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A Biomechanical Model for Augmented Human Rotator Cuff Repairs

机译:增强型人体肩袖修复的生物力学模型

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摘要

Rotator cuff tears affect 40% or more of those over age 60 and are a common cause of pain and disability. Surgical repairs have high failure rates that range from 20 to 90%. Hence, natural and synthetic scaffolds are being developed to mechanically augment tendon repairs and to biologically enhance the intrinsic healing potential of the patient. When used as an augmentation device, scaffolds are believed to provide some degree of load sharing in a manner that decreases the likelihood of tendon re-tear. While significant advances are being made in the development of scaffolds, no studies have investigated the degree of load sharing provided by a scaffold used for rotator cuff repair augmentation. Furthermore, the manner in which loads on an augmented rotator cuff repair are distributed amongst the various components of the repair is not known, nor is the relative biomechanical importance of the various components of the repair. To answer these questions, the objectives of this study are to (1) develop quasi-static analytical models of simplified rotator cuff repairs, (2) validate the models by comparing the predicted model force to experimental measurements of force for human rotator cuff repairs, and (3) use the models to predict the degree of load sharing provided by a scaffold used for rotator cuff repair augmentation.
机译:肩袖撕裂影响60岁以上者的40%或更多,是造成疼痛和残疾的常见原因。手术修复的故障率很高,范围从20%到90%。因此,正在开发天然和合成的支架以机械地增强肌腱修复并从生物学上增强患者的固有治愈潜力。当用作增强装置时,认为支架以减小腱再撕裂的可能性的方式提供一定程度的负荷共享。尽管脚手架的开发取得了重大进展,但尚无研究调查用于肩袖修复的脚手架提供的负荷分担程度。此外,还不知道在增强的袖套修补物上的负荷在修补物的各个部件之间分配的方式,也不知道修补物的各个部件的相对生物力学重要性。为了回答这些问题,本研究的目的是(1)建立简化的肩袖修补术的准静态分析模型,(2)通过将预测的模型力与人肩袖修补术的实验测量值进行比较来验证模型, (3)使用模型预测由肩袖修复术使用的支架提供的负荷分担程度。

著录项

  • 来源
  • 会议地点 Naples FL(US);Naples FL(US)
  • 作者单位

    Dept. of Biomedical Engineering and Orthopedic Research Center, Cleveland Clinic, Cleveland, OHrn Dept. of Chemical and Biomedical Engineering, Cleveland State University, Cleveland, OH;

    Dept. of Chemical and Biomedical Engineering, Cleveland State University, Cleveland, OH;

    Dept. of Biomedical Engineering and Orthopedic Research Center, Cleveland Clinic, Cleveland, OH;

    Dept. of Orthopedic Surgery, Orthopedic and Rheumatologic Institute, Cleveland Clinic, Cleveland, OH;

    Dept. of Chemical and Biomedical Engineering, Cleveland State University, Cleveland, OH Dept. of Orthopedic Surgery, Orthopedic and Rheumatologic Institute, Cleveland Clinic, Cleveland, OH;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体工程学;
  • 关键词

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