Graef Jessica, Bressem Keno K, Asbach Patrick, Hamm Bernd, Niehues Stefan M
Department of Radiology, Campus Benjamin Franklin, Charité-Universitätsmedizin Berlin, 12203 Berlin, Germany.
Berlin Institute of Health at Charité-Universitätsmedizin Berlin, 10117 Berlin, Germany.
Diagnostics (Basel). 2022 Nov 2;12(11):2661. doi: 10.3390/diagnostics12112661.
For computed tomography (CT), representing the diagnostic standard for trauma patients, image quality is essential. The positioning of the patient’s arms next to the abdomen causes artifacts and is also considered to increase radiation exposure. The aim of this study was to evaluate the effect of various positionings during different CT examination steps on the extent of artifacts as well as radiation dose using iterative reconstruction (IR). 354 trauma-CTs were analyzed retrospectively. All datasets were reconstructed using IR and three different examination protocols were applied. Arm elevation led to a significant improvement of the image quality across all examination protocols (p < 0.001). Variation in arm positioning during image acquisition did not lead to a reduction of radiation dose (p = 0.123). Only elevation during scout acquisition resulted in the reduction of radiation exposure (p < 0.001). To receive high-quality CT images, patients should be placed with elevated arms for the trunk scan, as artifacts remain even with the IR. Arm repositioning during the examination itself had no effect on the applied radiation dose because its modulation refers to the initial scout obtained. In order to achieve a dose effect by different positioning, a two-scout protocol (dual scout) should be used.
对于作为创伤患者诊断标准的计算机断层扫描(CT)而言,图像质量至关重要。患者手臂置于腹部旁的体位会产生伪影,并且还被认为会增加辐射暴露。本研究的目的是使用迭代重建(IR)评估在不同CT检查步骤中各种体位对伪影程度以及辐射剂量的影响。对354例创伤CT进行了回顾性分析。所有数据集均使用IR进行重建,并应用了三种不同的检查方案。手臂抬高在所有检查方案中均导致图像质量显著改善(p < 0.001)。图像采集期间手臂体位的变化并未导致辐射剂量降低(p = 0.123)。仅在定位像采集期间抬高手臂可导致辐射暴露减少(p < 0.001)。为了获得高质量的CT图像,进行躯干扫描时患者应将手臂抬高,因为即使使用IR仍会存在伪影。检查过程中手臂重新定位对所施加的辐射剂量没有影响,因为其调制是基于最初获得的定位像。为了通过不同体位实现剂量效应,应使用双定位像方案(双重定位像)。