首页> 外文会议>IEEE Nuclear Science Symposium Conference >Improved contrast and spatial resolution with Single Photon Counting (SPC) for an area x-ray imager, the newly developed high-resolution Micro-Angiographic Fluoroscopic (MAF) detector
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Improved contrast and spatial resolution with Single Photon Counting (SPC) for an area x-ray imager, the newly developed high-resolution Micro-Angiographic Fluoroscopic (MAF) detector

机译:具有用于区域X射线成像仪的单光子计数(SPC)的对比度和空间分辨率,新开发的高分辨率微血管造影荧光透视(MAF)检测器

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Although in radiological imaging, the prevailing mode of acquisition is the integration of the energy deposited by all x-rays absorbed in the imaging detector, much improvement in image spatial and contrast resolution could be achieved if each individual x-ray photon were detected and counted separately. In this work we compare the conventional energy integration (El) mode with the new single photon counting (SPC) mode for a recently developed high-resolution Micro-Angiographic Fluoroscopic (MAF) detector, which is uniquely capable of both modes of operation. The MAF has 1024×1024 pixels of 35 microns effective size and is capable of real-time imaging at 30 fps. The large variable gain of its light image intensifier (LII) provides quantum limited operation with essentially no additive instrumentation noise and enables the MAF to operate in both EI and the very sensitive low-exposure SPC modes. We used high LII gain with very low exposure (<1 x-ray photon/pixel) per frame for SPC mode and higher exposure per frame with lower gain for EI mode. Multiple signal-thresholded frames were summed in SPC mode to provide an integrated frame with the same total exposure as EI mode. A heavily K-edge filtered x-ray beam (average energy of 31 keV) was used to provide a nearly monochromatic spectrum. The MTF measured using a standard slit method showed a dramatic improvement for the SPC mode over the EI mode at all frequencies. Images of a line pair phantom also showed improved spatial resolution with 12 lp/mm visible in SPC mode compared to only 8 Ip/mm in EI mode. In SPC mode, images of human distal and middle phalanges showed the trabecular structures of the bone with far better contrast and detail. These improvements with the SPC mode should be advantageous for clinical applications where high resolution and/or high contrast are essential such as in mammography and extremity imaging as well as for dual modality applications, which combine nuclear medicine and x-ray imaging using a single detector.
机译:尽管在放射成像中,所普遍的获取方式是通过在成像检测器中吸收的所有X射线沉积的能量的整合,如果检测到并计数每个单独的X射线光子,则可以实现图像空间和对比度分辨率的大大提高分别地。在这项工作中,我们将传统的能量集成(EL)模式与新的单光子计数(SPC)模式进行比较,用于最近开发的高分辨率微血管造影荧光透视(MAF)检测器,其独特地能够进行两种操作模式。 MAF具有35微米有效尺寸的1024×1024像素,并且能够以30 FPS实时成像。其光图像增强器(LII)的大可变增益提供量子有限的操作,基本上没有添加剂仪表噪声,使MAF能够在EI和非常敏感的低暴露SPC模式中操作。我们使用高LII增益,每帧为SPC模式的非常低的曝光(<1 X射线光子/像素),每个帧的曝光更高,EI模式的增益较低。在SPC模式下求和多个信号阈值帧,以提供具有与EI模式相同的总曝光的集成帧。使用重大k边缘过滤的X射线束(31keV的平均能量)来提供几乎单色光谱。使用标准狭缝方法测量的MTF在所有频率下对SPC模式显示了对SPC模式的显着改进。线对幻像的图像还显示出在SPC模式下可见的12LP / mm的改进的空间分辨率,而EI模式下仅为8 IP / mm。在SPC模式下,人体远端和中间点状的图像显示骨骼的小梁结构,具有更好的对比和细节。这些利用SPC模式的改进应该是有利的,用于高分辨率和/或高对比度的临床应用,例如乳房X线摄影和肢体成像以及使用单个检测器结合核医学和X射线成像的双重模型应用。

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