A novel portable and radiation-free method for assessing scoliosis: an accurate and reproducible study.

IF 2.4 3区 医学 Q2 ORTHOPEDICS BMC Musculoskeletal Disorders Pub Date : 2025-02-26 DOI:10.1186/s12891-025-08415-3
Hui Wang, Yunfeng Zhu, Qiyuan Bao, Yong Lu, Fuhua Yan, Lianjun Du, Le Qin
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Abstract

Background: This study aimed to evaluate the accuracy and reproducibility of a newly developed portable and radiation-free three-dimensional spine sensing system (3D-SSS) for scoliosis assessment.

Methods: A total of 145 patients underwent full-spine imaging using the EOS imaging system, and 3D-SSS data were collected between February 2023 and April 2023. A radiologist used sterEOS software to reconstruct the spine in 3D and obtain the Cobb angle. One radiologist and one orthopedist independently measured the patients using 3D-SSS, with the orthopedist performing two measurements per patient. The 3D-SSS post-processing system automatically generated the Cobb angle.

Results: The mean Cobb angles obtained from EOS and 3D-SSS were 13.7 ± 9.9° (0.5∽45.7°) and 12.5 ± 8.6° (0.4∽40°), respectively. The intraclass correlation coefficient (ICC) for reliability between EOS and 3D-SSS was 0.921, indicating excellent agreement. Bland-Altman analysis revealed a bias of -1.171° between EOS and 3D-SSS, with only 10 patients outside the limits of agreement (-8.3∽6.0°). The root mean square error between EOS and 3D-SSS was 3.2°. A strong correlation was observed between the Cobb angles measured by EOS and 3D-SSS (r = 0.931, P < 0.001). The receiver operating characteristics curve showed that the diagnostic performance of 3D-SSS for scoliosis was 0.953 (P < 0.001). The sensitivity, specificity, positive predictive value, and negative predictive value of 3D-SSS for diagnosing scoliosis were 87.8%, 92.1%, 93.5%, and 85.3%, respectively. The intraobserver and interobserver ICCs for Cobb angles derived from 3D-SSS were 0.969 and 0.934, respectively, demonstrating excellent reproducibility.

Conclusions: The portable and radiation-free 3D-SSS accurately measured scoliosis and provided highly reproducible data. This system offers a novel method for clinicians to screen and monitor scoliosis in young patients.

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一种新的便携式和无辐射的方法来评估脊柱侧凸:一个准确和可重复的研究。
背景:本研究旨在评估新开发的便携式无辐射三维脊柱传感系统(3D-SSS)用于脊柱侧凸评估的准确性和可重复性。方法:共145例患者于2023年2月至2023年4月期间使用EOS成像系统进行全脊柱成像,并收集3D-SSS数据。放射科医生使用立体软件在3D中重建脊柱并获得Cobb角。一名放射科医生和一名骨科医生使用3D-SSS独立测量患者,骨科医生对每位患者进行两次测量。3D-SSS后处理系统自动生成Cobb角。结果:EOS和3D-SSS测得的平均Cobb角分别为13.7±9.9°(0.5∽45.7°)和12.5±8.6°(0.4∽40°)。EOS与3D-SSS的可靠性类内相关系数(ICC)为0.921,一致性极佳。Bland-Altman分析显示,EOS和3D-SSS之间的偏差为-1.171°,只有10例患者超出了共识范围(-8.3∽6.0°)。EOS与3D-SSS的均方根误差为3.2°。EOS测量的Cobb角与3D-SSS测量的Cobb角有较强的相关性(r = 0.931, P)。结论:便携式无辐射3D-SSS测量脊柱侧凸准确,数据可重复性高。该系统为临床医生筛查和监测年轻患者脊柱侧凸提供了一种新的方法。
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来源期刊
BMC Musculoskeletal Disorders
BMC Musculoskeletal Disorders 医学-风湿病学
CiteScore
3.80
自引率
8.70%
发文量
1017
审稿时长
3-6 weeks
期刊介绍: BMC Musculoskeletal Disorders is an open access, peer-reviewed journal that considers articles on all aspects of the prevention, diagnosis and management of musculoskeletal disorders, as well as related molecular genetics, pathophysiology, and epidemiology. The scope of the Journal covers research into rheumatic diseases where the primary focus relates specifically to a component(s) of the musculoskeletal system.
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