首页> 外文期刊>Nuclear instruments and methods in physics research >Particle Induced X-ray Emission (PIXE) for elemental tissue imaging in hip modular prosthesis fracture case
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Particle Induced X-ray Emission (PIXE) for elemental tissue imaging in hip modular prosthesis fracture case

机译:髋部模块化假体骨折病例中用于元素组织成像的粒子诱导X射线发射(PIXE)

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摘要

The increased modularity in the total hip arthroplasty (THA) allows adapting the prosthesis to the specific anatomical characteristics of each patient. However, the advantages of the modular THA are shadowed by the increased number of prosthesis failures observed in patients. The presence of junction in modular THA may increase its risk of mechanical failure. Moreover, the micro movements between neck and stem could lead to the production of metallic debris which may cause tissue inflammation and unsealing of prosthesis due to osseous dissolution. It is necessary to understand the mechanism of dispersion of the metal particles from the prosthesis into the tissue. Techniques currently applied in hospitals, such as X-ray scans or optical tissue microscopies, are able to distinguish metal particles, but unable to identify their specific metallic origin. In this work, within the TissueMaps project, we have proved that Proton Induced X-ray Emission (PIXE) is able to provide the distribution and elemental composition of particles from the prosthesis into the pseudo capsular tissue samples (near the femoral head) and identify the features observed under optical microscopy, in a case of broken neck prosthesis.
机译:全髋关节置换术(THA)模块化程度的提高允许假体适应每个患者的特定解剖特征。但是,模块化THA的优点被患者中观察到的假体故障数量增加所掩盖。模块化THA中结点的存在可能会增加其机械故障的风险。此外,颈部和茎部之间的微小运动可能导致金属碎片的产生,这些金属碎片可能由于骨溶解而引起组织炎症和假体开封。有必要了解金属颗粒从假体分散到组织中的机制。当前在医院中应用的技术,例如X射线扫描或光学组织显微镜检查,能够区分金属颗粒,但无法识别其特定的金属来源。在这项工作中,在TissueMaps项目中,我们证明了质子诱导的X射线发射(PIXE)能够提供从假体到假包膜组织样本(股骨头附近)中颗粒的分布和元素组成,并进行识别假体折断的情况下,在光学显微镜下观察到的特征。

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