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Intelligent pressure monitoring 3D printing scoliosis orthosis

A scoliosis and 3D printing technology, applied in the field of medical devices, can solve the problems of correction failure, reduce the willingness of patients to wear orthotics, and high cost, to increase the correction force, facilitate putting on and taking off and pressurizing the straps, and The effect of opening and closing angle

Pending Publication Date: 2021-08-31
SHANGHAI NINTH PEOPLES HOSPITAL AFFILIATED TO SHANGHAI JIAO TONG UNIV SCHOOL OF MEDICINE +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional manufacturing of orthotics is to perform thermoplastic and trimming of the orthotic plates on the plaster model of the patient. The traditional manual technology requires high experience of the prosthetist or orthotics, which has the advantages of long production cycle, large model, poor fit, and breathable Disadvantages such as poor sex and poor appearance
These shortcomings will directly or indirectly lead to physical and functional discomfort, thereby reducing the patient's willingness to wear orthotics, allowing patients to actively reduce the wearing time, resulting in further development of the curve
Therefore, it is not only necessary to design a scoliosis orthosis that is comfortable and beautiful, breathable and fit, and easy to put on and take off. It is also necessary to strictly control the wearing time and wearing level of the patient. Insufficient correction force or insufficient correction time will lead to correction failure
[0004] Additively manufactured orthotics also have the disadvantages of being expensive and not covered by medical insurance. During the correction process, the orthotics need to be redesigned according to the progress of the curve, which undoubtedly causes a huge economic burden on patients

Method used

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  • Intelligent pressure monitoring 3D printing scoliosis orthosis
  • Intelligent pressure monitoring 3D printing scoliosis orthosis
  • Intelligent pressure monitoring 3D printing scoliosis orthosis

Examples

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Embodiment Construction

[0024] The embodiments of the present application will be described below by way of specific examples, and those skilled in the art can easily understand other advantages and efficacy of the present invention. The present application can also be implemented or applied by different embodiments, and the details in this specification may also be based on different views and applications, and various modifications or changes are made without departing from the spirit of the present application. It is to be noted that the features in the following embodiments and embodiments may be combined with each other in the case of an unable conflict.

[0025] It should be noted that the illustrations provided in the following examples will illustrate the basic contemplative embodiments of the present application, and although only the components associated with the components associated with the components in the present application, the number, shape and Size drawn, but the type, quantity and p...

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Abstract

The invention provides an intelligent pressure monitoring 3D printing scoliosis orthosis. The intelligent pressure monitoring 3D printing scoliosis orthosis comprises a first body and a second body; each of the first body and the second body is provided with one or more inner side grooves correspondingly; a front side groove is formed in the second body; each inner side groove is filled with an air bag; a pressure sensor is arranged at the concave position of the air bag; a pressure pad making contact with the skin of a patient is arranged on the pressure sensor; the air bag is connected with an inflation pump capable of being inflated and deflated through an air pipe; and the pressure sensor is connected with a single-chip microcomputer arranged in the front side groove through a connecting line. The scoliosis orthosis is designed according to 3D scanning and manufactured through 3D printing, the structural design of hollowed-out, groove, trimming, guide pipes and the like can be achieved, the problems that a traditional orthosis is airtight, not attractive and waste in material are solved; and the first body and the second body are connected through a connecting rope, and the orthosis body has a larger opening and closing angle, so that the patient can conveniently put on, take off and pressurize a bandage.

Description

Technical field [0001] The present application relates to a technical field of medical devices, in particular to a intelligent pressure monitoring 3D print spine side bending orthoper. Background technique [0002] Spinal bending refers to one or several segments of the spine to the side and accompanied by the increased or decreasing spinal deformity of the rear convex or leading in the vertebral body, the spinal deformity of the spine, and the spine Flexible or rigid deforities on rotation and corona. Patients with more than 30 degrees of curves have further developed a greater risk. When the curve exceeds 50 degrees, the patient's physical and mental health and quality of life will greatly reduce and need surgery. Early effective orthosis is critical due to the risk, trauma and financial burden of surgery, and the treatment of further development of the curve becomes critical. [0003] There is a significant time dose effect in the treatment of spinal side bending orthoplator, ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61F5/01B33Y80/00
CPCA61F5/01B33Y80/00
Inventor 王金武吴云成许苑晶黄信恒鲁德志王彩萍王赞博刘同有石国宏万克明肖明吴仁愿戴尅戎
Owner SHANGHAI NINTH PEOPLES HOSPITAL AFFILIATED TO SHANGHAI JIAO TONG UNIV SCHOOL OF MEDICINE
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