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首页> 外文期刊>Medical Physics >Scanning-slit photon counting x-ray imaging system using a microchannel plate detector.
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Scanning-slit photon counting x-ray imaging system using a microchannel plate detector.

机译:使用微通道板检测器的扫描狭缝光子计数X射线成像系统。

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摘要

An experimental prototype of a novel photon counting x-ray imaging system was evaluated. This system is based on an "edge-on" microchannel plate (MCP) detector and utilizes scanning slit imaging configuration. The detector is capable of photon counting, direct conversion, high spatial resolution, controllable physical charge amplification, quantum limited and scatter free operation. The detector provides a 60 mm wide field of view (FOV) and its count rate is 200 kHz for the entire FOV. The count rate of the current system is limited by the position encoding electronics, which has a single input for all events from the entire detector, and incorporates a single channel ADC with 1 micros conversion time. It is shown that the count rate can potentially be improved to clinically acceptable levels using multichannel application specific integrated circuit (ASIC) electronics and multi-slit image acquisition geometry. For a typical acquisition time used in this study, the image noise was measured to be less than the typically acceptable noise level for medical x-ray imaging. It is anticipated that the noise level will be also low after the implementation of the ASIC electronics. The quantum efficiency of the detector was measured to be 40%-56% for an energy range of 50-90 kVp for MCPs used in this study and can be improved to > 80% using MCPs with the optimized parameters. Images of resolution and anthropomorphic phantoms were acquired at an x-ray tube voltage of 50 kVp. The value of contrast transfer function for the detector was measured to be 0.5 at a spatial frequency of 5 lp/mm. The intrinsic spatial resolution of the system is 28 microm FWHM and was limited by the accuracy of the time-to-digital conversion of the position encoding electronics. Given the advantages of the edge-on MCP detector such as direct conversion and physical charge amplification, it can potentially be applied to mammography and chest radiography.
机译:评价了新型光子计数X射线成像系统的实验原型。该系统基于“边缘”微通道板(MCP)检测器,并利用扫描狭缝成像配置。该探测器能够进行光子计数,直接转换,高空间分辨率,可控的物理电荷放大,量子受限和无散射操作。该探测器提供60 mm宽视场(FOV),整个FOV的计数率为200 kHz。当前系统的计数率受到位置编码电子设备的限制,位置编码电子设备具有来自整个检测器的所有事件的单个输入,并集成了具有1微米转换时间的单通道ADC。结果表明,使用多通道专用集成电路(ASIC)电子设备和多缝图像采集几何结构可以将计数率提高到临床可接受的水平。对于本研究中使用的典型采集时间,测得的图像噪声小于医学X射线成像通常可接受的噪声水平。预计在实施ASIC电子设备后,噪声水平也将降低。对于本研究中使用的MCP,在50-90 kVp的能量范围内,检测器的量子效率测得为40%-56%,使用具有优化参数的MCP可以将其提高到> 80%。在50 kVp的X射线管电压下获取分辨率和拟人化体模的图像。在5lp / mm的空间频率下,检测器的对比度传递函数的值被测量为0.5。该系统的固有空间分辨率为28微米FWHM,并受到位置编码电子设备的时间数字转换精度的限制。考虑到边缘式MCP检测器的优势,例如直接转换和物理电荷放大,它可以潜在地应用于乳房X线照相和胸部X线照相。

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