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首页> 外文期刊>NeuroImage >Comparison of fiber tracts derived from in-vivo DTI tractography with 3D histological neural tract tracer reconstruction on a macaque brain.
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Comparison of fiber tracts derived from in-vivo DTI tractography with 3D histological neural tract tracer reconstruction on a macaque brain.

机译:猕猴大脑上的DTI活体成像与3D组织学神经束示踪剂重建的纤维束比较。

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摘要

Since the introduction of diffusion weighted imaging (DWI) as a method for examining neural connectivity, its accuracy has not been formally evaluated. In this study, we directly compared connections that were visualized using injected neural tract tracers (WGA-HRP) with those obtained using in-vivo diffusion tensor imaging (DTI) tractography. First, we injected the tracer at multiple sites in the brain of a macaque monkey; second, we reconstructed the histological sections of the labeled fiber tracts in 3D; third, we segmented and registered the fibers (somatosensory and motor tracts) with the anatomical in-vivo MRI from the same animal; and last, we conducted fiber tracing along the same pathways on the DTI data using a classical diffusion tracing technique with the injection sites as seeds. To evaluate the performance of DTI fiber tracing, we compared the fibers derived from the DTI tractography with those segmented from the histology. We also studied the influence of the parameters controlling the tractography by comparing Dice superimposition coefficients between histology and DTI segmentations. While there was generally good visual agreement between the two methods, our quantitative comparisons reveal certain limitations of DTI tractography, particularly for regions at remote locations from seeds. We have thus demonstrated the importance of appropriate settings for realistic tractography results.
机译:由于引入了弥散加权成像(DWI)作为检查神经连接性的方法,因此尚未对其准确性进行正式评估。在这项研究中,我们直接比较了使用注射神经束示踪剂(WGA-HRP)进行可视化的连接与使用体内扩散张量成像(DTI)图像学获得的连接。首先,我们将示踪剂注入到猕猴大脑的多个部位。其次,我们在3D中重建了标记纤维束的组织学切片。第三,我们使用同一动物的解剖体内MRI对纤维(体感和运动道)进行分割和配准。最后,我们使用经典的扩散示踪技术,以注入点为种子,沿着DTI数据的相同路径进行了纤维示踪。为了评估DTI纤维示踪的性能,我们将DTI纤维束造影术得到的纤维与组织学上分割出的纤维进行了比较。通过比较组织学和DTI分割之间的Dice叠加系数,我们还研究了控制超声图像控制的参数的影响。虽然两种方法之间通常有良好的视觉一致性,但我们的定量比较揭示了DTI显像技术的某些局限性,特别是对于远离种子的偏远地区。因此,我们证明了适当的设置对于现实的物镜检查结果的重要性。

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