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The ionic DTI model (iDTI) of dynamic diffusion tensor imaging (dDTI)

机译:动态扩散张量成像(dDTI)的离子DTI模型(iDTI)

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摘要

Graphical abstract Abstract Measurements of water molecule diffusion along fiber tracts in CNS by diffusion tensor imaging (DTI) provides a static map of neural connections between brain centers, but does not capture the electrical activity along axons for these fiber tracts. Here, a modification of the DTI method is presented to enable the mapping of active fibers. It is termed dynamic diffusion tensor imaging (dDTI) and is based on a hypothesized “anisotropy reduction due to axonal excitation” (“AREX”). The potential changes in water mobility accompanying the movement of ions during the propagation of action potentials along axonal tracts are taken into account. Specifically, the proposed model, termed “ionic DTI model”, was formulated as follows. ? First, based on theoretical calculations, we calculated the molecular water flow accompanying the ionic flow perpendicular to the principal axis of fiber tracts produced by electrical conduction along excited myelinated and non-myelinated axons. ? Based on the changes in molecular water flow we estimated the signal changes as well as the changes in fractional anisotropy of axonal tracts while performing a functional task. ? The variation of fractional anisotropy in axonal tracts could allow mapping the active fiber tracts during a functional task. Although technological advances are necessary to enable the robust and routine measurement of this electrical activity-dependent movement of water molecules perpendicular to axons, the proposed model of dDTI defines the vectorial parameters that will need to be measured to bring this much needed technique to fruition.
机译:图形摘要摘要通过扩散张量成像(DTI)测量中枢神经系统中水分子沿纤维束的扩散,可提供大脑中枢之间神经连接的静态图,但无法捕获这些纤维束沿轴突的电活动。在此,提出了DTI方法的一种修改形式,可以绘制有源光纤。它被称为动态扩散张量成像(dDTI),其基于假设的“由于轴突激发引起的各向异性减小”(“ AREX”)。考虑到在沿电势沿轴突的传播过程中伴随离子运动的水迁移率的电势变化。具体地,被提议的模型被称为“离子DTI模型”,其表达如下。 ?首先,基于理论计算,我们计算了与离子流垂直相伴的分子水流,其中离子流垂直于沿着带电的有髓和无髓轴突的导电性产生的纤维束的主轴。 ?基于分子水流的变化,我们在执行功能任务时估计了信号变化以及轴突束的分数各向异性的变化。 ?轴突束中的部分各向异性的变化可以允许在功能性任务期间绘制活动的纤维束。尽管技术上的进步对于实现鲁棒且常规的,垂直于轴突的水分子的电活动相关运动的测量是必不可少的,但建议的dDTI模型定义了矢量参数,需要进行测量才能使这一急需的技术实现。

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