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Accurate detection of white matter tracts: mapping of human brain eloquent areas with cross-polarization optical coherence tomography

机译:准确检测白质束:使用交叉偏振光学相干断层扫描技术绘制人脑雄辩区域的图

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Optical coherence tomography (OCT) is a promising method for clarifying the boundaries of the infiltrative brain tumors within surrounding white matter. Since gliomas often tend to grow close to eloquent brain areas, the question of the proximity of the tumor to white matter tracts sharply arise during tumor resection to prevent their damage. Cross-polarization (CP) OCT is a so-called functional extension of OCT that seems to have benefits in visualization of myelin. It looks perspective not just to detect white matter, but also receive information about its condition - the myelination rate and presence of ordered fibers. The aim of this study was to visualize white matter organization of eloquent brain areas with CP OCT using post-processing methods. The ex vivo CP OCT images were collected from autopsy subjects of the human brain. The brain specimens contained white matter of different organization and localization: brainstem, corpus callosum, frontal and parietal tracts, subcortical white matter. Two optical coefficients (attenuation and inter-channel attenuation difference) were calculated for each A-scan and two types of color-coded maps based on them were built. No significant differences based on CP OCT attenuation and inter-channel attenuation difference coefficients were demonstrated between white matter from different brain areas. However, in vivo studies can show conversely results. The detection of white matter microstructure during surgery looks promising therefore additional CP OCT performance build-up can be considered.
机译:光学相干断层扫描(OCT)是一种有前途的方法,用于澄清周围白质内浸润性脑肿瘤的边界。由于神经胶质瘤通常倾向于生长在靠近大脑的区域,因此在肿瘤切除过程中会急剧出现肿瘤与白质束接近的问题,以防止其受损。交叉极化(CP)OCT是OCT的所谓功能扩展,似乎对髓磷脂的可视化有好处。它不仅可以检测白质,而且还可以接收有关其状况的信息-髓鞘形成率和有序纤维的存在。这项研究的目的是使用后处理方法通过CP OCT可视化雄辩大脑区域的白质组织。从人脑的尸检对象中收集离体CP OCT图像。脑标本包含不同组织和位置的白质:脑干,call体,额叶和顶叶,皮层下白质。为每个A扫描计算两个光学系数(衰减和通道间衰减差),并基于它们建立两种类型的颜色编码图。在来自不同大脑区域的白质之间,没有发现基于CP OCT衰减和通道间衰减差异系数的显着差异。但是,体内研究可以显示相反的结果。手术期间对白质微观结构的检测看起来很有希望,因此可以考虑增加CP OCT性能。

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