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A least square estimator for spin-spin relaxation time in Magnetic Resonance imaging

机译:磁共振成像中自旋-自旋弛豫时间的最小二乘估计器

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Magnetic Resonance (MR) imaging techniques are widely used for medical examination of biophysical properties of tissues. Clinical diagnoses are mainly based on the evaluation of contrast in MR images, evaluating the water component of involved tissues. Moreover, weighted images are considered in order to evaluate the difference response time in order to detect pathologies such as cancer. In this paper we propose some some first results of a statistical technique able to estimate the Spin-spin Relaxation Time of observed tissues exploiting both real and imaginary parts of MR images. Working in the complex domain instead of the amplitude one allows us to write the joint probability distribution of real and imaginary signals. Considering the optimal estimator for the considered case, we are able to evaluate the tissues relaxation times with the lowest possible variance. This estimation technique can lead to a different scenarioes in medical diagnostic. The method has been tested on real data, showing interesting results.
机译:磁共振(MR)成像技术被广泛用于组织生物物理特性的医学检查。临床诊断主要基于对MR图像中对比度的评估,对所涉组织的水分含量的评估。此外,考虑加权图像以便评估差异响应时间以便检测诸如癌症的病理。在本文中,我们提出了一些统计技术的一些初步结果,该技术能够利用MR图像的实部和虚部来估计观察到的组织的自旋自旋弛豫时间。在复数域而不是振幅中工作,使我们能够写出实信号和虚信号的联合概率分布。考虑针对所考虑情况的最佳估计量,我们能够以最小的方差评估组织的松弛时间。这种估计技术可能导致医学诊断中出现不同的情况。该方法已经在真实数据上进行了测试,显示出有趣的结果。

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