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An in vitro three-dimensional correction structure customization system for scoliosis deformity

A scoliosis and customized system technology, applied in the direction of external fixators, fixators, internal fixators, etc., can solve the problems of inapplicability, complicated process of in vitro three-dimensional correction structure, and different diseases, so as to improve timeliness, customization and The effect of shortening the judgment time

Active Publication Date: 2022-07-22
孟伟正
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to solve the problem in the prior art that the patients with scoliosis have different conditions and do not apply a uniform three-dimensional correction structure in vitro, the process of customizing the three-dimensional correction structure in vitro for patients through consultations between various departments is complicated and easily delays the timing of treatment.

Method used

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  • An in vitro three-dimensional correction structure customization system for scoliosis deformity
  • An in vitro three-dimensional correction structure customization system for scoliosis deformity

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Embodiment approach

[0055] As a possible implementation manner, the image recognition module includes:

[0056] The camera is used to identify the pixel feature points on the X-ray image and form coordinate information based on the coordinate system,

[0057] The linear processing module is used to establish a visual line model according to the coordinate information, and measure the scoliosis position of the spine and the Cobb angle information on the line model;

[0058] The output module is used for transmitting the scoliosis position and Cobb angle information to the analysis processing module according to the measurement result of the linear processing module.

[0059] Further, the analysis processing module is specifically used for:

[0060] Determine whether the patient is suitable to wear the external three-dimensional correction structure according to the specific characteristic value standard of Cobb angle and Risser sign; and,

[0061] If it is determined that the patient is suitable...

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Abstract

The invention provides an in vitro three-dimensional correction structure customization system for scoliosis deformity, which is suitable for children and adolescents with immature bones, including: a basic information acquisition module; a medical X-ray machine; an image recognition module; an analysis and processing module; CT image computer; software modeling module; three-dimensional correction structural parts manufacturing module and central control host, said central control host and basic information acquisition module, medical X-ray machine, image recognition module, analysis and processing module CT image machine, software modeling module and The three-dimensional correction structural parts manufacturing modules are connected and used to coordinate the information transmission and work order among the modules. The invention solves the problem that the patients with scoliosis have different conditions and are not suitable for the external three-dimensional correction structure of a unified standard.

Description

technical field [0001] The invention relates to the technical field of scoliosis correction equipment, in particular to an in vitro three-dimensional correction structure customization system for scoliosis deformity. Background technique [0002] The incidence of spinal deformity in adolescents in my country is 3%-5%, of which 60% occur in girls. The pathogenesis is complex, and its treatment is still under constant exploration and research in the past century. This field is a difficult point in the treatment of spinal deformities. Scholar consensus: Cobb angle of 10 in adolescent scoliosis 0 -40 0 For patients between the two, non-surgical treatment with fixed braces is required. However, there are still many gaps in the research on the current brace technology, such as the corrective effect of the rotating vertebral body, the specific size and direction of the orthopedic force, the dynamic adjustment of the correction plan, and the optimization of the ergonomic design o...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61B17/62A61B17/70
CPCA61B17/62A61B17/70A61B2017/568
Inventor 孟伟正任文杰田林强翁孝刚王天云
Owner 孟伟正
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