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一种利用多自由度牵引与稳定装置进行桡骨远端骨折切开复位内固定的新方法。

A Novel Approach to Open Reduction and Internal Fixation of Distal Radius Fractures Utilizing a Multi-Degree-of-Freedom Traction and Stabilization Device.

作者信息

Oeding Jacob F, Bockman Sam, Chiu Harriet, Hua Cheyenne, Connor James, Slocum Alexander

机构信息

New York University Grossman School of Medicine, New York, NY 10016; Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139.

Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139.

出版信息

J Med Device. 2022 Jun 1;16(2):021006. doi: 10.1115/1.4052901. Epub 2022 Feb 3.

Abstract

Open reduction and internal fixation (ORIF) is a surgical procedure performed with the objectives of restoring normal alignment and providing stability to broken bone fragments after a fracture. This procedure is increasingly used to treat fractures of the distal end of the radius. Reduction is achieved by the surgeon pulling and manipulating the hand while looking at real-time X-rays, and frequently requires large forces to distract impacted fragments from the proximal bone. This study presents the design and preliminary testing of a multi-degree-of-freedom (DOF) device capable of performing both distraction and reduction of fractured bone fragments using a traction splint mechanism with locking ball joints. A prototype was manufactured, and tests were conducted by a practicing hand surgeon. Both qualitative and quantitative tests using a phantom arm were performed. Quantitative force testing found an 80% reduction in the maximum force required to create needed traction, while qualitative tests with a hand surgeon found the device's ability to reduce and stabilize bone fragments while the hardware is secured to be more intuitive and less obstructive than existing techniques.

摘要

切开复位内固定术(ORIF)是一种外科手术,其目的是在骨折后恢复正常对线并为骨折碎片提供稳定性。该手术越来越多地用于治疗桡骨远端骨折。复位是通过外科医生在查看实时X射线的同时牵拉和操作手部来实现的,并且通常需要很大的力来将嵌入的碎片与近端骨骼分离。本研究介绍了一种多自由度(DOF)装置的设计和初步测试,该装置能够使用带有锁定球形接头的牵引夹板机制对骨折碎片进行牵引和复位。制造了一个原型,并由一名执业手外科医生进行了测试。使用模拟手臂进行了定性和定量测试。定量力测试发现,产生所需牵引力所需的最大力降低了80%,而与手外科医生进行的定性测试发现,在固定硬件时,该装置减少和稳定骨碎片的能力比现有技术更直观且妨碍性更小。

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