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Adaptive three-dimensional orthosis and manufacturing method thereof

A conformal, three-dimensional technology for orthopedic corsets, medical science, and non-surgical orthopedic procedures that can address issues such as joint stiffness

Active Publication Date: 2020-05-08
OSTEOID SAGLIK TEKNOLOJILERI AS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] Joint stiffness may be another problem associated with long-term use of splints or casts

Method used

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  • Adaptive three-dimensional orthosis and manufacturing method thereof
  • Adaptive three-dimensional orthosis and manufacturing method thereof
  • Adaptive three-dimensional orthosis and manufacturing method thereof

Examples

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Embodiment Construction

[0061] The present invention provides a custom designed full contact bone exoskeletal cast / splint with multiple adjustable and / or self-adjusting structural components that closely fit a portion of the human anatomy. The structural solution of the invention was developed to facilitate a controlled and medically beneficial relationship between the orthosis and the patient. While the structural solutions of the present invention are particularly suited for post-fracture applications, the methods and techniques described herein may also be used to treat other musculoskeletal and neuromuscular conditions requiring orthopedic intervention. The devices and methods of the present invention address a series of very common complications in post-fracture management.

[0062] The swelling management system (SMS) introduces circumferential adjustment capability (increase or decrease) into a personalized body brace to accommodate swelling and atrophy during immobilization. SMS is achieved by...

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Abstract

Fabricate a conformal body interface using a dataset representing a three-dimensional soft tissue body surface. The conformable body interface includes a body frame divided into two or more longitudinal segments separated by an axial joint. Optionally, the body support is further divided into two or more circumferentially separated segments separated by a circumferential joint. The axial joint is constrained circumferentially by an elastic band, sheet or similar structure, and the circumferential joint is constrained longitudinally by an elastic axial tether or similar structure. In this way, the body interface can accommodate swelling and curvature of the body surface.

Description

[0001] Cross References to Related Applications [0002] This PCT application claims the benefit of U.S. Provisional Application No. 62 / 151,920, filed April 23, 2015, and U.S. Provisional Application No. 62 / 152,593, filed April 24, 2015, and claims PCT / Priority of IB2015 / 002432, the entire disclosure of the above application is incorporated herein by reference. Background technique [0003] 1. Field of invention. Although orthopedic interventions for physical rehabilitation have been known for centuries, splints, casts, and other orthotics present challenges in their implementation. From splints made of sticks and casts made of plaster for temporary fixation, the field has progressed to the manufacture of dynamic orthoses from advanced composite materials. More recently, the field has evolved to use 3D scanning and printing techniques to produce 3D orthoses that are individualized to the patient's anatomy. [0004] The primary function of any cast or splint is to provide...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61F5/01A61F5/058A61F5/02
CPCA61F5/01A61F5/022A61F5/05841A61F2005/0197A61F2005/0167G16H50/50A61F5/0102B23P11/00
Inventor 德尼兹·卡拉萨因
Owner OSTEOID SAGLIK TEKNOLOJILERI AS
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