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基于超声的肌腱斑点追踪:技师和临床医生的批判性分析。

Ultrasound-based speckle-tracking in tendons: a critical analysis for the technician and the clinician.

机构信息

Institute of Sports Medicine Copenhagen, Department of Orthopaedic Surgery M, Bispebjerg Hospital, Copenhagen, Denmark.

Center for Healthy Aging, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.

出版信息

J Appl Physiol (1985). 2021 Feb 1;130(2):445-456. doi: 10.1152/japplphysiol.00654.2020. Epub 2020 Dec 17.

Abstract

Ultrasound has risen to the forefront as one of the primary tools in tendon research, with benefits including its relatively low cost, ease of use, and high safety. Moreover, it has been shown that cine ultrasound can be used to evaluate tendon deformation by tracking the motion of anatomical landmarks during physical movement. Estimates from landmark tracking, however, are typically limited to global tissue properties, such that clinically relevant regional nonuniformities may be missed. Fortunately, advancements in ultrasound scanning have led to the development of speckle-tracking algorithms, which enable the noninvasive measurement of in vivo local deformation patterns. Despite the successes in other fields, the adaptation of speckle-tracking to tendon research has presented some unique challenges as a result of tissue anisotropy and microstructural changes under load. With no generally accepted standards for its use, current methodological approaches vary substantially between studies and research groups. Therefore, the goal of this paper is to provide a summative review of the technical complexities and variations of speckle-tracking approaches being used and the impact these decisions may have on measured results and their interpretation. Variations in these approaches currently being used with relevant technical aspects are discussed first (for the technician), followed by a discussion of the more clinical considerations (for the clinician). Finally, a summary table of common challenges encountered when implementing speckle-tracking is provided, with suggested recommendations for minimizing the impact of such potential sources of error.

摘要

超声已成为肌腱研究的主要工具之一,具有成本相对较低、使用方便和安全性高的优点。此外,已经证明,电影超声可以通过在身体运动期间跟踪解剖学标志的运动来评估肌腱变形。然而,来自标志跟踪的估计通常仅限于整体组织特性,因此可能会错过临床相关的局部非均匀性。幸运的是,超声扫描技术的进步导致了斑点跟踪算法的发展,从而能够非侵入性地测量体内局部变形模式。尽管在其他领域取得了成功,但由于组织各向异性和载荷下的微观结构变化,斑点跟踪在肌腱研究中的适应性带来了一些独特的挑战。由于没有普遍接受的使用标准,当前的方法学方法在研究之间和研究组之间存在很大差异。因此,本文的目的是对目前使用的斑点跟踪方法的技术复杂性和变化进行总结性回顾,并探讨这些决策对测量结果及其解释的影响。首先讨论了目前使用的这些方法的变化及其相关技术方面(适用于技术人员),然后讨论了更具临床意义的考虑因素(适用于临床医生)。最后,提供了一个实施斑点跟踪时遇到的常见挑战的总结表,并提出了一些建议,以尽量减少这些潜在误差源的影响。

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