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Cross-validation of serial optical coherence scanning and diffusion tensor imaging: A study on neural fiber maps in human medulla oblongata

机译:串行光学相干扫描和扩散张量成像的交叉验证:人延髓神经纤维图谱的研究

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摘要

We established a strategy to perform cross-validation of serial optical coherence scanner imaging (SOCS) and diffusion tensor imaging (DTI) on a postmortem human medulla. Following DTI, the sample was serially scanned by SOCS, which integrates a vibratome slicer and a multi-contrast optical coherence tomography rig for large-scale three-dimensional imaging at microscopic resolution. The DTI dataset was registered to the SOCS space. An average correlation coefficient of 0.9 was found between the co-registered fiber maps constructed by fractional anisotropy and retardance contrasts. Pixelwise comparison of fiber orientations demonstrated good agreement between the DTI and SOCS measures. Details of the comparison were studied in regions exhibiting a variety of fiber organizations. DTI estimated the preferential orientation of small fiber tracts; however, it didn’t capture their complex patterns as SOCS did. In terms of resolution and imaging depth, SOCS and DTI complement each other, and open new avenues for cross-modality investigations of the brain.
机译:我们建立了一种策略,可以对死后的人类延髓进行串行光学相干扫描仪成像(SOCS)和扩散张量成像(DTI)的交叉验证。进行DTI之后,样品由SOCS进行连续扫描,SOCS集成了一个玻璃纤维切片机和一个多对比度光学相干断层扫描仪,可在微观分辨率下进行大规模三维成像。 DTI数据集已注册到SOCS空间。在由分数各向异性和延迟对比形成的共配准纤维图之间发现平均相关系数为0.9。纤维取向的逐像素比较表明DTI和SOCS措施之间的一致性很好。在显示各种纤维组织的区域研究了比较的细节。 DTI估计了小纤维束的优先取向;但是,它没有像SOCS那样捕获其复杂的模式。在分辨率和成像深度方面,SOCS和DTI相互补充,为大脑的跨模态研究开辟了新途径。

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