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Design of a digital beam attenuation system for computed tomography: Part I. System design and simulation framework

机译:用于计算机断层扫描的数字束衰减系统的设计:第一部分。系统设计和仿真框架

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摘要

>Purpose: The purpose of this work is to introduce a new device that allows for patient-specific imaging-dose modulation in conventional and cone-beam CT. The device is called a digital beam attenuator (DBA). The DBA modulates an x-ray beam by varying the attenuation of a set of attenuating wedge filters across the fan angle. The ability to modulate the imaging dose across the fan beam represents another stride in the direction of personalized medicine. With the DBA, imaging dose can be tailored for a given patient anatomy, or even tailored to provide signal-to-noise ratio enhancement within a region of interest. This modulation enables decreases in: dose, scatter, detector dynamic range requirements, and noise nonuniformities. In addition to introducing the DBA, the simulation framework used to study the DBA under different configurations is presented. Finally, a detailed study on the choice of the material used to build the DBA is presented.>Methods: To change the attenuator thickness, the authors propose to use an overlapping wedge design. In this design, for each wedge pair, one wedge is held stationary and another wedge is moved over the stationary wedge. The composite thickness of the two wedges changes as a function of the amount of overlap between the wedges. To validate the DBA concept and study design changes, a simulation environment was constructed. The environment allows for changes to system geometry, different source spectra, DBA wedge design modifications, and supports both voxelized and analytic phantom models. A study of all the elements from atomic number 1 to 92 were evaluated for use as DBA filter material. The amount of dynamic range and tube loading for each element were calculated for various DBA designs. Tube loading was calculated by comparing the attenuation of the DBA at its minimum attenuation position to a filtered non-DBA acquisition.>Results: The design and parametrization of DBA implemented FFMCT has been introduced. A simulation framework was presented with which DBA-FFMCT, bowtie filter CT acquisitions, and unmodulated CT acquisitions can be simulated. The study on wedge filter design concluded that the ideal filter material should have an atomic number in the range of 21–34. Iron was chosen for an experimental relative-tube-loading measurement and showed that DBA-FFMCT scans could be acquired with negligible increases in tube power demands.>Conclusions: The basic idea of DBA implemented fluence field modulated CT, a simulation framework to verify the concept, and a filter selection study have been presented. The use of a DBA represents another step toward the ultimate in patient specific CT dose delivery as patient dose can be delivered uniquely as a function of view and fan angle using this device.
机译:>目的:这项工作的目的是介绍一种新设备,该设备可以在常规和锥形束CT中进行患者特定的成像剂量调制。该设备称为数字束衰减器(DBA)。 DBA通过在风扇角度上改变一组衰减楔形滤波器的衰减来调制X射线束。调制跨扇形光束的成像剂量的能力代表了个性化医学方向上的又一个进步。使用DBA,可以针对给定的患者解剖结构调整成像剂量,甚至可以调整成像剂量以在感兴趣区域内提供信噪比增强。这种调制可以降低剂量,散射,检测器动态范围要求和噪声不均匀性。除了介绍DBA,还提供了用于研究不同配置下的DBA的仿真框架。最后,对用于构建DBA的材料的选择进行了详细的研究。>方法:为了改变衰减器的厚度,作者建议使用重叠的楔形设计。在这种设计中,对于每个楔子对,一个楔子保持不动,另一个楔子在静止的楔子上移动。两个楔形的复合厚度根据楔形之间的重叠量而变化。为了验证DBA概念并研究设计变更,构建了一个仿真环境。该环境允许更改系统几何形状,不同的源光谱,修改DBA楔形设计,并支持体素化模型和解析模型。评价了从原子序数1到92的所有元素的研究,以用作DBA过滤材料。对于各种DBA设计,计算了每个元件的动态范围和管负载。通过比较DBA在其最小衰减位置处的衰减与经过滤波的非DBA采集来计算管负载。>结果:介绍了DBA实施的FFMCT的设计和参数化。提出了一个仿真框架,通过该框架可以仿真DBA-FFMCT,领结滤波器CT采集和未调制的CT采集。对楔形过滤器设计的研究得出的结论是,理想的过滤器材料的原子序数应在21-34之间。选择铁作为实验性的相对管负载测量,结果表明,在管功率需求的增加可忽略不计的情况下,可以进行DBA-FFMCT扫描。>结论: DBA实施注量场调制CT的基本思想是提出了一个仿真框架以验证该概念,并提出了滤波器选择研究。 DBA的使用代表了朝着最终实现特定于患者的CT剂量输送的又一步,因为使用该设备可以根据视角和扇形角度唯一地输送患者剂量。

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