首页> 外文期刊>NMR in biomedicine >Quantification of MRS data in the frequency domain using a wavelet filter, an approximated Voigt lineshape model and prior knowledge.
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Quantification of MRS data in the frequency domain using a wavelet filter, an approximated Voigt lineshape model and prior knowledge.

机译:使用小波滤波器,近似的Voigt线形模型和先验知识对频域中的MRS数据进行量化。

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摘要

Quantification of MRS spectra is a challenging problem when a large baseline is present along with a low signal to noise ratio. This work investigates a robust fitting technique that yields accurate peak areas under these conditions. Using simulated long echo time (1)H MRS spectra with low signal to noise ratio and a large baseline component, both the accuracy and reliability of the fit in the frequency domain were greatly improved by reducing the number of fitted parameters and making full use of all the known information concerning the Voigt lineshape. Using an appropriate first order approximation to a popular approximation of the Voigt lineshape, a significant improvement in the estimate of the area of a known spectral peak was obtained with a corresponding reduction in the residual. Furthermore, this improved parameter choice resulted in a large reduction in the number of iterations of the least-squares fitting routine. On the other hand, making use of the known centre frequency differences of thecomponent resonances gave negligible improvement. A wavelet filter was used to remove the baseline component. In addition to performing a Monte Carlo study, these fitting techniques were also applied to a set of 10 spectra acquired from healthy human volunteers. Again, the same reduced parameter model gave the lowest value for chi(2) in each case.
机译:当存在较大的基线以及较低的信噪比时,MRS光谱的量化是一个具有挑战性的问题。这项工作研究了一种鲁棒的拟合技术,可在这些条件下产生准确的峰面积。使用模拟的长回波时间(1)H MRS光谱,具有较低的信噪比和较大的基线分量,通过减少拟合参数的数量并充分利用频率,可以极大地提高频域拟合的准确性和可靠性。有关Voigt线形的所有已知信息。使用适当的一阶近似值到Voigt线形的普遍近似值,可以明显减少已知频谱峰的面积,并相应地减少残差。此外,这种改进的参数选择导致最小二乘拟合例程的迭代次数大大减少。另一方面,利用组件谐振的已知中心频率差给出的改进可忽略不计。小波滤波器用于去除基线分量。除了进行蒙特卡洛研究外,这些拟合技术还应用于从健康人类志愿者那里获得的10组光谱。同样,在每种情况下,相同的简化参数模型都给出chi(2)的最小值。

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