圆形加弧形轨道变异的初步调查与专用发射乳房x线摄影

C. Archer, M. Tornai, J. Bowsher, M. Bradshaw
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引用次数: 0

摘要

一个专用的发射乳房x线照像机,具有独特的半球成像能力,通过复杂的采集轨道对乳房进行成像,对乳房的大部分进行完全采样。像圆加弧(CPA)这样的轨道特别提供了在乳房的特定部分延长观看时间。这是一种有利的诊断而不是筛查成像工具,长时间的相机轨迹可以清楚地定位在怀疑病变的象限。然而,改变轨道使扫描时间更均匀地分布在乳房上也可能有效。由于轨迹符合乳房的形状,包括动态旋转半径控制,因此分辨率降低到最小。然而,对于轨道的弧形部分和圆形部分。由于单光子相机的视线可以看到未散射的一次辐射,特别是来自心脏和肝脏的辐射,因此可能会增加背景污染。通过测量病变的信噪比和对比度,研究了圆弧的方位位置以及圆弧的程度对图像质量的影响。此外,由于CPA的分辨率特征在整个乳房象限中并不均匀,因此通过单独测量具有不同放射性浓度病变的乳房幻像和额外的躯干背景,研究了以3D三叶草形状的改进轨道的实现。这些初步结果表明,极倾斜确实会影响图像质量,低极倾斜显示的信噪比和对比度变化不大,而当躯干背景存在时,增加倾斜会使信噪比和对比度降低/spl sim/2/spl倍/。考虑到方位弧位置的影响,/spl θ /=45/spl度/产生最高的信噪比,并在信噪比评估的位置进行对比。这两种三叶草轨道的信噪比和对比都与CPA轨道相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Initial investigation of circle-plus-arc orbit variants with a dedicated emission mammotomograph
A dedicated emission mammotomograph, uniquely capable of imaging in a hemisphere, is utilized to image the breast by way of complex acquisition orbits, completely sampling most of the breast. Orbits such as the circle-plus-arc (CPA) in particular provide for extended viewing times in a specific portion of the breast. This is advantageous in that as a diagnostic rather than screening imaging tool, a long duration of the camera trajectory may be distinctly positioned in the quadrant where the lesion is suspected. However, orbit modifications that distribute the scan time more evenly over the breast may also be effective. As the trajectories conform to the shape of the breast, including dynamic radius-of-rotation control, resolution degradation is minimized. However, for both the arc and the circular portion of the orbit. increased background contamination may result since the line-of-sight of the single photon camera can view unscattered primary radiation, particularly from cardiac and hepatic sources. The effect of azimuthal position of the arc, as well as the degree of the arc, on image quality is investigated by measurements of lesion signal-to-noise ratios and contrasts. Additionally, because the resolution characteristics of the CPA are not uniform throughout breast quadrants, the implementation of a modified orbit, in the shape of a 3D cloverleaf is investigated through measurements of the breast phantom alone with lesions of varying radioactive concentrations, and with additional torso backgrounds. These initial results indicate that polar tilt does affect image quality, with low polar tilt showing little variation in SNRs and contrasts, while increasing tilt decreases SNRs and contrasts by /spl sim/2/spl times/ when torso background is present. Considering the effect of azimuthal arc location, /spl theta/=45/spl deg/ yields the highest SNRs and contrasts for the locations at which SNR was evaluated. Both cloverleaf orbits yield comparable SNRs and contrasts to the CPA orbits.
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