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The fast Pade transform in magnetic resonance spectroscopy for potential improvements in early cancer diagnostics

机译:磁共振波谱中的快速Pade变换可潜在改善早期癌症诊断

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摘要

The convergence rates of the fast Pade transform (FPT) and the fast Fourier transform (FFT) are compared. These two estimators are used to process a time-signal encoded at 4 T by means of one-dimensional magnetic resonance spectroscopy (MRS) for healthy human brain. It is found systematically that at any level of truncation of the full signal length, the clinically relevant resonances that determine concentrations of metabolites in the investigated tissue are significantly better resolved in the FPT than in the FFT. In particular, the FPT has a better resolution than the FFT for the same signal length. Moreover, the FPT can achieve the same resolution as the FFF by using twice shorter signals. Implications of these findings for two-dimensional magnetic resonance spectroscopy as well as for two- and three-dimensional magnetic resonance spectroscopic imaging are highlighted. Self-contained cross-validation of all the results from the FPT is secured by using two conceptually different, equivalent algorithms (inside and outside the unit-circle), that are both valid in the entire complex frequency plane. The difference between the results from these two variants of the FPT is indistinguishable from the background noise. This constitutes robust error analysis of proven validity. The FPT shows promise in applications of MRS for early cancer detection.
机译:比较了快速Pade变换(FPT)和快速傅立叶变换(FFT)的收敛速度。这两个估计器用于通过一维磁共振波谱(MRS)处理健康人脑的4 T编码时间信号。系统地发现,在整个信号长度的任何截短水平上,确定被研究组织中代谢物浓度的临床相关共振在FPT中均比在FFT中得到更好的分辨。特别地,对于相同的信号长度,FPT具有比FFT更好的分辨率。此外,通过使用短两倍的信号,FPT可以实现与FFF相同的分辨率。这些发现对于二维磁共振波谱以及二维和三维磁共振波谱成像具有重要意义。通过使用两种概念上不同的等效算法(在单位圆内外),可以确保FPT所有结果的自包含交叉验证,它们在整个复频平面内均有效。 FPT的这两种变体的结果之间的差异与背景噪声是无法区分的。这构成了经过验证的有效性的鲁棒错误分析。 FPT在MRS用于早期癌症检测的应用中显示出希望。

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