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Refractive index measurement of acute rat brain tissue slices using optical coherence tomography

机译:光学相干断层扫描技术测量急性大鼠脑组织切片的折射率

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摘要

An optical coherence tomography (OCT) system employing a microelectromechanical system (MEMS) mirror was used to measure the refractive index (RI) of anatomically different regions in acute brain tissue slices, in which viability was maintained. RI was measured in white-matter and grey-matter regions, including the cerebral cortex, putamen, hippocampus, thalamus and corpus callosum. The RI in the corpus callosum was found to be ~4% higher than the RIs in other regions. Changes in RI with tissue deformation were also measured in the cerebral cortex and corpus callosum under uniform compression (20-80% strain). For 80% strain, measured RIs increased nonlinearly by up to 70% and 90% in the cerebral cortex and corpus callosum respectively. Knowledge of RI in heterogeneous tissues can be used to correct distorted optical images caused by RI variations between different regions. Also deformation-dependent changes in RI can be applied to OCT elastography or to mechanical tests based on optical imaging such as indentation tests.
机译:使用微机电系统(MEMS)镜的光学相干断层扫描(OCT)系统用于测量急性脑组织切片中解剖学上不同区域的折光率(RI),并在其中维持了生存能力。 RI在白色和灰色区域测量,包括大脑皮层,壳壳,海马,丘脑和regions体。发现call体中的RI比其他地区的RI高约4%。还测量了在均匀压缩(20-80%应变)下大脑皮层和call体中RI随组织变形的变化。对于80%的应变,在大脑皮层和体中,测得的RI分别非线性地增加了70%和90%。异质组织中的RI知识可用于校正由不同区域之间RI变化引起的扭曲光学图像。 RI中变形相关的变化也可以应用于OCT弹性成像或基于光学成像的机械测试,例如压痕测试。

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