Horn F, Gelse K, Jabari S, Hauke C, Kaeppler S, Ludwig V, Meyer P, Michel T, Mohr J, Pelzer G, Rieger J, Riess C, Seifert M, Anton G
Erlangen Centre for Astroparticle Physics, Friedrich-Alexander-University Erlangen-Nuremberg, Erwin-Rommel-Strasse 1, 91058 Erlangen, Germany.
Phys Med Biol. 2017 Aug 1;62(16):6729-6745. doi: 10.1088/1361-6560/aa7721.
We report on a radiographic measurement of an ex vivo human knee using a grating-based phase-contrast imaging setup and a medical x-ray tube at a tube voltage of 70 kV. The measurement has been carried out using a Talbot-Lau setup that is suitable to achieve a high visibility in the energy regime of medical imaging. In a medical reading by an experienced trauma surgeon signatures of chondrocalcinosis in the medial meniscus have been identified more evidently using the dark-field image in comparison to the conventional attenuation image. The analysis has been carried out at various dose levels down to 0.14 mGy measured as air kerma, which is a dose comparable to clinically used radiographic devices. The diagnosis has been confirmed by a histological analysis of the meniscus tissue. In the introduced high-frequency filtered phase-contrast image the anterior and posterior horn of the medial meniscus and the posterior cruciate ligament have also been visible. Furthermore, atherosclerotic plaque is visible in both imaging modalities, attenuation and dark-field, despite the presence of overlaying bone. This measurement, for the first time, proves the feasibility of Talbot-Lau x-ray imaging at high-energy spectra above 40 kVp and reasonable dose levels with regard to spacious and dense objects.
我们报告了一项使用基于光栅的相衬成像装置和医疗X射线管在70 kV管电压下对离体人膝关节进行的射线照相测量。该测量使用了Talbot-Lau装置,该装置适合在医学成像的能量范围内实现高可见度。在一位经验丰富的创伤外科医生的医学解读中,与传统衰减图像相比,使用暗场图像更明显地识别出了内侧半月板中软骨钙质沉着的特征。分析是在低至0.14 mGy(以空气比释动能测量)的各种剂量水平下进行的,该剂量与临床使用的射线照相设备相当。半月板组织的组织学分析证实了诊断。在引入的高频滤波相衬图像中,内侧半月板的前后角和后交叉韧带也清晰可见。此外,尽管存在覆盖的骨骼,但在衰减和暗场这两种成像方式中都能看到动脉粥样硬化斑块。这项测量首次证明了Talbot-Lau X射线成像在高于40 kVp的高能谱和合理剂量水平下对空间和密度较大物体的可行性。