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宝石光谱成像双能计算机断层扫描:一种确定尿路结石成分的新技术。

Gemstone spectral imaging dual-energy computed tomography: a novel technique to determine urinary stone composition.

机构信息

Department of Radiology, First Affiliated Hospital of Anhui Medical University, Hefei, China.

出版信息

Urology. 2013 Apr;81(4):727-30. doi: 10.1016/j.urology.2013.01.010. Epub 2013 Feb 26.

Abstract

OBJECTIVE

To assess the capability of determining the chemical composition of urinary stones using dual-energy spectral computed tomography (CT).

MATERIALS AND METHODS

A total of 116 urinary stones with a known chemical composition determined by infrared spectroscopy were scanned using both gemstone spectral imaging and conventional polychromatic imaging (at 120 kVp) in vitro. The CT numbers of each stone were recorded from the 11 sets of monochromatic images (40-140 keV, 10-keV interval) and 120-kVp polychromatic images. The differences between the CT numbers obtained in the 12 sets were compared among the stone groups.

RESULTS

The 116 urinary stones were classified into 7 groups: uric acid (n = 16), cystine (n = 10), brushite (n = 17), weddellite (n = 14), whewellite (n = 24), carbapatite (n = 12), and struvite (n = 23). The paired CT numbers (at 120 kVp and 50 keV, respectively) of each stone group were as follows: uric acid, 469.11 ± 69.83 and 474.06 ± 40.55 Hounsfield units (HU); cystine, 564.81 ± 97.71 and 839.58 ± 92.14 HU; brushite, 1830.94 ± 59.19 and 2787.41 ± 306.07 HU; weddellite, 1438.09 ± 191.12 and 2100.79 ± 202.32 HU; whewellite, 1493.48 ± 259.90 and 2321.39 ± 367.23 HU; carbapatite, 1784.58 ± 106.42 and 2513.86 ± 189.09 HU; and struvite, 833.037 ± 9.91 and 1123.24 ± 267.70 HU. The differences in the CT numbers at 120 kVp and 50 keV among the groups were statistically significant by binary comparison (P <.05), except for those at 120 kVp between uric acid and cystine (P = .121), whewellite and weddellite (P = .280), and brushite and carbapatite (P = .419).

CONCLUSION

Gemstone spectral imaging dual-energy CT provides a novel method to better characterize pure urinary stones using the CT numbers at 50 keV.

摘要

目的

评估双能光谱 CT 测定尿石化学成分的能力。

材料与方法

对 116 例经红外光谱分析已知化学成分的尿石进行体外宝石能谱 CT 扫描,分别采用宝石能谱成像和常规多光谱成像(120kVp)。记录从 11 组单能图像(40-140keV,10keV 间隔)和 120kVp 多光谱图像中获得的每块结石的 CT 值。比较不同结石组之间的 12 组 CT 值差异。

结果

116 例尿石分为 7 组:尿酸(n=16)、胱氨酸(n=10)、二水草酸钙(n=17)、一水合柠檬酸钙(n=14)、六水合柠檬酸钙(n=24)、碳磷灰石(n=12)和鸟粪石(n=23)。每组结石的配对 CT 值(分别为 120kVp 和 50keV)如下:尿酸,469.11±69.83 和 474.06±40.55 亨氏单位(HU);胱氨酸,564.81±97.71 和 839.58±92.14 HU;二水草酸钙,1830.94±59.19 和 2787.41±306.07 HU;一水合柠檬酸钙,1438.09±191.12 和 2100.79±202.32 HU;六水合柠檬酸钙,1493.48±259.90 和 2321.39±367.23 HU;碳磷灰石,1784.58±106.42 和 2513.86±189.09 HU;鸟粪石,833.037±9.91 和 1123.24±267.70 HU。组间 120kVp 和 50keV 的 CT 值差异经二元比较有统计学意义(P<.05),但尿酸与胱氨酸(P=0.121)、六水合柠檬酸钙与一水合柠檬酸钙(P=0.280)、二水草酸钙与碳磷灰石(P=0.419)除外。

结论

宝石能谱 CT 双能成像提供了一种新方法,可使用 50keV 的 CT 值更好地对纯尿石进行特征描述。

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