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Low Dose Applications of LightSpeed VCT in Cardiac Imaging

机译:LightSpeed VCT在心脏成像中的低剂量应用

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We introduced and evaluated the techniques LightSpeed VCT uses to reduce X-ray dose and image noise in cardiac helical CT applications. These techniques include the use of much improved VCT data acquisition system (VDAS) with reduced electronic noise; cardiac bowtie that redistributes X-rays to have more signals for heart and much less flux to the peripheries; adaptive post-processing filters to reduce cardiac image noise; and ECG modulated tube currents to concentrate X-ray dose for desired cardiac phases. Phantom and patient scans were used to evaluate the dose saving and noise reduction potentials of these techniques. The results demonstrated that the improved VDAS reduced image noise 15-20% for cardiac imaging. With same scan technique, the use of cardiac bowtie reduced about 10% dose in terms of CTDIw measurement and clinical evaluation demonstrated additional 7% image noise reduction and equivalent image quality with cardiac bowtie vs. regular body bowtie. The adaptive filter generated 15-20% noise reduction while maintaining image resolution and artery sharpness. Finally, the use of ECG modulated mA method provided up to 50% dose reduction based on CTDIw measurements, but the saving potentials depended on the heart rate and cardiac phase selection. For heart rate of 60bpm and ± 15% cardiac phase margin, the average dose reduction could be 30%. Since these dose and noise reduction methods are inclusive and can be combined to produce even greater doseoise reduction. It is reasonable to believe that with VCT we maybe able to acquire cardiac helical CT images with only 30-40% of the dose of older generation 16-slice CT scanners with similar noise level and same slice thickness.
机译:我们介绍并评估了LightSpeed VCT用于减少心脏螺旋CT应用中的X射线剂量和图像噪声的技术。这些技术包括使用大大改进的VCT数据采集系统(VDAS)并减少电子噪声。重新分配X射线的心脏领结,可为心脏提供更多信号,并减少向周边的通量;自适应后处理滤波器,以减少心脏图像噪声;和ECG调制管电流以集中X射线剂量以达到所需的心脏相位。幻影扫描和患者扫描用于评估这些技术的节省剂量和降低噪音的潜力。结果表明,改进的VDAS将心脏成像的图像噪声降低了15-20%。在相同的扫描技术下,使用心脏领结可减少CTDIw测量的10%剂量,并且临床评估显示,与常规身体领结相比,心脏领结可进一步减少7%的图像噪声和等同的图像质量。自适应滤波器可在保持图像分辨率和动脉清晰度的同时降低15-20%的噪声。最后,基于CTDIw测量,使用ECG调制mA方法可减少多达50%的剂量,但是节省的潜力取决于心率和心动相的选择。对于60bpm的心率和±15%的心脏相位裕度,平均剂量减少量可能为30%。由于这些减少剂量和降低噪音的方法是包容性的,可以结合起来以产生更大的减少剂量/噪音的效果。有理由相信,使用VCT,我们可以仅使用噪声水平和切片厚度相同的老一代16层CT扫描仪剂量的30-40%来获取心脏螺旋CT图像。

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