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密度、弹性和结构对超声透过松质骨圆柱体的影响。

Influence of density, elasticity, and structure on ultrasound transmission through trabecular bone cylinders.

作者信息

Cavani F, Giavaresi G, Fini M, Bertoni L, de Terlizzi F, Barkmann R, Cane V

机构信息

Dept. of Anatomy & Histology, Univ. of Modena & Reggio Emilia, Modena, Italy.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Jul;55(7):1465-72. doi: 10.1109/TUFFC.2008.821.

Abstract

The aim of this in vitro study is to evaluate the potentiality of quantitative ultrasound (QUS) to separate information on density, elasticity, and structure on specimens of trabecular bone. Fifteen cylinders of spongy bone extracted from equine vertebrae were progressively demineralized and subjected to QUS, micro computed tomography (muCT), Dual energy X-ray absorptiometry (DXA) at various mineralization levels. Eventually all cylinders underwent a compression test to calculate the Young's modulus. Correlation analysis shows that speed of sound (SOS) is strictly associated to bone mineral density (BMD), Young's modulus, and all muCT parameters except for degree of anisotropy (DA). Fast wave amplitude (FWA) is directly correlated with bone surface and total volume ratio (BS/TV) and trabecular separation (Tb Sp), and inversely correlated with trabecular number (Tb N). Because muCT parameters were strictly correlated to BMD and Young's modulus data, partial correlation analysis was performed between SOS, FWA, and structural and elastic data in order to eliminate the effect of density. SOS was significantly correlated to bone volume and total volume ratio (BV/TV), BS/TV, and Young's modulus, and FWA was significantly correlated to Tb Sp only. These results show that SOS is strongly influenced by volumetric mineral bone density and elastic modulus of the specimen, and FWA is mainly affected by trabecular separation independently on density. Therefore, SOS and FWA are able to provide different and complementary information, at least on trabecular bone samples.

摘要

本体外研究的目的是评估定量超声(QUS)区分小梁骨标本密度、弹性和结构信息的潜力。从马椎骨中提取的15个松质骨圆柱体逐渐脱矿,并在不同矿化水平下接受QUS、微观计算机断层扫描(muCT)、双能X线吸收法(DXA)检测。最终,所有圆柱体均进行压缩试验以计算杨氏模量。相关性分析表明,声速(SOS)与骨矿物质密度(BMD)、杨氏模量以及除各向异性程度(DA)外的所有muCT参数密切相关。快波振幅(FWA)与骨表面和总体积比(BS/TV)以及小梁间距(Tb Sp)直接相关,与小梁数量(Tb N)呈负相关。由于muCT参数与BMD和杨氏模量数据密切相关,因此对SOS、FWA与结构和弹性数据进行了偏相关性分析,以消除密度的影响。SOS与骨体积和总体积比(BV/TV)、BS/TV以及杨氏模量显著相关,而FWA仅与Tb Sp显著相关。这些结果表明,SOS受标本的体积骨矿物质密度和弹性模量的强烈影响,而FWA主要受小梁间距的影响,与密度无关。因此,SOS和FWA至少在小梁骨样本上能够提供不同且互补的信息。

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