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Methods for reduced platen compression (RPC) test specimen cutting locations using micro-CT and planar radiographs

机译:使用微型CT和平面X线照片减少压板压缩(RPC)试样切割位置的方法

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摘要

This study looks at improving reduced platen compression (RPC) specimen preparation procedures by developing a better method for locating the ideal RPC specimen on each bone. These improvements are aimed at decreasing the amount of time required to complete an RPC analysis and improving the quality of the obtained results. High-resolution micro-CT scans are used to gain a better understanding of rat long bone anatomy by quantifying the location, shape, and orientation of the growth plate, primary spongiosa, and secondary spongiosa.Micro-CT analysis shows that there are easily identifiable external landmarks on the anterior side of both tibias and femurs that identify the end of the growth plate and the point at which the top of an ideal RPC specimen should be located. The landmarks are the most proximal tip of the patellar surface for the femur and the base of the tibial tuberosity for the tibia. This study also analyzes the effect of variations in the actual RPC specimen location from the ideal location and the effect of different platen sizes on test results using BMD as a surrogate for mechanical properties. The analysis shows that the BMD increases as the target RPC specimen location approaches the growth plate and decreases on moving away from the growth plate. The study also indicates that consistency is necessary when obtaining RPC specimens to avoid error due to variation from the specified landmark. Additionally, the BMD decreased as the diameter of the platen is reduced. Choosing platen size then becomes a trade off between testing the greatest amount of cancellous bone possible and potentially higher load sharing by the cortical shell with larger platen sizes as well as the risk of compressing cortical bone during the test.
机译:这项研究着眼于通过开发一种在每个骨骼上定位理想RPC标本的更好方法来改善减少压板压缩(RPC)标本的制备程序。这些改进旨在减少完成RPC分析所需的时间,并提高所获得结果的质量。通过量化生长板,原发性海绵状肌和继发性海绵状海绵的位置,形状和方向,高分辨率的micro-CT扫描可以更好地了解大鼠长骨的解剖结构.Micro-CT分析表明,可以很容易地识别出胫骨和股骨前侧的外部标志,标识生长板的末端和理想RPC标本的顶部应位于的点。界标是股骨the骨表面的最近端,胫骨是胫骨结节的基部。这项研究还使用BMD作为机械性能的替代品,分析了理想RPC样品实际位置与理想位置之间的差异以及不同压板尺寸对测试结果的影响。分析表明,当目标RPC样本位置接近生长板时,BMD会增加,而远离生长板时,BMD会降低。该研究还表明,获取RPC标本时必须保持一致性,以避免由于指定界标的变化而引起的误差。另外,随着压板直径的减小,BMD减小。然后,选择压板尺寸将成为可能的选择,即测试尽可能多的松质骨与更大压板尺寸的皮质外壳可能承担的更高的负载分担以及测试期间压迫皮质骨的风险。

著录项

  • 作者

    Lemmon Heber;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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