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Fast and robust measurement of microstructural dimensions using temporal diffusion spectroscopy

机译:使用时间扩散光谱法快速稳健地测量微观结构尺寸

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摘要

Mapping axon sizes non-invasively is of interest for neuroscientists and may have significant clinical potential because nerve conduction velocity is directly dependent on axon size. Current approaches to measuring axon sizes using diffusion-weighted MRI, e.g. q-space imaging with pulsed gradient spin echo (PGSE) sequences usually require long scan times and high q-values to detect small axons (diameter <2 μm). The oscillating gradient spin echo (OGSE) method has been shown to be able to achieve very short diffusion times and hence may be able to detect smaller axons with high sensitivity. In the current study, OGSE experiments were performed to measure the inner diameters of hollow microcapillaries with a range of sizes (~1.5–19.3 μm) that mimic axons in the human central nervous system. The results suggest that OGSE measurements, even with only moderately high frequencies, are highly sensitive to compartment sizes, and a minimum of two ADC values with different frequencies may be sufficient to extract the microcapillary size accurately. This suggests that the OGSE method may serve as a fast and robust measurement method for mapping axon sizes non-invasively.
机译:非侵入性地绘制轴突尺寸是神经科学家感兴趣的,并且可能具有重要的临床潜力,因为神经传导速度直接取决于轴突尺寸。当前使用扩散加权MRI测量轴突尺寸的方法具有脉冲梯度自旋回波(PGSE)序列的q空间成像通常需要较长的扫描时间和较高的q值才能检测到较小的轴突(直径<2μm)。振荡梯度自旋回波(OGSE)方法已被证明能够实现非常短的扩散时间,因此可能能够以高灵敏度检测较小的轴突。在当前的研究中,进行了OGSE实验,以测量模拟人类中枢神经系统轴突的中空微血管的内径,该微血管的大小范围(约1.5-19.3μm)。结果表明,即使只有中等频率的OGSE测量,也对隔室尺寸高度敏感,并且至少两个具有不同频率的ADC值可能足以准确提取微毛细管尺寸。这表明,OGSE方法可作为一种快速,鲁棒的测量方法,用于非侵入性地绘制轴突尺寸。

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