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Limitations of two-component diffusion models for axon diameter density estimation

机译:轴突直径密度估计的两成分扩散模型的局限性

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Two component models of diffusion-weighed signal decay in Magnetic Resonance Imaging have been advocated for use in the estimation of axon diameter distributions. In this work, we demonstrate that axon diameters are not distinguishable under the short pulse approximation, even at high gradient strengths available on pre-clinical MRI systems. We instead investigate the long pulse regime under which axon diameters are maximally separated, as are the two hindered and restricted diffusion components. Through simulation and experimental MRI of the ovine optic nerve, we show that a simplistic two-component model is incapable of capturing experimental decay behaviour, calling into question the utility of these models for axon diameter density estimation.
机译:磁共振成像中扩散加权信号衰减的两个分量模型已被提倡用于轴突直径分布的估计。在这项工作中,我们证明了即使在临床前MRI系统上可用的高梯度强度下,在短脉冲逼近下也无法区分轴突直径。相反,我们研究了轴突直径最大分开的长脉冲机制,以及两个受阻和受限制的扩散分量。通过对绵羊视神经的仿真和实验MRI,我们显示出简单的两成分模型无法捕获实验衰减行为,这使人们怀疑这些模型对轴突直径密度估计的实用性。

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