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用于专用锥形束乳腺CT的一种乳腺特异性、低剂量散射校正技术:一种基于物理的提高亨氏单位准确性的方法。

A breast-specific, negligible-dose scatter correction technique for dedicated cone-beam breast CT: a physics-based approach to improve Hounsfield Unit accuracy.

作者信息

Yang Kai, Burkett George, Boone John M

机构信息

Department of Radiological Sciences, University of Oklahoma Health Sciences Center, 940 NE 13th Street, Nicholson Tower Room 3908, Oklahoma City, Oklahoma 73104, USA.

出版信息

Phys Med Biol. 2014 Nov 7;59(21):6487-505. doi: 10.1088/0031-9155/59/21/6487. Epub 2014 Oct 13.

Abstract

The purpose of this research was to develop a method to correct the cupping artifact caused from x-ray scattering and to achieve consistent Hounsfield Unit (HU) values of breast tissues for a dedicated breast CT (bCT) system. The use of a beam passing array (BPA) composed of parallel-holes has been previously proposed for scatter correction in various imaging applications. In this study, we first verified the efficacy and accuracy using BPA to measure the scatter signal on a cone-beam bCT system. A systematic scatter correction approach was then developed by modeling the scatter-to-primary ratio (SPR) in projection images acquired with and without BPA. To quantitatively evaluate the improved accuracy of HU values, different breast tissue-equivalent phantoms were scanned and radially averaged HU profiles through reconstructed planes were evaluated. The dependency of the correction method on object size and number of projections was studied. A simplified application of the proposed method on five clinical patient scans was performed to demonstrate efficacy. For the typical 10-18 cm breast diameters seen in the bCT application, the proposed method can effectively correct for the cupping artifact and reduce the variation of HU values of breast equivalent material from 150 to 40 HU. The measured HU values of 100% glandular tissue, 50/50 glandular/adipose tissue, and 100% adipose tissue were approximately 46, -35, and -94, respectively. It was found that only six BPA projections were necessary to accurately implement this method, and the additional dose requirement is less than 1% of the exam dose. The proposed method can effectively correct for the cupping artifact caused from x-ray scattering and retain consistent HU values of breast tissues.

摘要

本研究的目的是开发一种方法,以校正由X射线散射引起的杯状伪影,并使专用乳腺CT(bCT)系统的乳腺组织的Hounsfield单位(HU)值保持一致。先前已提出使用由平行孔组成的射束通过阵列(BPA)在各种成像应用中进行散射校正。在本研究中,我们首先验证了使用BPA在锥束bCT系统上测量散射信号的有效性和准确性。然后通过对使用和不使用BPA采集的投影图像中的散射与原发射线比(SPR)进行建模,开发了一种系统的散射校正方法。为了定量评估HU值提高后的准确性,扫描了不同的乳腺组织等效体模,并评估了通过重建平面的径向平均HU剖面图。研究了校正方法对物体大小和投影数量的依赖性。对五例临床患者扫描进行了所提出方法的简化应用,以证明其有效性。对于bCT应用中典型的10 - 18厘米乳腺直径,所提出的方法可以有效地校正杯状伪影,并将乳腺等效材料的HU值变化从150降低到40。100%腺体组织、50/50腺体/脂肪组织和100%脂肪组织的测量HU值分别约为46、-35和-94。发现仅需要六个BPA投影即可准确实施该方法,并且额外的剂量要求小于检查剂量的1%。所提出的方法可以有效地校正由X射线散射引起的杯状伪影,并保持乳腺组织的HU值一致。

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