无创评估人类跟腱力学、结构和生化特性的新成像方法:综述。

Frontiers in Physiology Pub Date : 2016-07-27 eCollection Date: 2016-01-01 DOI:10.3389/fphys.2016.00324
Alexandre Fouré
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引用次数: 26

摘要

肌腱的力学特性在被动地将力量从肌肉传递到骨骼,承受突然拉伸,并作为机械缓冲使肌肉更有效地工作方面发挥着重要作用。在运动医学、临床实践和基础科学中,使用无创成像方法评估人体肌腱的力学、结构和生物化学特性相对较年轻。无创评估肌腱特性可以提高肌腱损伤的诊断和恢复治疗的特征。虽然超声成像是评估肌腱结构和间接的最流行的工具,但机械性能、超声弹性成像和超高场磁共振成像(UHF MRI)最近成为探索肌腱组织的潜在强大技术。本文强调了与常规超声检查相关的一些方法学上的注意事项,以及使用超声弹性成像和超高频磁共振成像评估人体跟腱的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

New Imaging Methods for Non-invasive Assessment of Mechanical, Structural, and Biochemical Properties of Human Achilles Tendon: A Mini Review.

New Imaging Methods for Non-invasive Assessment of Mechanical, Structural, and Biochemical Properties of Human Achilles Tendon: A Mini Review.

New Imaging Methods for Non-invasive Assessment of Mechanical, Structural, and Biochemical Properties of Human Achilles Tendon: A Mini Review.

The mechanical properties of tendon play a fundamental role to passively transmit forces from muscle to bone, withstand sudden stretches, and act as a mechanical buffer allowing the muscle to work more efficiently. The use of non-invasive imaging methods for the assessment of human tendon's mechanical, structural, and biochemical properties in vivo is relatively young in sports medicine, clinical practice, and basic science. Non-invasive assessment of the tendon properties may enhance the diagnosis of tendon injury and the characterization of recovery treatments. While ultrasonographic imaging is the most popular tool to assess the tendon's structural and indirectly, mechanical properties, ultrasonographic elastography, and ultra-high field magnetic resonance imaging (UHF MRI) have recently emerged as potentially powerful techniques to explore tendon tissues. This paper highlights some methodological cautions associated with conventional ultrasonography and perspectives for in vivo human Achilles tendon assessment using ultrasonographic elastography and UHF MRI.

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