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Realization method of orthopedic support

A realization method and orthopedic technology, applied in the direction of additive processing, medical science, etc., can solve the problems of long 3D images, patient incompatibility, long processing time, etc.

Pending Publication Date: 2022-07-15
BIOLIBRARY SRLS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The modification of 3D images by designers or professional users is an extremely long and complicated operation
Obviously, such a long processing time is not compatible with patients who are in very urgent need of the above mentioned stents

Method used

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  • Realization method of orthopedic support

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0018] The orthopedic brace designed by the above-mentioned design method 100 and implemented by the implementation method 200 is suitable for application on a patient's body part A or a limb to temporarily fix the body part A to heal the body part A.

[0019] The method 100 for designing an orthopedic brace provides a determination step 110 in which a physician or professional technician determines the part A of the patient's body where the orthopedic brace is to be applied.

[0020] After this part A of the patient's body is determined, an identification step 120 is performed, wherein a generic 3D model H1 of the brace relative to the part A of the patient's body to which the orthopedic brace is to be applied is determined in the 3D model database.

[0021] The database contains a plurality of generic 3D models H1, each of which corresponds to a given body part A and a specific type of injury or fracture.

[0022] The generic 3D model H1 stored in the database was previously...

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PUM

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Abstract

A design method (100) of an orthopedic support suitable for a part (A) of a patient's body; the method initially provides a step (110) of determining a part (A) of the body to which an orthopedic stent is to be applied; a step (120) is then provided for identifying a part (A) of the universal 3D model (H1) relative to the patient's body to which the orthopedic stent is to be applied; a step (130) for acquiring a 3D image (K) of a part (A) of the patient's body and a step (140) for detecting biometric data (B) of the part (A) are then provided, and a step (150) for modeling the universal 3D model (H1) by combining the universal 3D model (H1) with the 3D image (K) is finally provided, thereby obtaining a 3D model modeled on the basis of the morphology of the part (A) of the patient's body.

Description

technical field [0001] The patent application of the present invention relates to a design method and a realization method of an orthopedic bracket. [0002] In particular, the field of application of the patent application for the industrial invention is the field of medicine for the realization of orthopedic braces for immobilizing limbs or anatomical parts after fractures or for the realization of implantable internal prostheses. Background technique [0003] It is well known that extremity fractures are often treated with traditional casts to immobilize the limb or anatomy of a patient who has suffered an injury or fracture. [0004] Such a solution is not an ideal solution for patients, as casts applied to injured or fractured limbs are not waterproof and can lead to excessive perspiration, skin irritation and unpleasant odors. In addition, the cast is very heavy and bulky, hindering the patient's free movement and preventing the patient from leading an appropriate lif...

Claims

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Application Information

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IPC IPC(8): B33Y50/02
CPCB33Y80/00A61F5/01B33Y50/00B29C64/386G06F30/10B22F10/80B29L2031/753
Inventor A·普切
Owner BIOLIBRARY SRLS