Kuhn J L, Goldstein S A, Feldkamp L A, Goulet R W, Jesion G
Biomechanics, Trauma, and Sports Medicine Laboratory, University of Michigan, Ann Arbor 48109-0486.
J Orthop Res. 1990 Nov;8(6):833-42. doi: 10.1002/jor.1100080608.
A new microcomputed tomography (micro-CT) system and thresholding procedure was evaluated as a tool for nondestructive analysis of trabecular bone. Images of 6-mm trabecular bone cubes acquired from the micro-CT system were compared with optical images of corresponding histologic sections to determine the accuracy of representation. The stereologic measures of bone volume fraction (PP) and trabecular plate density (PL) were used to quantify the comparisons. The results showed that the micro-CT measures of PP were not significantly different from those measured from histologic sections and therefore were very accurate. Measures of PL were different by approximately 14%, which translated into discrepancies in trabecular plate thicknesses of about 19 microns. This difference was significantly correlated to the microstructural characteristics of the specific specimen scanned. The precision of both measurements was excellent.
一种新型微计算机断层扫描(micro-CT)系统及阈值处理程序作为小梁骨无损分析工具进行了评估。将从微CT系统获取的6毫米小梁骨立方体图像与相应组织学切片的光学图像进行比较,以确定表征的准确性。采用骨体积分数(PP)和小梁板密度(PL)的体视学测量方法对比较结果进行量化。结果表明,PP的微CT测量值与组织学切片测量值无显著差异,因此非常准确。PL测量值相差约14%,这相当于小梁板厚度相差约19微米。这种差异与所扫描特定标本的微观结构特征显著相关。两种测量的精度都非常好。