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高分辨率外周定量计算机断层扫描图像中胫骨的皮质测量:与同步辐射微计算机断层扫描的比较

Cortical measurements of the tibia from high resolution peripheral quantitative computed tomography images: a comparison with synchrotron radiation micro-computed tomography.

作者信息

Ostertag Agnès, Peyrin Françoise, Fernandez Sylvie, Laredo Jean Denis, de Vernejoul Marie Christine, Chappard Christine

机构信息

INSERM 606 University Paris Diderot, PRES Sorbonne Paris Cité, 75010 Paris France.

CREATIS, INSERM U1044, CNRS 5220, Université de Lyon, 69621 Villeurbanne Cedex, France; ESRF, X-ray Imaging Group, 38043 Grenoble Cedex, France.

出版信息

Bone. 2014 Jun;63:7-14. doi: 10.1016/j.bone.2014.02.009. Epub 2014 Feb 26.

Abstract

High resolution-peripheral quantitative computed tomography (HR-pQCT) measurements are carried out in clinical research protocols to analyze cortical bone. Micro-computed tomography (micro-CT) is a standard tool for ex vivo examination of bone in 3D. The aim of this work was to evaluate cortical measurements derived from HR-pQCT images compared to those from synchrotron radiation (SR) micro-CT in a distal position (4.2 cm from the distal pilon). Twenty-nine tibia specimens were scanned with HR-pQCT using protocols provided by the manufacturer. The standard measured outcomes included volumetric bone density (gHA/cm(3)) of the cortical region (Dcomp), and the cortical thickness (Ct.Th, mm). New features, such as cortical porosity (Ct.Po) and mean pore diameter (Ct.Po.Dm), were measured by an auto-contouring process. All tibias were harvested from the posterior region and imaged with SR micro-CT (voxel size=7.5 μm). The cortical thickness, (Ct.Thmicro-CT), porosity (PoV/TV), pore diameter, pore spacing, pore number, and degree of mineralization of bone (DMB) were obtained for SR micro-CT images. For standard measurements on HR-pQCT images, site matched analyses with micro-CT were completed to obtain Dcomplocal and Ct.Thlocal. Dcomp was highly correlated to PoV/TV (r=-0.84, p<10(-4)) but not to DMB. Dcomplocal was correlated to PoV/TV (r=-0.72, p<10(-4)) and to DMB (r=0.40, p>0.05). Ct.Thlocal and Ct.Thmicro-CT were moderately correlated (r=0.53, p<0.01). Ct.Th and Ct.Po results from the autocontouring process are influenced by the level of trabecularization of the cortical bone and need manual correction of the endosteal contour. Distal tibia is a reliable region to study cortical bone with Dcomp as the best parameter because it reflects both the micro-porosity (Havers canals) and macro-porosity (resorption lacunae) of the cortical bone.

摘要

在临床研究方案中进行高分辨率外周定量计算机断层扫描(HR-pQCT)测量以分析皮质骨。微计算机断层扫描(micro-CT)是用于对骨进行离体三维检查的标准工具。这项工作的目的是评估从HR-pQCT图像得出的皮质测量结果,并与在距远端腓骨4.2厘米的远端位置通过同步辐射(SR)微CT得出的测量结果进行比较。使用制造商提供的方案,对29个胫骨标本进行HR-pQCT扫描。标准测量结果包括皮质区域的体积骨密度(gHA/cm³)(Dcomp)和皮质厚度(Ct.Th,毫米)。通过自动轮廓分析过程测量新的特征,如皮质孔隙率(Ct.Po)和平均孔径(Ct.Po.Dm)。所有胫骨均从后部区域采集,并用SR微CT成像(体素大小=7.5μm)。从SR微CT图像中获得皮质厚度(Ct.Thmicro-CT)、孔隙率(PoV/TV)、孔径、孔间距、孔数量和骨矿化程度(DMB)。对于HR-pQCT图像上的标准测量,完成与微CT的部位匹配分析以获得Dcomplocal和Ct.Thlocal。Dcomp与PoV/TV高度相关(r=-0.84,p<10⁻⁴),但与DMB不相关。Dcomplocal与PoV/TV相关(r=-0.72,p<10⁻⁴),与DMB相关(r=0.40,p>0.05)。Ct.Thlocal和Ct.Thmicro-CT呈中度相关(r=0.53,p<0.01)。自动轮廓分析过程得出的Ct.Th和Ct.Po结果受皮质骨小梁化程度的影响,需要对内骨膜轮廓进行手动校正。远端胫骨是研究皮质骨的可靠区域,以Dcomp作为最佳参数,因为它反映了皮质骨的微孔(哈弗斯管)和大孔(吸收陷窝)。

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