Germann Manon, Shim Sojin, Angst Florian, Saltybaeva Natalia, Boss Andreas
Institute of Diagnostic and Interventional Radiology, University Hospital Zurich, Rämistr. 100, 8091, Zurich, Switzerland.
Eur Radiol. 2021 Jun;31(6):3693-3702. doi: 10.1007/s00330-020-07549-3. Epub 2020 Dec 2.
To investigate the dependence of signal-to-noise ratio (SNR) and calculated average dose per volume of spiral breast-CT (B-CT) on breast size and breast density and to provide a guideline for choosing the optimal tube current for each B-CT examination.
Three representative B-CT datasets (small, medium, large breast size) were chosen to create 3D-printed breast phantoms. The phantoms were filled with four different agarose-oil-emulsions mimicking differences in breast densities. Phantoms were scanned in a B-CT system with systematic variation of the tube current (6, 12.5, 25, 32, 40, 50, 64, 80, 100, 125 mA). Evaluation of SNR and the average dose per volume using Monte Carlo simulations were performed for high (HR) and standard (STD) spatial resolution.
SNR and average dose per volume increased with increasing tube current. Artifacts had negligible influence on image evaluation. SNR values ≥ 35 (HR) and ≥ 100 (STD) offer sufficient image quality for clinical evaluation with SNR being more dependent on breast density than on breast size. For an average absorbed dose limit of 6.5 mGy for the medium and large phantoms and 7 mGy for the small phantom, optimal tube currents were either 25 or 32 mA.
B-CT offers the possibility to vary the X-ray tube current, allowing image quality optimization based on individual patient's characteristics such as breast size and density. This study describes the optimal B-CT acquisition parameters, which provide diagnostic image quality for various breast sizes and densities, while keeping the average dose at a level similar to digital mammography.
• Image quality optimization based on breast size and density varying the tube current using spiral B-CT.
研究螺旋乳腺CT(B-CT)的信噪比(SNR)和计算得出的每体积平均剂量对乳房大小和乳房密度的依赖性,并为每次B-CT检查选择最佳管电流提供指导。
选择三个具有代表性的B-CT数据集(小、中、大乳房尺寸)来制作3D打印的乳房模型。模型填充了四种不同的琼脂糖-油乳剂,以模拟乳房密度的差异。在B-CT系统中对模型进行扫描,系统改变管电流(6、12.5、25、32、40、50、64、80、100、125 mA)。使用蒙特卡洛模拟对高(HR)和标准(STD)空间分辨率进行SNR和每体积平均剂量的评估。
SNR和每体积平均剂量随管电流增加而增加。伪影对图像评估的影响可忽略不计。SNR值≥35(HR)和≥100(STD)可提供足够的图像质量用于临床评估,其中SNR对乳房密度的依赖性大于对乳房大小的依赖性。对于中大型模型平均吸收剂量限制为6.5 mGy,小型模型为7 mGy,最佳管电流为25或32 mA。
B-CT提供了改变X射线管电流的可能性,允许根据个体患者的特征(如乳房大小和密度)优化图像质量。本研究描述了最佳的B-CT采集参数,可为各种乳房大小和密度提供诊断图像质量,同时将平均剂量保持在与数字乳腺摄影相似的水平。
• 使用螺旋B-CT根据乳房大小和密度改变管电流来优化图像质量。