研究肩关节前侧不稳双极骨丢失的成像模式的准确性和可靠性:系统综述。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Marco Adriani, Maristella Francesca Saccomanno, Andrea Bergomi, Francesco De Filippo, Valerio Daffara, Giuseppe Milano
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引用次数: 0

摘要

目的:肩关节复发性不稳定是一种常见的肌肉骨骼疾病,通常涉及盂骨缺损和 Hill-Sachs 病变。然而,准确可靠地量化双极骨质流失的最佳成像方式仍不确定。本系统性综述旨在评估各种成像模式在评估肩关节前方不稳定双极骨缺损方面的准确性和可靠性:方法:在主要电子数据库中搜索了报告通过成像测量盂轨道宽度和/或确定轨道上/下HSL的英文研究。纳入的研究报告包括曲线下面积、灵敏度、特异性、阳性预测值、NPV、观察者内可靠性和观察者间可靠性等统计学指标。数据提取和偏倚风险评估由两名审稿人独立完成:系统性综述共纳入 19 项研究,涉及 1567 个肩部。总体而言,研究可分为确定盂轨道宽度、轨道上或轨道外Hill-Sachs病变以及近轨道病变的准确性或可靠性的研究。三维计算机断层扫描图像(3D-CT)是测量盂轨道宽度最可靠、最准确的成像方式。结论:三维计算机断层扫描在测量盂轨道宽度方面表现出极佳的可靠性。结论:3D-CT 在测量盂轨道宽度方面表现出了极佳的可靠性,但 2D-MRI 在确定 Hill-Sachs 病变的开/关轨道方面的可靠性仍存在争议:证据等级:三级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accuracy and reliability of imaging modalities for studying bipolar bone loss in anterior shoulder instability: A systematic review.

Purpose: Recurrent shoulder instability, a common musculoskeletal disorder, often involves glenoid bone loss and Hill-Sachs lesions. However, the optimal imaging modality for accurately and reliably quantifying bipolar bone loss remains uncertain. This systematic review aims to evaluate the accuracy and reliability of various imaging modalities in assessing bipolar bone loss in anterior shoulder instability.

Methods: Major electronic databases were searched for English-language studies reporting the measurement of glenoid track width and/or determination of on/off track HSL through imaging. Studies reporting statistical measures such as area under the curve, sensitivity, specificity, positive predictive value, NPV, intraobserver reliability and interobserver reliability were included. Data extraction and risk of bias assessment were performed independently by two reviewers.

Results: The systematic review included 19 studies comprising 1567 shoulders. Overall, studies could be divided into those looking at the accuracy or reliability of determining glenoid track width, on- or off-track Hill-Sachs lesions and near-track lesions. Three-dimensional images of computed tomography (3D-CT) was the most reliable and accurate imaging modality to measure the glenoid track width. On the opposite, two-dimensional magnetic resonance imaging (2D-MRI) did not provide enough evidence of accuracy and reliability in the determination of On/Off track lesions and near-track lesions.

Conclusion: 3D-CT demonstrated excellent reliability for measuring glenoid track width. However, the reliability of 2D-MRI for determining on/off track Hill-Sachs lesions is still controversial.

Level of evidence: Level III.

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CiteScore
7.20
自引率
4.30%
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