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Characterization of Continuous and Pulsed Emission modes of a Hybrid Micro Focus X-ray Source for Medical Imaging Applications

机译:用于医学成像应用的混合微焦点X射线源的连续和脉冲发射模式的表征

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摘要

The aim of this study was to quantitatively characterize a micro focus x-ray tube that can operate in both continuous and pulsed emission modes. The micro focus x-ray source (Model L9181-06, Hamamatsu Photonics, Japan) has a varying focal spot size ranging from 16–50 μm as the source output power changes from 10–39 W. We measured the source output, beam quality, focal spot sizes, kV accuracy, spectra shapes and spatial resolution. Source output was measured using an ionization chamber for various tube voltages (kVs) with varying current (μA) and distances. The beam quality was measured in terms of half value layer (HVL), kV accuracy was measured with a non-invasive kV meter, and the spectra was measured using a compact integrated spectrometer system. The focal spot sizes were measured using a slit method with a CCD detector with a pixel pitch of 22 μm. The spatial resolution was quantitatively measured using the slit method with a CMOS flat panel detector with a 50 μm pixel pitch, and compared to the qualitative results obtained by imaging a contrast bar pattern. The focal spot sizes in the vertical direction were smaller than that of the horizontal direction, the impact of which was visible when comparing the spatial resolution values. Our analyses revealed that both emission modes yield comparable imaging performances in terms of beam quality, spectra shape and spatial resolution effects. There were no significantly large differences, thus providing the motivation for future studies to design and develop stable and robust cone beam imaging systems for various diagnostic applications.
机译:这项研究的目的是定量表征可以在连续和脉冲发射模式下运行的微焦点X射线管。当源输出功率从10-39 W变化时,微焦点X射线源(型号为L9181-06,日本Hamamatsu Photonics,日本)的焦斑大小在16–50μm之间变化。我们测量了源输出,光束质量,焦点尺寸,kV精度,光谱形状和空间分辨率。使用电离室测量具有不同电流(μA)和距离的各种管电压(kVs)的源输出。光束质量以半值层(HVL)进行测量,kV精度通过无创kV仪表进行测量,光谱使用紧凑型集成光谱仪系统进行测量。使用带有CCD检测器的狭缝方法以22μm的像素间距测量焦点尺寸。使用狭缝法和像素间距为50μm的CMOS平板检测器对空间分辨率进行定量测量,并将其与通过对对比条图案成像获得的定性结果进行比较。垂直方向上的焦点尺寸小于水平方向上的焦点尺寸,当比较空间分辨率值时,其影响可见。我们的分析表明,两种发射模式在光束质量,光谱形状和空间分辨率效果方面均具有可比的成像性能。没有明显的大差异,因此为将来的研究提供了动机,以设计和开发适用于各种诊断应用的稳定而强大的锥形束成像系统。

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