Suppr超能文献

通过剪切波弹性成像技术对弹簧韧带和胫后肌腱进行生物力学评估:验证一种可靠且可重复的测量方案。

Biomechanical evaluation of the spring ligament and the posterior tibial tendon by shear-waves elastography: validation of a reliable and reproducible measurement protocol.

作者信息

Rougereau Grégoire, Marty-Diloy Thibault, Vigan Marie, Donadieu Kalinka, Vialle Raphaël, Langlais Tristan, Hardy Alexandre

机构信息

Department of Pediatric Orthopedic Surgery, Sorbonne University, Armand Trousseau Hospital, APHP, 75571, Paris, France.

Department of Adult Orthopedic Surgery, Sorbonne University, Pitié-Salpêtrière Hospital, APHP, 75571, Paris, France.

出版信息

J Exp Orthop. 2023 Nov 25;10(1):121. doi: 10.1186/s40634-023-00678-w.

Abstract

PURPOSE

The anatomy of the spring ligament complex, as well as its pathology, is not well known in daily clinical practice. The purpose of this study was to evaluate the shear-wave elastography properties of the spring ligament and the posterior tibial tendon in healthy adults, and to assess the reliability and reproducibility of these measurements.

METHODS

Shear-wave elastography was used to evaluate both ankles in 20 healthy patients (10 females/10 males) resting on a hinge support with their ankles in neutral, valgus 20° and varus 30° positions. The stiffness of the spring ligament and posterior tibial tendon was assessed by measuring the speed of shear wave propagation through each structure.

RESULTS

Posterior tibial tendon and spring ligament reach a maximum estimated stiffness in valgus 20° position (7.43 m/s vs 5.73 m/s, respectively). Flat feet were associated with greater spring ligament stiffness in the 20° valgus position (p = 0.01), but not for the posterior tibial tendon (p = 0.71). The physiologic weightbearing hindfoot attitude had no impact on the stiffness of the posterior tibial tendon or the spring ligament, regardless of the analysis position. Intra- and inter-observer agreements were all excellent for spring ligament stiffness, regardless of ankle position, and were good or excellent for posterior tibial tendon.

CONCLUSIONS

This study describes a protocol to assess the stiffness of tibialis posterior and the spring ligament by shear-wave elastography, which is reliable, reproducible, and defines a corridor of normality. Further studies should be conducted to define the role of elastography for diagnosis/ evaluation of pathology, follow-up, or surgical strategies.

摘要

目的

在日常临床实践中,弹簧韧带复合体的解剖结构及其病理学尚不为人熟知。本研究的目的是评估健康成年人中弹簧韧带和胫后肌腱的剪切波弹性成像特性,并评估这些测量的可靠性和可重复性。

方法

对20名健康患者(10名女性/10名男性)的双踝进行剪切波弹性成像评估,患者仰卧在铰链支撑上,踝关节处于中立位、外翻20°和内翻30°位置。通过测量剪切波在每个结构中的传播速度来评估弹簧韧带和胫后肌腱的刚度。

结果

胫后肌腱和弹簧韧带在外翻20°位置达到最大估计刚度(分别为7.43米/秒和5.73米/秒)。扁平足与外翻20°位置时弹簧韧带刚度增加相关(p = 0.01),但与胫后肌腱无关(p = 0.71)。无论分析位置如何,生理负重时的后足姿势对胫后肌腱或弹簧韧带的刚度均无影响。无论踝关节位置如何,观察者内和观察者间对弹簧韧带刚度的一致性均极佳,对胫后肌腱的一致性为良好或极佳。

结论

本研究描述了一种通过剪切波弹性成像评估胫后肌和弹簧韧带刚度的方案,该方案可靠、可重复,并定义了正常范围。应进行进一步研究以确定弹性成像在病理学诊断/评估、随访或手术策略中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1da/10676337/3c9f71fef0a4/40634_2023_678_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验