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Performance analysis of a Csl-based flat panel detector in a cone beam variable resolution X-ray system

机译:锥束可变分辨率X射线系统中基于Csl的平板探测器的性能分析

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A new Cone-Beam CT (CBCT) system is introduced that uses the concept of Variable Resolution X-ray (VRX) detection, which has previously been demonstrated to significantly increase spatial resolution for small objects. An amorphous silicon Flat Panel Detector (FPD) with a CsI scintillator (PaxScan 2020, Varian, Salt Lake City, UT) is coupled with a micro-focus x-ray tube (35 - 80 kVp, 10 - 250 μA) to form a CBCT. The FPD is installed on a rotating arm that can be adjusted to any angle 6, called the VRX angle, between 90° and 0° with respect to the x-ray direction. A VRX angle of 90° for the detector corresponds to a conventional CBCT whereas a VRX angle of 30° means that the detector is tilted 90° - 30° = 60° from its perpendicular position. Tilting the FPD in this manner reduces both the line-spread function width and the sampling distance by a factor of sin(θ), thereby increasing detector spatial resolution proportionately. An in-house phantom is used to measure the MTF of the reconstructed CT images using different VRX angles. An increase by a factor of 1.67 ± 0.007 is observed in the MTF cutoff frequency at 30° compared to 90° in images acquired at 75 kVp. Expected theoretical value for this case is 2.0. The new Cone-Beam Variable Resolution X-ray (CB-VRX) CT system is expected to significantly improve the images acquired from small objects - such as small animals - while exploiting the opportunities offered by a conventional CBCT.
机译:引入了一种新的锥束CT(CBCT)系统,该系统使用了可变分辨率X射线(VRX)检测的概念,该系统先前已被证明可以显着提高小物体的空间分辨率。将具有CsI闪烁体的非晶硅平板探测器(FPD)(PaxScan 2020,瓦里安,盐湖城,UT)与微焦点X射线管(35-80 kVp,10-250μA)耦合以形成CBCT。 FPD安装在旋转臂上,该旋转臂可相对于X射线方向调整为90°至0°之间的任意角度6(称为VRX角度)。检测器的VRX角度为90°对应于常规CBCT,而VRX角度为30°意味着检测器从其垂直位置倾斜90°-30°= 60°。以这种方式倾斜FPD将线扩展函数宽度和采样距离都减小了sin(θ)倍,从而成比例地增加了检测器的空间分辨率。内部模型用于使用不同的VRX角度来测量重建的CT图像的MTF。在以75 kVp采集的图像中,与90°相比,在30°的MTF截止频率上观察到增加了1.67±0.007倍。这种情况下的预期理论值为2.0。新的锥束可变分辨率X射线(CB-VRX)CT系统有望在利用常规CBCT提供的机会的同时,显着改善从小物体(例如小动物)获得的图像。

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