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Dose reduction in CT by anatomically adapted tube current modulation. I. Simulation studies.

机译:通过解剖适应管电流调制,可减少CT剂量。一,仿真研究。

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Tube current modulation governed by x-ray attenuation during CT (computed tomography) acquisition can lead to noise reduction which in turn can be used to achieve patient dose reduction without loss in image quality. The potential of this technique was investigated in simulation studies calculating both noise amplitude levels and noise distribution in CT images. The dependence of noise on the inodulation function, amplitude of modulation, shape and size of the object, and possible phase shift between attenuation and modulation function were examined. Both sinusoidal and attenuation-based control functions were used to modulate tube current. Noise reduction was calculated for both ideal systems and for real systems with limited modulation amplitude. Dose reductions up to 50% can be achieved depending on the phantom geometry and tube current modulation function. Attenuation-based tube current modulation yields substantially higher reduction than fixed-shape modulation functions. Optimal results are obtained when the current is modulated as a function of the square root of attenuation. A modulation amplitude of at least 90% should be available to exploit the potential of these techniques.
机译:在CT(计算机断层扫描)采集过程中,由X射线衰减控制的电子管电流调制可导致噪声降低,进而可用于降低患者剂量而不会降低图像质量。在模拟研究中研究了该技术的潜力,该研究计算了CT图像中的噪声幅度水平和噪声分布。研究了噪声对绝缘功能,调制幅度,物体形状和大小以及衰减和调制功能之间可能的相移的依赖性。正弦曲线和基于衰减的控制功能均用于调制管电流。对于理想系统和调制幅度受限的实际系统,均会计算出降噪效果。取决于体模的几何形状和管电流调制功能,最多可以减少50%的剂量。基于衰减的管电流调制比固定形状的调制函数产生的衰减要高得多。当电流根据衰减的平方根进行调制时,可获得最佳结果。至少有90%的调制幅度可用来开发这些技术的潜力。

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