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首页> 外文期刊>Medical Physics >A moving slanted-edge method to measure the temporal modulation transfer function of fluoroscopic systems.
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A moving slanted-edge method to measure the temporal modulation transfer function of fluoroscopic systems.

机译:一种移动的倾斜边缘方法,用于测量荧光镜系统的时间调制传递函数。

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Lag in fluoroscopic systems introduces a frame-averaging effect that reduces measurements of image noise and incorrectly inflates measurements of the detective quantum efficiency (DQE). A correction can be implemented based on measurements of the temporal modulation transfer function (MTF). We introduce a method of measuring the temporal MTF under fluoroscopic conditions using a moving slanted edge, a generalization of the slanted-edge method used to measure the (spatial) MTF, providing the temporal MTF of the entire imaging system. The method uses a single x-ray exposure, constant edge velocity, and assumes spatial and temporal blurring are separable. The method was validated on a laboratory x-ray image intensifier (XRII) system by comparison with direct measurements of the XRII optical response, showing excellent agreement over the entire frequency range tested (+/- 100 Hz). With proper access to linearized data and continuous fluoroscopy, this method can be implemented in a clinical setting on both XRII and flat-panel detectors. It is shown that the temporal MTF of the CsI-based validation system is a function of exposure rate. The rising-edge response showed more lag than the falling edge, and the temporal MTF decreased with decreasing exposure rate. It is suggested that a small-signal approach, in which the range of exposure rates is restricted to a linear range by using a semitransparent moving edge, would be appropriate for measuring the DQE of these systems.
机译:荧光镜系统的延迟会引入帧平均效应,从而降低图像噪声的测量值,并错误地夸大检测量子效率(DQE)的测量值。可以基于时间调制传递函数(MTF)的测量值来执行校正。我们介绍了一种使用移动的倾斜边缘在透视条件下测量时间MTF的方法,一种用于测量(空间)MTF的倾斜边缘方法的概括,提供了整个成像系统的时间MTF。该方法使用单个X射线曝光,恒定的边缘速度,并假设空间和时间模糊是可分离的。通过与XRII光学响应的​​直接测量结果进行比较,该方法在实验室X射线图像增强器(XRII)系统上得到了验证,在整个测试频率范围(+/- 100 Hz)上显示出极好的一致性。通过正确访问线性化数据和连续荧光检查,该方法可以在XRII和平板探测器的临床环境中实施。结果表明,基于CsI的验证系统的时间MTF是暴露率的函数。上升沿响应显示出比下降沿更滞后,并且时间MTF随着曝光率的降低而降低。建议采用小信号方法,其中通过使用半透明移动边将曝光率范围限制在线性范围内,这对于测量这些系统的DQE是合适的。

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