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Technical Note: Sheet‐based dynamic beam attenuator – A novel concept for dynamic fluence field modulation in x‐ray CT

机译:技术说明:基于薄板的动态束衰减器 - 一种新颖的X射线CT动态注释场调制的概念

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Purpose It has been a long‐standing wish in computed tomography (CT) to compensate the emitted x‐ray beam intensity for the patient's changing attenuation during the rotation of a CT data acquisition. The patient attenuation changes both spatially, along the fan beam angle, and temporally, between different projections. By modifying the pre‐patient x‐ray intensity profile according to the attenuation properties of the given object, image noise can be homogenized and dose can be delivered where it is really needed. Current state‐of‐the‐art bowtie filters are not capable of changing attenuation profiles during the CT data acquisition. In our work, we present the sheet‐based dynamic beam attenuator (sbDBA), a novel technical concept enabling dynamic shaping of the transmission profile. Methods The sbDBA consists of an array of closely spaced, highly attenuating metal sheets, focused toward the focal spot. Intensity modulation can be achieved by controlled defocusing of the array such that the attenuation of the x‐ray fan beam depends on the fan angle. The sbDBA concept was evaluated in Monte‐Carlo (MC) simulations regarding its spectral and scattering properties. A prototype of the sbDBA was installed in a clinical CT scanner and measurements evaluating the feasibility and the performance of the sbDBA concept were carried out. Results Experimental measurements on a CT scanner demonstrate the ability of the sbDBA to produce an attenuation profile that can be changed in width and location. Furthermore, the sbDBA shows constant transmission properties at various tube voltages. A small effect of the flying focal spot (FFS) position on the transmission profile can be observed. MC simulations confirm the essential properties of the sbDBA: In contrast to conventional bowtie filters, the sbDBA has almost no impact on the energy spectrum of the beam and there is negligible scatter emission toward the patient. Conclusions A new concept for dynamic beam attenuation has been presented and its ability to dynamically shape the transmission profile has successfully been demonstrated. Advantages compared to regular bowtie filters including the lack of filter‐induced beam hardening and scatter have been confirmed. The novel concept of a DBA paves the way toward region of interest (ROI) imaging and further reductions in patient dose.
机译:目的,它已经在计算机断层摄影(CT)的长期愿望一个CT数据采集的旋转过程中,以补偿患者的改变的衰减所发射的X射线束的强度。患者衰减改变在空间上,沿着风扇光束角,并且在时间上,不同突起之间。通过根据给定的对象的衰减特性修改所述预患者的X射线强度分布,图像噪声可以被匀浆,剂量可以被递送,其中它是真正需要。状态的最先进的电流领结过滤器是不能够将CT数据采集期间改变衰减型材。在我们的工作中,我们提出基于片材动态射束衰减器(sbDBA),一种新型技术概念使传输特性文件的动态整形。方法的sbDBA由紧密间隔的,高衰减金属片的阵列,集中朝向焦斑。强度调制可以由阵列使得x射线扇形束的衰减依赖于扇形角的控制散焦来实现。所述sbDBA概念在关于它的光谱和散射特性蒙特卡洛(MC)模拟进行评价。该sbDBA的原型安装在临床CT扫描仪和测量评估的可行性和sbDBA概念的性能进行了。结果上的CT扫描仪的实验测量证明sbDBA的以产生可以在宽度和位置被改变的衰减分布的能力。此外,sbDBA显示在不同的管电压恒定的传输特性。可以观察到所述发射简档的飞行焦斑(FFS)位置的影响较小。 MC模拟确认sbDBA的基本属性:与传统的蝶形滤波器,所述sbDBA对束的能量光谱几乎没有影响,有朝向患者可忽略的散射辐射。结论对于动态光束衰减的新概念,已经呈现及其动态地塑造所述发射简档能力已成功证实。相比于常规的领结滤波器包括缺乏过滤器引起的束硬化和散射的优势已经得到了证实。一个DBA的新颖概念铺平朝向感兴趣(ROI)成像和在患者剂量进一步减少区域的方式。

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