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乳腺摄影中钼-钼、钼-铑和铑-铑靶-滤过组合的对比度和剂量。

Contrast and dose with Mo-Mo, Mo-Rh, and Rh-Rh target-filter combinations in mammography.

作者信息

Gingold E L, Wu X, Barnes G T

机构信息

Department of Radiology, University of Alabama Hospitals and Clinics, University of Alabama at Birmingham, USA.

出版信息

Radiology. 1995 Jun;195(3):639-44. doi: 10.1148/radiology.195.3.7753987.

Abstract

PURPOSE

To study the effect of three mammography target-filter combinations on contrast and dose.

MATERIALS AND METHODS

With screen-film sensitometry, the contrast of a calcification target embedded in simulated breast tissue was measured for three target-filter combinations--molybdenum-molybdenum (Mo-Mo), molybdenum rhodium (Mo-Rh), and rhodium-rhodium (Rh-Rh)--as a function of x-ray tube potential, breast thickness, and breast composition. The corresponding average glandular tissue doses were also determined.

RESULTS

Contrast and dose decreased with increasing kilovolt peak with all three target-filter combinations. Contrast was highest for Mo-Mo and lowest for Rh-Rh for images exposed with a low kilovoltage (< 29 kVp). For thick or radiographically dense phantoms, the contrast produced with Mo-Mo was less than or equal to that produced by the other two x-ray spectra when a higher kilovoltage (> or = 29 kVp) was selected. Average glandular dose was greatest for Mo-Mo and lowest for Rh-Rh for all phantom thicknesses, breast compositions, and tube potentials studied.

CONCLUSIONS

For the thick or dense breast, the alternative target-filter selections can achieve contrast comparable to or better than that obtainable with Mo-Mo while using a smaller dose.

摘要

目的

研究三种乳腺X线摄影靶-滤过组合对对比度和剂量的影响。

材料与方法

采用屏-片感光测定法,测量了三种靶-滤过组合——钼-钼(Mo-Mo)、钼-铑(Mo-Rh)和铑-铑(Rh-Rh)——在模拟乳腺组织中嵌入钙化靶时的对比度,该对比度是X射线管电压、乳腺厚度和乳腺组成的函数。还测定了相应的平均腺体组织剂量。

结果

所有三种靶-滤过组合的对比度和剂量均随千伏峰值的增加而降低。对于低千伏(<29 kVp)曝光的图像,Mo-Mo的对比度最高,Rh-Rh的对比度最低。对于厚的或影像学密度高的体模,当选择较高千伏(≥29 kVp)时,Mo-Mo产生的对比度小于或等于其他两种X线光谱产生的对比度。在所研究的所有体模厚度、乳腺组成和管电压条件下,Mo-Mo的平均腺体剂量最大,Rh-Rh的平均腺体剂量最小。

结论

对于厚的或致密的乳腺,选用其他靶-滤过组合在使用较小剂量的情况下可获得与Mo-Mo相当或更好的对比度。

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