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首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Diffusion simulation-based fiber tracking using time-of-arrival maps: A comparison with standard methods
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Diffusion simulation-based fiber tracking using time-of-arrival maps: A comparison with standard methods

机译:使用到达时间图的基于扩散模拟的光纤跟踪:与标准方法的比较

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摘要

Object: We propose a new tracking method based on time-of-arrival (TOA) maps derived from simulated diffusion processes. Materials and methods: The proposed diffusion simulation-based tracking consists of three steps that are successively evaluated on small overlapping sub-regions in a diffusion tensor field. First, the diffusion process is simulated for several time steps. Second, a TOA map is created to store simulation results for the individual time steps that are required for the tract reconstruction. Third, the fiber pathway is reconstructed on the TOA map and concatenated between neighboring sub-regions. This new approach is compared with probabilistic and streamline tracking. All methods are applied to synthetic phantom data for an easier evaluation of their fiber reconstruction quality. Results: The comparison of the tracking results did show severe problems for the streamline approach in the reconstruction of crossing fibers, for example. The probabilistic method was able to resolve the crossing, but could not handle strong curvature. The new diffusion simulation-based tracking could reconstruct all problematic fiber constellations. Conclusion: The proposed diffusion simulation-based tracking method used the whole tensor information of a neighborhood of voxels and is, therefore, able to handle problematic tracking situations better than established methods.
机译:目的:我们提出了一种基于从模拟扩散过程中得出的到达时间(TOA)图的新跟踪方法。材料和方法:所提出的基于扩散模拟的跟踪包括三个步骤,这些步骤在扩散张量场中的小的重叠子区域上进行了连续评估。首先,对扩散过程进行了几个时间步骤的仿真。其次,创建一个TOA映射图以存储针对管道重建所需的各个时间步长的仿真结果。第三,在TOA图上重建光纤路径,并将其连接在相邻的子区域之间。将此新方法与概率跟踪和简化跟踪进行了比较。所有方法都应用于合成体模数据,以便更轻松地评估其纤维重建质量。结果:例如,跟踪结果的比较确实显示了流线方法在交叉纤维重建中的严重问题。概率方法能够解决交叉问题,但无法处理强曲率。新的基于扩散模拟的跟踪可以重建所有有问题的光纤星座。结论:所提出的基于扩散模拟的跟踪方法利用了体素邻域的整个张量信息,因此比已建立的方法能够更好地处理有问题的跟踪情况。

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