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Anisotropic polyvinyl alcohol hydrogel phantom for shear wave elastography in fibrous biological soft tissue

机译:纤维生物软组织中剪切波弹性成像的各向异性聚乙烯醇水凝胶体模

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Shear wave elastography can provide quantitative evaluation of soft tissues viscoelastic properties based on the measurement of shear wave speed in the medium. Muscular and cerebral tissues are composed of fibers which induce a strong anisotropic effect on the mechanical behavior. Currently, these tissues cannot be accurately represented by existing elastography phantoms and there is an urgent need of developing new anisotropic tissue mimicking phantoms. In the present study we propose an original multimodality imaging characterization of a transverse isotropic (TI) polyvinyl alcohol (PVA) cryogel. The mechanical anisotropy is induced in the PVA hydrogel by stretching the physical crosslinks of the polymeric chains while undergoing freezing cycling [1]. Multiple properties of these phantoms were investigated using a variety of techniques at different scale. The mechanical (dynamic and static) properties were studied using Supersonic Shear wave Imaging (SSI) technique [2] and Full-Field Optical Coherence Tomography (FF-OCT) strain imaging. The optical and ultrasonic spatial coherence properties were measure by FF-OCT volumetric imaging [3] and Backscatter Tensor Imaging (BTI) [4], respectively. The results suggest that this type of phantom (TI) could be used in the development of techniques and equipment to study anisotropy, such as the design of new ultrasound probes for cardiac and musculoskeletal application.
机译:剪切波弹性成像可以基于介质中剪切波速度的测量结果来定量评估软组织的粘弹性。肌肉和大脑组织由纤维组成,这些纤维对机械行为产生强烈的各向异性作用。当前,这些组织不能由现有的弹性成像体模精确地表示,并且迫切需要开发新的模仿体模的各向异性组织。在本研究中,我们提出了横向各向同性(TI)聚乙烯醇(PVA)冷冻凝胶的原始多峰成像表征。在拉伸过程中,通过拉伸聚合物链的物理交联,可在PVA水凝胶中引起机械各向异性[1]。使用各种规模不同的技术研究了这些幻影的多种特性。使用超音速剪切波成像(SSI)技术[2]和全场光学相干断层扫描(FF-OCT)应变成像研究了机械(动态和静态)性能。光学和超声空间相干性分别通过FF-OCT体积成像[3]和反向散射张量成像(BTI)[4]进行测量。结果表明,这种体模(TI)可用于研究各向异性的技术和设备的开发,例如用于心脏和肌肉骨骼应用的新型超声探头的设计。

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