloses a three-phase support, which comprises a bone support, a cartilage support and a tendon support stacked and integrated sequentially from top to bottom. A plurality of bone book pages extending to the bone-fixed page; one end of the cartilage support is set as the cartilage-fixed page, and the other end of the cartilage support is cut transversely with multiple cartilage-like book pages extending to the cartilage-fixed page One end of the tendon bracket is set as the tendon fixation wrapping part, and the other end of the tendon bracket is cut transversely with multiple tendon-like sheets extending to the tendon fixation wrapping part; The cartilage leaf at the top is connected, and the cartilage leaf at the bottom of the cartilage support is connected with the tendon leaf at the top of the tendon support. The three-phase scaffold has the advantages of simple preparation, convenient use, reduced decellularization time, and improved repair quality.

Description

Technical field [0001] The invention mainly relates to the repairing technology of the defect of the bone and tendon connection point, in particular to a three-phase bracket. Background technique [0002] Injury at the junction of bone and tendon (such as patellar-patellar tendon injury) is a common motor system disease, and its incidence has been increasing year by year. Its treatment has brought a heavy economic burden to society and families. A typical bone-tendon junction consists of a four-layer structure of bone, mineralized fibrocartilage, unmineralized fibrocartilage and tendon. Different from the repair of the same type of tissue (such as bone-bone, tendon-tendon) after injury, the repair of bone and tendon injury occurs between two completely different structures of bone and tendon. After bone and tendon injury, there is often a fibrocartilage layer. The damage of this part, poor blood supply and weak regeneration ability, causes the repair of bone and tendon injury to...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61L27/40A61L27/36A61L27/34
Inventor 胡建中吕红斌瞿瑾
Owner XIANGYA HOSPITAL CENT SOUTH UNIV
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