Benedikt Stefan, Horling Lukas, Stock Kerstin, Degenhart Gerald, Pallua Johannes, Schmidle Gernot, Arora Rohit
Department of Orthopaedics and Traumatology, Medical University Innsbruck, Innsbruck, Austria.
Department of Radiology, Medical University Innsbruck, Innsbruck, Austria.
Quant Imaging Med Surg. 2023 Mar 1;13(3):1336-1349. doi: 10.21037/qims-22-345. Epub 2022 Nov 29.
high-resolution peripheral quantitative computed tomography (HR-pQCT) has high potential in scaphoid bone pathologies' scientific and clinical fields. The manufacturer's visual grading scale (VGS) classifies motion artifacts and divides scans into five quality grades ranging from grade 1 (good quality) to grade 5 (poor quality). This prospective study aimed to investigate the feasibility of the VGS and the influence of image quality on bone density and microarchitecture parameters for the scaphoid bone.
Within one year, twenty-two patients with scaphoid fractures received up to six scans of their fractured and contralateral wrist (each consisting of three stacks) using second-generation HR-pQCT (total 256 scans). Three experienced observers graded each stack following the visual grading system, and inter- and intraobserver variability were assessed. The contralateral uninjured scaphoids were then compared pairwise within each patient to high-quality grade 1 scans to determine the influence of image quality on density and microarchitecture parameters.
Inter- and intraobserver variability among the three observers significantly revealed fair to moderate agreement, P<0.001 and P<0.05, respectively. Bone volume (BV) fraction tended to increase with poorer image quality but did not exceed four percent. Trabecular bone mineral density (Tb.BMD) decreased with poorer image quality but did not exceed five percent. Trabecular number and trabecular thickness significantly increased by 15.5% and 6.8% at grade five (P<0.001), respectively, and trabecular separation significantly decreased by 13.7% at grade five (P<0.001).
This study revealed a considerable influence of motion on bone morphometry parameters of the scaphoid. Therefore, high image quality must be a central point in studies focusing on the histomorphometry of small objects. The high inter- and intraobserver variability limit the VGS. Future research may focus on other grading systems or automated techniques leading to more consistent and reproducible results. Currently, the use of microarchitectural analysis should be limited to cases without motion artefacts or, at most low graded motion artefacts.
高分辨率外周定量计算机断层扫描(HR-pQCT)在舟骨病理的科学和临床领域具有很高的潜力。制造商的视觉分级量表(VGS)对运动伪影进行分类,并将扫描分为五个质量等级,从1级(高质量)到5级(低质量)。这项前瞻性研究旨在探讨VGS的可行性以及图像质量对舟骨骨密度和微观结构参数的影响。
在一年内,22例舟骨骨折患者使用第二代HR-pQCT对其骨折和对侧腕部进行了多达6次扫描(每次由三个堆叠组成)(共256次扫描)。三名经验丰富的观察者按照视觉分级系统对每个堆叠进行分级,并评估观察者间和观察者内的变异性。然后将每个患者对侧未受伤的舟骨与高质量的1级扫描进行两两比较,以确定图像质量对密度和微观结构参数的影响。
三名观察者之间的观察者间和观察者内变异性分别显著显示出中等至良好的一致性,P<0.001和P<0.05。骨体积(BV)分数倾向于随着图像质量变差而增加,但不超过4%。小梁骨矿物质密度(Tb.BMD)随着图像质量变差而降低,但不超过5%。在5级时,小梁数量和小梁厚度分别显著增加15.5%和6.8%(P < 0.001),小梁间距在5级时显著降低13.7%(P < 0.001)。
本研究揭示了运动对舟骨骨形态计量学参数有相当大的影响。因此,在专注于小物体组织形态计量学的研究中,高图像质量必须是核心要点。观察者间和观察者内的高变异性限制了VGS。未来的研究可能集中在其他分级系统或自动化技术上,以获得更一致和可重复的结果。目前,微观结构分析的应用应限于无运动伪影或至多低等级运动伪影的情况。