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使用单能量束谱强度校正的临床 CT 成像进行精确的骨矿物质密度测量。

Accurate measurement of bone mineral density using clinical CT imaging with single energy beam spectral intensity correction.

机构信息

Department of Electrical and Computer Engineering, National University of Singapore, 117576 Singapore.

出版信息

IEEE Trans Med Imaging. 2010 Jul;29(7):1382-9. doi: 10.1109/TMI.2010.2045767. Epub 2010 Mar 15.

Abstract

Although dual-energy X-ray absorptiometry (DXA) offers an effective measurement of bone mineral density, it only provides a 2-D projected measurement of the bone mineral density. Clinical computed tomography (CT) imaging will have to be employed for measurement of 3-D bone mineral density. The typical dual energy process requires precise measurement of the beam spectral intensity at the 80 kVp and 120 kVp settings. However, this is not used clinically because of the extra radiation dosage and sophisticated hardware setup. We propose an accurate and fast approach to measure bone material properties with single energy scans. Beam hardening artifacts are eliminated by incorporating the polychromatic characteristics of the X-ray beam into the reconstruction process. Bone mineral measurement from single energy CT correction is compared with that of dual energy correction and the commonly used DXA. Experimental results show that single energy correction is compatible with dual energy CT correction in eliminating beam hardening artifacts and producing an accurate measurement of bone mineral density. We can then estimate Young's modulus, yield stress, yield strain and ultimate tensile stress of the bone, which are important data for patient specific therapy planning.

摘要

虽然双能 X 射线吸收法 (DXA) 提供了一种有效的骨密度测量方法,但它只能提供骨骼矿物质密度的二维投影测量。为了测量三维骨矿物质密度,将不得不使用临床计算机断层扫描 (CT) 成像。典型的双能过程需要精确测量 80 kVp 和 120 kVp 设置下的光束光谱强度。然而,由于额外的辐射剂量和复杂的硬件设置,这并未在临床上使用。我们提出了一种使用单能扫描来测量骨材料特性的准确快速方法。通过将 X 射线束的多色特性纳入重建过程,可以消除束硬化伪影。比较了单能 CT 校正与双能校正和常用的 DXA 之间的骨矿物质测量值。实验结果表明,单能校正与双能 CT 校正在消除束硬化伪影和准确测量骨矿物质密度方面是兼容的。然后,我们可以估计骨骼的杨氏模量、屈服应力、屈服应变和极限拉伸应力,这些都是针对患者的治疗计划的重要数据。

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