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Breast tissue decomposition with spectral distortion correction: A postmortem study

机译:带有频谱畸变校正的乳房组织分解:事后研究

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Methods: Thirty-eight postmortem breasts were imaged with a cadmium-zinc-telluride-based photon- counting spectral CT system at 100 kV. The energy-resolving capability of the photon-counting detector was used to separate photons into low and high energy bins with a splitting energy of 42 keV. The estimated mean glandular dose for each breast ranged from 1.8 to 2.2 mGy. Two spectral distortion correction techniques were implemented, respectively, on the raw images to correct the nonlinear detector response due to pulse pileup and charge-sharing artifacts. Dual energy decomposition was then used to characterize each breast in terms of water, lipid, and protein content. In the meantime, the breasts were chemically decomposed into their respective water, lipid, and protein components to provide a gold standard for comparison with dual energy decomposition results.Results: The accuracy of the tissue compositional measurement with spectral CT was determined by comparing to the reference standard from chemical analysis. The averaged root-mean-square error in percentage composition was reduced from 15.5% to 2.8% after spectral distortion corrections.Conclusions: The results indicate that spectral CT can be used to quantify the water, lipid, and protein content in breast tissue. The accuracy of the compositional analysis depends on the applied spectral distortion correction technique. C 2014 American Association of Physicists in Medicine. [http://dx.doi.org/10.1118/1.4894724].Purpose: To investigate the feasibility of an accurate measurement of water, lipid, and protein composition of breast tissue using a photon-counting spectral computed tomography (CT) with spectral distortion corrections.
机译:方法:使用基于镉锌碲化物的光子计数光谱CT系统在100 kV下对38个死后乳房进行成像。光子计数检测器的能量分辨能力用于将光子分为分裂能为42 keV的低能箱和高能箱。每个乳房的估计平均腺体剂量为1.8至2.2 mGy。在原始图像上分别实施了两种频谱失真校正技术,以校正由于脉冲堆积和电荷共享伪像而引起的非线性检测器响应。然后使用双重能量分解法以水,脂质和蛋白质含量来表征每个乳房。同时,将乳房化学分解成各自的水,脂质和蛋白质成分,以提供金标准,以与双重能量分解结果进行比较。结果:通过光谱CT测量组织成分的准确性与化学分析的参考标准。校正光谱畸变后,平均百分数组成的均方根误差从15.5%降低到2.8%。结论:结果表明,光谱CT可用于量化乳腺组织中的水,脂质和蛋白质含量。成分分析的准确性取决于所应用的光谱失真校正技术。 C 2014美国医学物理学会。 [http://dx.doi.org/10.1118/1.4894724]。目的:研究使用光子计数光谱计算机断层扫描(CT)和光谱技术准确测量乳房组织中水,脂质和蛋白质成分的可行性失真校正。

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