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In-vivo imaging of skin under stress: potential of high-frequency (20 MHz) static 2-D elastography

机译:压力下皮肤的体内成像:高频(20 MHz)静态二维弹性成像的潜力

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摘要

The aim of this study was to evaluate the potential of high-frequency static two-dimensional (2-D) elastography for in vivo exploration of the mechanical behavior of skin. Our device was based on the combination of a 20 MHz sonographer and a patented extensiometer device able to apply calibrated uniaxial stretching of the skin. We used a new algorithm to compute elastograms that improve elastographic signal-to-noise ratio (SNRe) without sacrificing resolution. Mechanical behavior was described according to the axial strain and lateral displacements induced in the tissue. The efficacy of the strain anpolyvinyl alcohol first evaluated in poly vinyl alcohol (PVA)-cryogel phantoms. Several in vivo experiments then were conducted, mainly with the multistretching averaging method, and demonstrated the potential of this technique in the evaluation of mechanical behavior of the dermis and the hypodermis under stress.
机译:这项研究的目的是评估高频静态二维(2-D)弹性成像技术在体内探索皮肤力学行为的潜力。我们的设备基于20 MHz超声仪和专利的引伸计设备的组合,该设备能够对皮肤进行校准的单轴拉伸。我们使用了一种新算法来计算弹性图,该图可在不牺牲分辨率的情况下提高弹性成像的信噪比(SNRe)。根据在组织中引起的轴向应变和横向位移来描述机械行为。首先在聚乙烯醇(PVA)-冰凝胶体模中评估了聚乙烯醇菌株的功效。然后进行了几项体内实验,主要是通过多次拉伸平均法进行的,并证明了该技术在评估压力下真皮和皮下组织力学行为方面的潜力。

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