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Detector motion method to increase spatial resolution in photon-counting detectors

机译:检测器运动方法增加光子计数探测器中的空间分辨率

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Abstract Medical imaging requires high spatial resolution of an image to identify fine lesions. Photon-counting detectors in medical imaging have recently been rapidly replacing energy-integrating detectors due to the former‘s high spatial resolution, high efficiency and low noise. Spatial resolution in a photon counting image is determined by the pixel size. Therefore, the smaller the pixel size, the higher the spatial resolution that can be obtained in an image. However, detector redesigning is required to reduce pixel size, and an expensive fine process is required to integrate a signal processing unit with reduced pixel size. Furthermore, as the pixel size decreases, charge sharing severely deteriorates spatial resolution. To increase spatial resolution, we propose a detector motion method using a large pixel detector that is less affected by charge sharing. To verify the proposed method, we utilized a UNO-XRI photon-counting detector (1-mm CdTe, Timepix chip) at the maximum X-ray tube voltage of 80 kVp. A similar spatial resolution of a 55-μm-pixel image was achieved by application of the proposed method to a 110-μm-pixel detector with a higher signal-to-noise ratio. The proposed method could be a way to increase spatial resolution without a pixel redesign when pixels severely suffer from charge sharing as pixel size is reduced.]]>
机译:<![CDATA [<标题>抽象 ara>医学成像需要图像的高空间分辨率以识别细小的病变。由于前者的高空间分辨率,高效率和低噪声,医学成像中的光子计数探测器最近迅速更换了能量集成探测器。光子计数图像中的空间分辨率由像素大小确定。因此,像素尺寸越小,可以在图像中获得的空间分辨率越高。然而,检测器重新设计需要减少像素尺寸,并且需要昂贵的精细过程来集成具有减小的像素尺寸的信号处理单元。此外,随着像素尺寸减小,电荷共享严重降低了空间分辨率。为了提高空间分辨率,我们提出了一种使用电荷共享影响的大像素检测器的检测器运动方法。为了验证所提出的方法,我们在80kVP的最大X射线管电压下使用了UNO-XRI光子计数检测器(1MM CDTE,TIMEPIX芯片)。通过将所提出的方法应用于110- <重点型=“斜体”>μ,实现了55- <重点类型=“斜体”>μ M-像素图像的类似空间分辨率。 M-Pixel检测器具有较高的信噪比。当像素尺寸减少时,当像素尺寸严重遭受电荷共享时,所提出的方法可以是增加空间分辨率而没有像素重新设计。]>

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