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MRI中q空间相关参数的准确性:模拟与体模测量

Accuracy of q-space related parameters in MRI: simulations and phantom measurements.

作者信息

Lätt Jimmy, Nilsson Markus, Malmborg Carin, Rosquist Hannah, Wirestam Ronnie, Ståhlberg Freddy, Topgaard Daniel, Brockstedt Sara

机构信息

Department of Medical Radiation Physics, Clinical Sciences, Lund University, SE-221 85 Lund, Sweden.

出版信息

IEEE Trans Med Imaging. 2007 Nov;26(11):1437-47. doi: 10.1109/TMI.2007.907278.

Abstract

The accuracy of q-space measurements was evaluated at a 3.0-T clinical magnetic resonance imaging (MRI) scanner, as compared with a 4.7-T nuclear magnetic resonance (NMR) spectrometer. Measurements were performed using a stimulated-echo pulse-sequence on n-decane as well as on polyethylene glycol (PEG) mixed with different concentrations of water, in order to obtain bi-exponential signal decay curves. The diffusion coefficients as well as the modelled diffusional kurtosis K(fit) were obtained from the signal decay curve, while the full-width at half-maximum (FWHM) and the diffusional kurtosis K were obtained from the displacement distribution. Simulations of restricted diffusion, under conditions similar to those obtainable with a clinical MRI scanner, were carried out assuming various degrees of violation of the short gradient pulse (SGP) condition and of the long diffusion time limit. The results indicated that an MRI system can not be used for quantification of structural sizes less than about 10 microm by means of FWHM since the parameter underestimates the confinements due to violation of the SGP condition. However, FWHM can still be used as an important contrast parameter. The obtained kurtosis values were lower than expected from theory and the results showed that care must be taken when interpreting a kurtosis estimate deviating from zero.

摘要

在一台3.0-T临床磁共振成像(MRI)扫描仪上评估了q空间测量的准确性,并与一台4.7-T核磁共振(NMR)光谱仪进行了比较。使用受激回波脉冲序列对正癸烷以及与不同浓度水混合的聚乙二醇(PEG)进行测量,以获得双指数信号衰减曲线。从信号衰减曲线获得扩散系数以及模拟的扩散峰度K(fit),而从位移分布获得半高宽(FWHM)和扩散峰度K。在类似于临床MRI扫描仪可获得的条件下,假设短梯度脉冲(SGP)条件和长扩散时间限制存在不同程度的违反,进行了受限扩散模拟。结果表明,由于违反SGP条件,FWHM参数会低估限制,因此MRI系统不能用于通过FWHM对小于约10微米的结构尺寸进行量化。然而,FWHM仍可作为一个重要的对比参数。获得的峰度值低于理论预期,结果表明在解释偏离零的峰度估计值时必须谨慎。

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