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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Evaluation of Hand Tendon Elastic Properties During Rehabilitation Through High-Frequency Ultrasound Shear Elastography
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Evaluation of Hand Tendon Elastic Properties During Rehabilitation Through High-Frequency Ultrasound Shear Elastography

机译:通过高频超声剪切弹性造影康复过程中手肌腱弹性性能的评价

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摘要

Tendon injuries lead to tendon stiffness, which impairs skeletal muscle movement. Most studies have focused on patellar or Achilles tendons by using ultrasound elastography. Only a few studies have measured the stiffness of hand tendons because their thickness is only 1-2 mm, rendering clinical ultrasound elastography unsuitable for mapping hand tendon stiffness. In this study, a high-frequency ultrasound shear elastography (HFUSE) system was proposed to map the shear wave velocity (SWV) of hand flexor tendons. A handheld vibration system that was coaxially mounted with an external vibrator on a high-frequency ultrasound (HFUS) array transducer allowed the operators to scan hand tendons freely. To quantify the performance of HFUSE, six parameters were comprehensively measured from homogeneous, two-sided, and three-sided gelatin phantom experiments: bias, precision, lateral resolution, contrast, contrast-to-noise ratio (CNR), and accuracy. HFUSE demonstrated an excellent resolution of 147 mu m to distinguish the local stiffness of thin phantom (thickness: 1.2 mm) without compromising bias, precision, contrast, CNR, and accuracy, which has been noted with previous systems. Human experiments involved four patients with hand tendon injuries who underwent >= 2 months of rehabilitation. Using HFUSE, two-dimensional SWV images of flexor tendons could be clearly mapped for healthy and injured tendons, respectively. The findings demonstrate that HFUSE can be a promising tool for evaluating the elastic properties of the injured hand tendon after surgery and during rehabilitation and thus help monitor progress.
机译:肌腱损伤导致肌腱僵硬,这损害了骨骼肌运动。大多数研究通过使用超声弹性成像集中在髌骨或阿基里斯肌腱上。只有少数研究测量了手筋的刚度,因为它们的厚度仅为1-2毫米,呈现临床超声弹性摄影,不适合绘制手肌腱僵硬。在该研究中,提出了一种高频超声剪切弹性造影(HFUSE)系统来映射手屈肌肌腱的剪切波速度(SWV)。在高频超声波(HFUS)阵列换能器上同轴地安装有外部振动器的手持式振动系统允许操作员自由扫描手肌腱。为了量化HFuse的性能,六种参数均从均匀,双面和三边明胶幻像实验中综合地测量:偏差,精度,横向分辨率,对比度,对比度 - 噪声比(CNR)和精度。 HFuse证明了优异的分辨率为147μm,以区分薄虚体(厚度:1.2mm)的局部刚度,而不会影响先前系统已经注意到的偏置,精度,对比度,CNR和准确性。人类实验涉及四名手肌腱伤的患者接受> = 2个月的康复。使用HFuse,分别可以清楚地映射到健康和受伤的肌腱的二维SWV图像。结果表明,HFuse可以是评估手术后和康复后受伤的手肌腱的弹性特性的有希望的工具,从而有助于监测进展。

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