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Optical coefficients as tools for increasing the optical coherence tomography contrast for normal brain visualization and glioblastoma detection

机译:光学系数可作为增加光学相干断层扫描对比度的工具用于正常大脑可视化和胶质母细胞瘤检测

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摘要

The methods used for digital processing of optical coherence tomography (OCT) and crosspolarization (CP) OCT images are focused on improving the contrast ratio of native structural OCT images. Such advances are particularly important for the intraoperative detection of glioma margins where the visual assessment of OCT images can be difficult and lead to errors. The aim of the study was to investigate the application of optical coefficients obtained from CP OCT data for the differentiation of glial tumorous tissue from a normal brain. Pseudocolor OCT maps based on two optical coefficients (the commonly used rate of attenuation in the cochannel, and in addition, the interchannel attenuation difference) were constructed for normal rat brain coronal cross sections and for brains with a 101.8 rat glioblastoma model. It was shown that the use of optical coefficients significantly increased the available information from the OCT data in comparison with unprocessed images. As a result, this allowed contrasting of the white matter from the gray matter and tumorous tissue , and for this purpose, the interchannel attenuation difference worked better. The interchannel attenuation difference values of white matter were at least seven and two times higher than corresponding values of the cortex and tumorous tissue, whereas the same parameter for cochannel attenuation coefficient values of white matter are about 4 and 1.4. However, quantitative analysis shows that both coefficients are suitable for the purpose of glioblastoma detection from normal brain tissue regardless of whether a necrotic component was present (in all compared groups ).
机译:用于光学相干断层扫描(OCT)和交叉偏振(CP)OCT图像的数字处理的方法集中于提高本机结构OCT图像的对比度。这些进展对于术中胶质瘤边缘的检测尤其重要,在胶质瘤边缘,OCT图像的视觉评估可能会很困难并导致错误。该研究的目的是研究从CP OCT数据获得的光学系数在区分正常脑胶质瘤组织中的应用。基于两个光学系数(同道中常用的衰减率,以及同道之间的衰减差异),针对正常大鼠脑冠状横截面和具有101.8大鼠胶质母细胞瘤模型的大脑,构建了伪色OCT图。结果表明,与未处理的图像相比,光学系数的使用显着增加了来自OCT数据的可用信息。结果,这允许白质与灰质和肿瘤组织形成对比,为此,通道间的衰减差异效果更好。白质的通道间衰减差值比皮质和肿瘤组织的相应值高至少七倍和两倍,而白质的同通道衰减系数值的相同参数约为4和1.4。但是,定量分析表明,无论是否存在坏死成分(在所有比较组中),这两个系数均适合于从正常脑组织中检测胶质母细胞瘤。

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