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Multiple spin echoes for the evaluation of trabecular bone quality

机译:多种自旋回波评估小梁骨质量

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摘要

We report a simple and efficient MR method for the evaluation of trabecular bone quality. This technique is based on detection and imaging of Multiple Spin-Echoes (MSE), a manifestation of the dipolar field generated by residual intermolecular dipolar couplings in liquids. In the particular implementation we have used, originally proposed by Bowtell [J. Magn. Reson. 100 (1992) 1; J. Magn. Reson. 88 (1990) 643; Phys. Rev. Lett. 76 (1996) 4971], multiple spin echoes (MSE) are refocused in a two-pulse experiment in the presence of a correlation linear magnetic field gradient G_c. This gradient generates a magnetisation helix and results in the spatial modulation of the sample magnetisation. In heterogeneous systems, the amplitude of the MSE signal depends on sample heterogeneity over a distance d = π/(γG_cτ) which is half a cycle of the magnetisation helix, thus providing a novel contrast mechanism that can be tuned to a specific length scale. We have exploited this mechanism to study young bovine trabecular bone samples ex-vivo. We show that MSE images present a different contrast from conventional MR images, and that, by varying the experimental parameters, the image contrast can be related to specific trabecular pore sizes. The potential of this technique for the early diagnosis of osteoporotic diseases is discussed.
机译:我们报告了一种简单有效的MR方法,用于评估小梁骨质量。此技术基于多重自旋回波(MSE)的检测和成像,多重自旋回波是液体中残留的分子间偶极耦合产生的偶极场的一种表现。在最初由Bowtell [J.真是的雷森100(1992)1; J.Magn。雷森88(1990)643;物理莱特牧师[J.Biol.Chem.76(1996)4971]中,在存在相关线性磁场梯度G_c的情况下,在两脉冲实验中将多重自旋回波(MSE)重新聚焦。该梯度产生磁化螺旋,并导致样品磁化的空间调制。在异质系统中,MSE信号的幅度取决于距离d =π/(γG_cτ)上的样本异质性,该距离是磁化螺旋的半个周期,因此提供了一种可以调整到特定长度比例的新颖对比机制。我们已经利用这种机制来研究离体的年轻牛小梁骨样品。我们表明,MSE图像呈现出与常规MR图像不同的对比度,并且通过改变实验参数,图像对比度可以与特定的小梁孔径相关。讨论了该技术在骨质疏松疾病早期诊断中的潜力。

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