Department of Central Radiology, Gifu Prefectural Gero Hospital, 2211 Mori, Gero, Gifu, 509-2292, Japan.
Phys Eng Sci Med. 2023 Dec;46(4):1659-1666. doi: 10.1007/s13246-023-01326-4. Epub 2023 Sep 18.
The purpose of this study was to assess the optimal reconstruction parameters and the influence of tube current in extensor tendons three-dimensional computed tomography (3D CT) using deep learning reconstruction, using iterative reconstruction as a reference. In the phantom study, a cylindrical phantom with a 3 mm rod simulated an extensor tendon was used. The phantom images were acquired at tube current of 50, 100, 150, 200, and 250 mA. In the clinical study, CT scans of hand tendons were performed on nine hands from eight patients. All images were reconstructed using advanced intelligent clear-IQ engine (AiCE) parameters (body, body sharp, brain CTA, and brain LCD) and adaptive iterative dose reduction three dimensional (AIDR 3D). The objective image quality for tendon detectability was evaluated by calculating the low-contrast object specific contrast-to-noise ratio (CNR) in the phantom study and CNR and coefficient of variation (CV) in the clinical study. In the phantom study, CNR (at 200 mA) of AiCE parameters (body, body sharp, brain CTA, and brain LCD) and AIDR 3D were 5.2, 5.3, 5.3, 5.8, and 5.0, respectively. In the clinical study, AiCE brain CTA was higher CNR and lower CV values compared to other reconstruction parameters. AiCE without dose reduction may be an effective strategy for further improving the image quality of extensor tendons 3D CT. Our study suggests that the AiCE brain CTA is more suitable for extensor tendons 3D CT compared to other AiCE parameters.
本研究旨在评估深度学习重建中使用管电流的伸肌腱三维 CT(3D CT)的最佳重建参数和影响,以迭代重建作为参考。在体模研究中,使用带有 3mm 棒的圆柱形体模模拟伸肌腱。体模图像在管电流为 50、100、150、200 和 250mA 时采集。在临床研究中,对 8 名患者的 9 只手进行手部肌腱 CT 扫描。所有图像均使用高级智能清晰 IQ 引擎(AiCE)参数(身体、身体锐利、大脑 CTA 和大脑 LCD)和自适应迭代剂量降低三维(AIDR 3D)进行重建。通过计算体模研究中的低对比度物体特定对比度噪声比(CNR)以及临床研究中的 CNR 和变异系数(CV),评估肌腱可检测性的客观图像质量。在体模研究中,AiCE 参数(身体、身体锐利、大脑 CTA 和大脑 LCD)和 AIDR 3D 的 CNR(在 200mA 时)分别为 5.2、5.3、5.3、5.8 和 5.0。在临床研究中,与其他重建参数相比,AiCE 大脑 CTA 具有更高的 CNR 和更低的 CV 值。AiCE 无需降低剂量可能是进一步提高伸肌腱 3D CT 图像质量的有效策略。我们的研究表明,与其他 AiCE 参数相比,AiCE 大脑 CTA 更适合伸肌腱 3D CT。