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首页> 外文期刊>Ultrasonic Imaging: An International Journal >Evaluation of the Effect of Tissue Compression on the Results of Shear Wave Elastography Measurements
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Evaluation of the Effect of Tissue Compression on the Results of Shear Wave Elastography Measurements

机译:基于组织压缩对剪切波弹性造影测量结果的影响

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摘要

Shear wave imaging is considered to be more precise and less operator dependent when compared with strain imaging. It enables quantitative and reproducible data (Young's modulus of the imaged tissue). However, results of shear wave imaging can be affected by a variety of different factors. The aim of this study is to evaluate the effect of the pressure applied by the ultrasound probe during examination on the measured values of Young's modulus. The effect of the tissue compression on the results of the real-time shear wave elastography was evaluated via the gelatine phantom measurements, via the ex vivo experiments with pig liver, and via the in vivo measurements of the thyroid gland stiffness on healthy volunteers. The results of our measurements confirmed that the measured value of Young's modulus increases with the increasing pressure applied on the imaged object. The highest increase was observed during the ex vivo experiments (400%), and the lowest increase was detected in the case of the phantom measurements (8%). A two- to threefold increase in Young's modulus was observed between the minimum and maximum pressure in the case of the in vivo elastography measurements of thyroid gland. The Veronda-Westman theoretical model was used for the description of the tissue nonlinearity. We conclude that tissue compression by the force exerted on the probe can significantly affect the results of the real-time shear wave elastography measurements. Minimum pressure should be used when measuring the absolute value of Young's modulus of superficial organs.
机译:与应变成像相比,剪切波成像被认为是更精确的操作员依赖于依赖性。它能够实现定量和可重复的数据(杨氏模数的成像组织)。然而,剪切波成像的结果可能受到各种不同因素的影响。本研究的目的是评估超声探头在检查期间对杨氏模量的测量值进行检查期间的压力的影响。通过猪肝脏的离体映射测量,通过猪肝脏的小型实验评估组织压缩对实时剪切波弹性显影结果的影响,并通过体内测量健康志愿者的甲状腺刚度的体内测量。我们的测量结果证实,杨氏模量的测量值随着在成像对象上施加的增加而增加。在离体实验(400%)期间观察到最高的增加,并且在幻像测量的情况下检测到最低增加(8%)。在甲状腺体内弹性摄影测量的情况下,在最小和最大压力之间观察到杨氏模量的两个 - 三倍。 Veronda-Westman理论模型用于组织非线性的描述。我们得出结论,通过施加探针施加的力的组织压缩可以显着影响实时剪切波弹性摄影测量结果。在测量浅色器官的杨氏模量的绝对值时应使用最小压力。

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