首页> 外文期刊>Technology and health care: official journal of the European Society for Engineering and Medicine >A new bending stiffness measurement device to monitor the influence of different intramedullar implants during healing period
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A new bending stiffness measurement device to monitor the influence of different intramedullar implants during healing period

机译:一种新的弯曲刚度测量装置,可监测愈合期间不同髓内植入物的影响

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摘要

To manage fractures in long bones, intramedullar implants, plates or external flxators are often used. In many cases, the implants are removed after bone consolidation. X-ray images are normally used to monitor bone formation and to determine the point of return to full load bearing and removal of the implants. However, plain radiographs give only inaccurate information about the degree of healing progress. Known quantitative methods as QCT, DEXA, etc. provide information about bone density which certainly contributes to the mechanical properties of healing bone, but they do not provide a direct measurement of the stiffness of the healing callus. In this study we present an in vivo 4-point-bending stiffness device for small animals which is designed to directly monitor the progression of the healing process. The device was tested in a bone-defect model with different test-specimens chosen to simulate the stiffness of bone at different stages of healing. To verify the results, it was tested in an animal fracture study in rabbits during the healing period with and without an intramedulary implant. Both the test-specimen and bones of the in vivo study were compared with data in a materials testing system (MTS) in four-point bending. The device was found to have a high precision and significant in vitro and in vivo correlation with the MTS. The results suggest that this measurement device has the ability to monitor the healing process of bone and to analyse the influence of degradable implants on the mechanical behaviour of bone or bone metabolism effecting pharmaceutics.
机译:为了处理长骨中的骨折,通常使用髓内植入物,钢板或外固定器。在许多情况下,在骨固结后将植入物移除。 X射线图像通常用于监视骨骼的形成并确定返回到满负荷的状态以及植入物的去除点。但是,普通的X射线照片只能提供有关治疗进展程度的不准确信息。已知的定量方法(如QCT,DEXA等)可提供有关骨骼密度的信息,这些信息无疑有助于愈合骨骼的机械性能,但不能直接测量愈合愈伤组织的硬度。在这项研究中,我们提出了一种用于小动物的体内四点弯曲刚度装置,该装置旨在直接监测愈合过程的进展。在骨缺损模型中测试了该设备,并选择了不同的测试标本来模拟不同愈合阶段的骨骼刚度。为了验证结果,在有或没有髓内植入物的愈合期间,在兔子的动物骨折研究中对它进行了测试。体内研究的测试样本和骨骼都与材料测试系统(MTS)中四点弯曲的数据进行了比较。发现该装置具有高精度,并且与MTS具有明显的体外和体内相关性。结果表明该测量设备具有监测骨骼愈合过程并分析可降解植入物对骨骼机械行为或影响药物的骨骼代谢的影响的能力。

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