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冲击微压痕测量与傅里叶变换红外成像测量的人类皮质骨材料性能相关。

Impact microindentation measurements correlate with cortical bone material properties measured by Fourier transform infrared imaging in humans.

机构信息

Ludwig Boltzmann Institute of Osteology at 1st Medical Department, Hanusch Hospital of Österreichische Gesundheitskasse (ÖGK) and Research Funds of the Austrian Workers Compensation Board (AUVA) Trauma Centre Meidling, Vienna, Austria.

Leiden Center for Bone Quality, Leiden University Medical Center, Leiden, the Netherlands.

出版信息

Bone. 2020 Aug;137:115437. doi: 10.1016/j.bone.2020.115437. Epub 2020 May 27.

Abstract

Bone Material Strength index (BMSi) measured by Impact Microindentation is generally lower in subjects with fragility fractures independently of BMD values. We recently reported that in humans, BMSi values are strongly associated with material properties of subperiosteal mineralized bone surface (local mineral content, nanoporosity, pyridinoline content). In the present study we investigated the relationship of BMSi with material properties of the whole bone cortex, by analyzing thin sections of iliac crest biopsies (N = 12) from patients with different skeletal disorders and a wide range of BMD with or without fractures, by Fourier transform infrared imaging (FTIRI). The calculated parameters were: i) mineral and organic matrix content and their ratio (MM), ii) mineral maturity/crystallinity (MMC) and iii) the ratio of pyridinoline (Pyd) and divalent collagen cross-links (XLR). Results were expressed as images, which were converted to histogram distributions. For each histogram the characteristics recorded were: mean value, mode (most often occurring value), skewness, and kurtosis and their association with BMSi values was examined by correlation analysis. BMSi values were significantly correlated only with MM mean and mode values (r = 0.736, p = 0.0063, and r = 0.855, p = 0.0004, respectively), and with XLR mode values (r = -0.632, p = 0.0274). The results of the present study demonstrate that BMSi values are strongly associated with MM, a metric that corrects the mineral content for the organic matrix content, and may also depend on organic matrix quality. These and our previous observations strongly suggest that BMSi assesses material properties of cortical bone.

摘要

骨材料强度指数(BMSi)通过冲击微压痕测量,在脆性骨折患者中通常独立于 BMD 值较低。我们最近报道,在人类中,BMSi 值与骨皮质下矿化骨表面的材料特性(局部矿物质含量、纳米孔隙率、吡啶啉含量)密切相关。在本研究中,我们通过傅里叶变换红外成像(FTIRI)分析了来自不同骨骼疾病和 BMD 范围广泛的患者的髂嵴活检的薄片,研究了 BMSi 与整个骨皮质材料特性的关系,这些患者有或没有骨折。计算的参数为:i)矿物质和有机基质的含量及其比值(MM),ii)矿物质成熟度/结晶度(MMC)和 iii)吡啶啉(Pyd)和二价胶原蛋白交联物(XLR)的比值。结果以图像表示,然后转换为直方图分布。对于每个直方图,记录的特征为:平均值、模式(最常发生的值)、偏度和峰度,以及它们与 BMSi 值的相关性通过相关分析进行检查。BMSi 值仅与 MM 的平均值和模式值显著相关(r = 0.736,p = 0.0063 和 r = 0.855,p = 0.0004),与 XLR 的模式值显著相关(r = -0.632,p = 0.0274)。本研究的结果表明,BMSi 值与 MM 密切相关,MM 是一种校正矿物质含量的有机基质含量的指标,可能还取决于有机基质的质量。这些以及我们之前的观察结果强烈表明,BMSi 评估皮质骨的材料特性。

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