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Optical Coherence Tomography detection of shear wave propagation in MCF7 cell modules

机译:光学相干层析成像技术检测MCF7电池模块中的剪切波传播

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In this work, we explored the potential of measuring shear wave propagation using Optical Coherence Elastography (OCE) in MCF7 cell modules (comprised of MCF7 cells and collagen) and based on a swept-source optical coherence tomography (OCT) system. Shear waves were generated using a piezoelectric transducer transmitting sine-wave bursts of 400 us, synchronized with an OCT swept source wavelength sweep imaging system. Acoustic radiation force was applied to the MCF7 cell constructs. Differential OCT phase maps, measured with and without the acoustic radiation force, demonstrate microscopic displacement generated by shear wave propagation in these modules. The OCT phase maps are acquired with a swept-source OCT (SS-OCT) system. We also calculated the tissue mechanical properties based on the propagating shear waves in the MCF7 + collagen phantoms using the Acoustic Radiation Force (ARF) of an ultrasound transducer, and measured the shear wave speed with the OCT phase maps. This method lays the foundation for future studies of mechanical property measurements of breast cancer structures, with applications in the study of breast cancer pathologies.
机译:在这项工作中,我们探索了使用扫频光学相干断层扫描(OCT)系统在MCF7细胞模块(包含MCF7细胞和胶原蛋白)中使用光学相干弹性成像(OCE)测量剪切波传播的潜力。剪切波是使用压电换能器产生的,该换能器与OCT扫频光源波长扫描成像系统同步传输400 us的正弦波脉冲。将声辐射力施加到MCF7细胞构建体。在有声辐射力和无声辐射力的情况下测量的差分OCT相图,都表明了在这些模块中剪切波传播所产生的微观位移。使用扫描源OCT(SS-OCT)系统获取OCT相图。我们还基于超声换能器的声辐射力(ARF),基于MCF7 +胶原模型中传播的剪切波计算了组织力学性能,并使用OCT相图测量了剪切波速度。该方法为乳腺癌结构力学性能测量的未来研究奠定了基础,并在乳腺癌病理学研究中得到了应用。

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