Program in Physical Therapy, Washington University School of Medicine, 4444 Forest Park Avenue, Campus Box 8502, St. Louis, MO 63108, USA.
Program in Physical Therapy, Washington University School of Medicine, 4444 Forest Park Avenue, Campus Box 8502, St. Louis, MO 63108, USA.
Med Eng Phys. 2024 Aug;130:104214. doi: 10.1016/j.medengphy.2024.104214. Epub 2024 Jul 31.
Computed tomography (CT) imaging is frequently employed in a variety of musculoskeletal research applications. Although research studies often use imaging protocols developed for clinical applications, lower dose protocols are likely possible when the goal is to reconstruct 3D bone models. Our purpose was to describe the dose-accuracy trade-off between incrementally lower-dose CT scans and the geometric reconstruction accuracy of the humerus, scapula, and clavicle. Six shoulder specimens were acquired and scanned using 5 helical CT protocols: 1) 120 kVp, 450 mA (full-dose); 2) 120 kVp, 120 mA; 3) 120 kVp, 100 mA; 4) 100 kVp, 100 mA; 5) 80 kVp, 80 mA. Scans were segmented and reconstructed into 3D surface meshes. Geometric error was assessed by comparing the surfaces of the low-dose meshes to the full-dose (gold standard) mesh and was described using mean absolute error, bias, precision, and worst-case error. All low-dose protocols resulted in a >70 % reduction in the effective dose. Lower dose scans resulted in higher geometric errors; however, error magnitudes were generally <0.5 mm. These data suggest that the effective dose associated with CT imaging can be substantially reduced without a significant loss of geometric reconstruction accuracy.
计算机断层扫描(CT)成像在各种肌肉骨骼研究应用中经常使用。尽管研究通常使用为临床应用开发的成像方案,但当目标是重建 3D 骨骼模型时,可能可以使用更低剂量的方案。我们的目的是描述逐渐降低剂量的 CT 扫描与肱骨、肩胛骨和锁骨的几何重建精度之间的剂量-准确性权衡。采集了 6 个肩部标本,并使用 5 种螺旋 CT 方案进行扫描:1)120 kVp,450 mA(全剂量);2)120 kVp,120 mA;3)120 kVp,100 mA;4)100 kVp,100 mA;5)80 kVp,80 mA。扫描被分割并重建为 3D 表面网格。通过将低剂量网格的表面与全剂量(金标准)网格进行比较来评估几何误差,并使用平均绝对误差、偏差、精度和最坏情况误差来描述。所有低剂量方案都导致有效剂量降低了>70%。较低剂量的扫描会导致更高的几何误差;然而,误差幅度通常<0.5 毫米。这些数据表明,CT 成像的有效剂量可以显著降低,而不会显著损失几何重建精度。