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使用超声剪切波弹性成像技术表征周围神经力学:关于健康个体规范参考值的系统评价。

Using ultrasound shear wave elastography to characterize peripheral nerve mechanics: a systematic review on the normative reference values in healthy individuals.

作者信息

Neto Tiago, Johannsson Johanna, Andrade Ricardo J

机构信息

Luxembourg Institute of Research in Orthopedics, Sports Medicine and Science, Luxembourg, Luxembourg.

Department of Physiotherapy, LUNEX International University of Health, Exercise and Sports, Differdange, Luxembourg.

出版信息

Ultrasonography. 2024 May;43(3):169-178. doi: 10.14366/usg.23211. Epub 2024 Feb 14.

Abstract

Ultrasound shear wave elastography (SWE) is an emerging non-invasive imaging technique for peripheral nerve evaluation. Shear wave velocity (SWV), a surrogate measure of stiffness, holds promise as a biomarker for various peripheral nerve disorders. However, to maximize its clinical and biomechanical value, it is important to fully understand the factors that influence nerve SWV measurements. This systematic review aimed to identify the normal range of SWV for healthy sciatic and tibial nerves and to reveal the factors potentially affecting nerve SWV. An electronic search yielded 17 studies eligible for inclusion, involving 548 healthy individuals (age range, 17 to 72 years). Despite very good reliability metrics, the reported SWV values differed considerably across studies for the sciatic (1.9-9.9 m/s) and tibial (2.3-9.1 m/s) nerves. Factors such as measurement proximity to joint regions, limb postures inducing nerve axial stretching, and transducer alignment with nerve fiber orientation were associated with increased SWV. These findings suggest regional-specific nerve mechanical properties, non-linear elastic behaviour, and marked mechanical anisotropy. The impact of age and sex remains unclear and warrants further investigation. These results emphasize the importance of considering these factors when assessing and interpreting nerve SWE. While increased SWV has been linked to pathological changes affecting nerve tissue mechanics, the significant variability observed in healthy nerves highlights the need for standardized SWE assessment protocols. Developing guidelines for enhanced clinical utility and achieving a comprehensive understanding of the factors that influence nerve SWE assessments are critical in advancing the field.

摘要

超声剪切波弹性成像(SWE)是一种新兴的用于周围神经评估的非侵入性成像技术。剪切波速度(SWV)作为一种硬度替代指标,有望成为各种周围神经疾病的生物标志物。然而,为了使其临床和生物力学价值最大化,充分了解影响神经SWV测量的因素非常重要。本系统评价旨在确定健康坐骨神经和胫神经的SWV正常范围,并揭示可能影响神经SWV的因素。电子检索得到17项符合纳入标准的研究,涉及548名健康个体(年龄范围为17至72岁)。尽管可靠性指标非常好,但不同研究报告的坐骨神经(1.9 - 9.9米/秒)和胫神经(2.3 - 9.1米/秒)的SWV值差异很大。诸如测量点与关节区域的距离、导致神经轴向拉伸的肢体姿势以及换能器与神经纤维方向的对齐等因素与SWV升高有关。这些发现表明存在区域特异性的神经力学特性、非线性弹性行为和明显的力学各向异性。年龄和性别的影响仍不明确,有待进一步研究。这些结果强调了在评估和解释神经SWE时考虑这些因素的重要性。虽然SWV升高与影响神经组织力学的病理变化有关,但健康神经中观察到的显著变异性凸显了标准化SWE评估方案的必要性。制定提高临床实用性的指南并全面了解影响神经SWE评估的因素对于推动该领域发展至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/179b/11079506/35ceb63f7552/usg-23211f1.jpg

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