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髋关节不稳定及髋关节前后撞击的动态超声评估

Dynamic ultrasound assessment of hip instability and anterior and posterior hip impingement.

作者信息

Sahr Meghan E, Endo Yoshimi, Sink Ernest L, Miller Theodore T

机构信息

Department of Radiology and Imaging, Hospital for Special Surgery, 535 E 70Th St, New York, NY, 10021, USA.

Department of Orthopedic Surgery, Hospital for Special Surgery, 535 E 70Th St, New York, NY, 10021, USA.

出版信息

Skeletal Radiol. 2023 Jul;52(7):1385-1393. doi: 10.1007/s00256-022-04264-6. Epub 2023 Jan 4.

Abstract

OBJECTIVE

In this technical report, we describe our protocol for the dynamic sonographic evaluation of the hip and assess reliability of the ultrasound assessment of hip microinstability.

MATERIALS AND METHODS

Our clinical experience with a standardized dynamic ultrasound of the hip performed in a series of 27 patients with imaging performed by an experienced musculoskeletal radiologist during physical examination by an orthopedic surgeon specializing in hip preservation is illustrated with clinical photographs and ultrasound images from volunteers and selected patients. Interrater reliability for the diagnosis of microinstability was calculated.

RESULTS

Dynamic ultrasound technique and findings of hip instability, femoroacetabular impingement, and ischiofemoral impingement with corresponding clinical photos showing the necessary physical examination maneuvers are described. Interrater agreement for the diagnosis of microinstability was substantial (κ 0.606 [0.221-0.991]).

CONCLUSION

At our institution, dynamic ultrasound of the hip during physical examination complements information gathered from static imaging by providing real-time correlation of symptoms with what is occurring anatomically.

摘要

目的

在本技术报告中,我们描述了髋部动态超声评估方案,并评估超声评估髋部微不稳定的可靠性。

材料与方法

我们展示了对27例患者进行标准化髋部动态超声检查的临床经验,检查由一位经验丰富的肌肉骨骼放射科医生在一名擅长髋部保留的骨科医生进行体格检查时进行成像,文中配有志愿者和选定患者的临床照片及超声图像。计算了微不稳定诊断的评分者间信度。

结果

描述了髋部不稳定、股骨髋臼撞击症和坐骨股骨撞击症的动态超声技术及表现,并配有相应临床照片展示必要的体格检查动作。微不稳定诊断的评分者间一致性较高(κ值为0.606[0.221 - 0.991])。

结论

在我们机构,体格检查时进行髋部动态超声可通过将症状与解剖学上发生的情况进行实时关联,补充从静态成像获得的信息。

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