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Advances in femtosecond laser micro-inscription and ablation of optical coherence tomography and optical coherence elastography phantoms

机译:Femtosecond激光微题和光学相干断层扫描和光学相干弹性成像幻影的进展

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Optical coherence tomography is a method of optical signal acquisition and processing based upon interferometry, where scattering from the media of interest produces micrometer-resolution 3D images. Optical coherence elastography utilizes OCT to measure the local displacement of tissues under controlled applied load and the resulting strain on the material [1], producing 2D and 3D strain maps (elastograms). The technique can be used to image microscopic mechanical properties of tissue [2], through either quasi-static or dynamic loading regimes (<10Hz or >10Hz respectively). Typically systems operate in the NIR, minimizing scattering and allowing for greater penetration depths. There are applications to conservation, diagnostic and interventional medicine facilitating detailed imaging at depths of several mm without sample preparation or the use of ionizing radiation, typical in ultrasound and MRI scans.
机译:光学相干断层扫描是基于干涉测量的光信号采集和处理的方法,其中来自感兴趣的媒体散射产生微米分辨率3D图像。光学相干弹性造影利用OCT来测量受控施加的载荷下组织的局部位移和材料上的所得菌株[1],产生2D和3D应变图(弹性图)。该技术可用于通过准静态或动态加载方案(分别为<10Hz或10Hz)的准组织[2]的微观机械性能。通常,系统在NIR中操作,最小化散射并允许更大的渗透深度。存在用于保护,诊断和介入医学的应用,促进在几毫米的深度下进行详细的成像,而无需样品制备或使用电离辐射,典型的超声和MRI扫描。

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