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超声对Hoffa脂肪垫特征的生物力学评估:聚焦于诊断成像和图像引导干预的叙述性综述

Biomechanical assessment of Hoffa fat pad characteristics with ultrasound: a narrative review focusing on diagnostic imaging and image-guided interventions.

作者信息

Qin Ni, Zhang Bolong, Zhang Xiaoying, Tian Li

机构信息

Henan University of Chinese Medicine, Zhengzhou, China.

Department of Ultrasound, The Third Affiliated Hospital of Henan University of Chinese Medicine, Zhengzhou, China.

出版信息

J Ultrasound. 2025 Sep 13. doi: 10.1007/s40477-025-01081-0.

Abstract

The infrapatellar fat pad (IFP), a key intra-articular knee structure, plays a crucial role in biomechanical cushioning and metabolic regulation, with fibrosis and inflammation contributing to osteoarthritis-related pain and dysfunction. This review outlines the anatomy and clinical value of IFP ultrasonography in static and dynamic assessment, as well as guided interventions. Shear wave elastography (SWE), Doppler imaging, and dynamic ultrasound effectively quantify tissue stiffness, vascular signals, and flexion-extension morphology. Due to the limited penetration capability of ultrasound imaging, it is difficult to directly observe IPF through the patella. However, its real-time capability and sensitivity effectively complement the detailed anatomical information provided by MRI, making it an important supplementary method for MRI-based IPF detection. This integrated approach creates a robust diagnostic pathway, from initial assessment and precise treatment guidance to long-term monitoring. Advances in ultrasound-guided precision medicine, protocol standardization, and the integration of Artificial Intelligence (AI) with multimodal imaging hold significant promise for improving the management of IFP pathologies.

摘要

髌下脂肪垫(IFP)是膝关节内的关键结构,在生物力学缓冲和代谢调节中起关键作用,纤维化和炎症会导致骨关节炎相关的疼痛和功能障碍。本综述概述了IFP超声检查在静态和动态评估以及引导干预中的解剖结构和临床价值。剪切波弹性成像(SWE)、多普勒成像和动态超声能够有效地量化组织硬度、血管信号以及屈伸形态。由于超声成像的穿透能力有限,很难透过髌骨直接观察到髌下脂肪垫。然而,其实时性和敏感性有效地补充了MRI提供的详细解剖信息,使其成为基于MRI的髌下脂肪垫检测的重要辅助方法。这种综合方法创建了一条强大的诊断途径,从初始评估、精确的治疗指导到长期监测。超声引导下精准医学、协议标准化以及人工智能(AI)与多模态成像的整合方面的进展,对于改善髌下脂肪垫病变的管理具有重大前景。

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