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A Novel Method to Obtain Modulus Image of Soft Tissues Using Water Jet Compression

机译:一种新的水射流压缩获得软组织模量图像的新方法

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Tissue stiffness is generally known to be associated with pathologic changes. Ultrasound indentation is able to assess the mechanical properties of soft tissues. Conventional ultrasound indentation devices use rigid flat-ended transducers to directly contact with the tissues and typically operate in the frequency ranging between 2 M Hz and 10 MHz. This paper introduced a novel ultrasound indentation system using water jet compression. The water jet served as an indenter as well as a medium for the propagation of the ultrasound beam. High frequency focused transducer was used to measure the indentation deformation at a microscopic level. It has been demonstrated that the system could effectively assess the tissue-mimicking phantoms with different stiffness. Moreover, another advantage of this novel indentation system was to apply C-scan on soft tissues rapidly and conveniently. By applying different pressures on C-scan sequences, the modulus image of the tissue could be obtained. This paper presented the preliminary results on gel phantoms. The spatial resolution and the sensitivity of the measurements, the reproducibility of the results were also discussed.
机译:众所周知,组织刚度与病理变化有关。超声凹口能够评估软组织的机械性能。传统的超声凹口装置使用刚性的扁平换能器直接与组织接触,并且通常在2M Hz和10MHz之间的频率范围内操作。本文介绍了采用水射流压缩的新型超声凹口系统。水射流用作压头以及用于超声波束的传播的介质。高频聚焦换能器用于测量微观水平下的压痕变形。已经证明了该系统可以有效地评估具有不同刚度的组织模拟幽灵。此外,这种新型压痕系统的另一个优点是快速且方便地在软组织上施加C扫描。通过在C扫描序列上施加不同的压力,可以获得组织的模数图像。本文介绍了凝胶幻影的初步结果。还讨论了测量的空间分辨率和敏感性,结果的再现性。

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