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X 射线暗场胸部摄影中管电压的优化。

Optimization of tube voltage in X-ray dark-field chest radiography.

机构信息

Department of Diagnostic and Interventional Radiology, Technical University of Munich, 81675, Munich, Germany.

Chair of Biomedical Physics, Department of Physics and Munich School of BioEngineering, Technical University of Munich, 85748, Garching, Germany.

出版信息

Sci Rep. 2019 Jun 18;9(1):8699. doi: 10.1038/s41598-019-45256-2.

Abstract

Grating-based X-ray dark-field imaging is a novel imaging modality which has been refined during the last decade. It exploits the wave-like behaviour of X-radiation and can nowadays be implemented with existing X-ray tubes used in clinical applications. The method is based on the detection of small-angle X-ray scattering, which occurs e.g. at air-tissue-interfaces in the lung or bone-fat interfaces in spongy bone. In contrast to attenuation-based chest X-ray imaging, the optimal tube voltage for dark-field imaging of the thorax has not yet been examined. In this work, dark-field scans with tube voltages ranging from 60 to 120 kVp were performed on a deceased human body. We analyzed the resulting images with respect to subjective and objective image quality, and found that the optimum tube voltage for dark-field thorax imaging at the used setup is at rather low energies of around 60 to 70 kVp. Furthermore, we found that at these tube voltages, the transmission radiographs still exhibit sufficient image quality to correlate dark-field information. Therefore, this study may serve as an important guideline for the development of clinical dark-field chest X-ray imaging devices for future routine use.

摘要

基于光栅的 X 射线暗场成像是一种新颖的成像方式,在过去十年中得到了不断完善。它利用了 X 射线的波动行为,如今可以在临床应用中使用现有的 X 射线管来实现。该方法基于对小角度 X 射线散射的检测,这种散射例如会在肺部的空气-组织界面或海绵骨中的骨-脂肪界面发生。与基于衰减的胸部 X 射线成像相比,尚未对用于胸部暗场成像的最佳管电压进行检查。在这项工作中,在一具尸体上进行了管电压范围为 60 至 120 kVp 的暗场扫描。我们根据主观和客观图像质量分析了得到的图像,发现在所使用的设置中,用于胸部暗场成像的最佳管电压处于相当低的能量范围内,约为 60 至 70 kVp。此外,我们发现,在这些管电压下,透射射线照片仍然具有足够的图像质量来关联暗场信息。因此,这项研究可以为未来常规使用的临床暗场胸部 X 射线成像设备的开发提供重要指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ef3/6582156/f0e9f33768b7/41598_2019_45256_Fig1_HTML.jpg

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