Popova Y, Hersemeule G, Klausz R, Souchay H
Digital Guidance Solutions, GE Healthcare, 283 rue de la Minière, Buc 78530, France
Digital Guidance Solutions, GE Healthcare, 283 rue de la Minière, Buc 78530, France.
Radiat Prot Dosimetry. 2015 Jul;165(1-4):321-4. doi: 10.1093/rpd/ncv095. Epub 2015 Apr 1.
X-ray field to image receptor active area alignment is usually tested in mammographic QC. In digital breast tomosynthesis (dBT), the source moves during the acquisition, generating a displacement of the X-ray beam edges relative to the detector, in or out of the detector active area. To minimise unnecessary radiation while maximising the useful field of view, a solution consisting in adjusting the collimation with the source rotation was implemented on the GE SenoClaire dBT system. This solution is described and tested using three different methods based on: (1) images from the detector, (2) a non-screen film and (3) a semi-conductor tool providing the X-ray intensity profile. Method 1 demonstrated a maximum positioning error of 0.3 mm. Method 2 was found non-applicable; Method 3 provided measurements within 1.5 mm. Dynamic collimation enables maintaining an X-ray field to detector congruence comparable with 2D. Measuring the position of the X-ray field edges using a dedicated tool makes routine QC possible.
在乳腺摄影质量控制中,通常会检测X射线场与图像接收器有效区域的对准情况。在数字乳腺断层合成(dBT)中,采集过程中源会移动,导致X射线束边缘相对于探测器发生位移,可能移出或移入探测器有效区域。为了在最大化有用视野的同时最小化不必要的辐射,GE SenoClaire dBT系统实施了一种通过源旋转来调整准直的解决方案。使用基于以下三种不同方法对该解决方案进行了描述和测试:(1)探测器图像,(2)无屏胶片,(3)提供X射线强度分布的半导体工具。方法1显示最大定位误差为0.3毫米。发现方法2不适用;方法3提供的测量误差在1.5毫米以内。动态准直能够保持X射线场与探测器的一致性,与二维情况相当。使用专用工具测量X射线场边缘的位置使常规质量控制成为可能。