首页> 外文会议>European Signal Processing Conference;EUSIPCO >COMPENSATION OF MRI T1-WEIGHTED SPIN-ECHO IMAGES FOR RADIO-FREQUENCY INHOMOGENEITIES
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COMPENSATION OF MRI T1-WEIGHTED SPIN-ECHO IMAGES FOR RADIO-FREQUENCY INHOMOGENEITIES

机译:MRI T1加权自旋回波图像对射频不均匀性的补偿

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We propose a correction method for magnetic resonance (MR) images to eliminate the effects of the inhomogeneity of the radio-frequency (RF) pulses and of the sensivity of the RF reception particularly in the case of T1-weighted images. In this case the effects of the pulse inhomogeneities vary with the tissues, which prevents the use of simpler correction techniques based on a global multiplicative bias field model. Here, the MR signal is modeled as a sum of contributions of all the tissues present in the object. For sake of generality, each pixel is assumed to contain an unknown proportion of each tissue, so that the usually adopted segmentation based approach is not valid in the present context. The number of tissues composing the object as well as the MR characteristics of each tissue are required. Several images with different acquisition parameter values are also needed. A penalized least-square criterion is proposed to estimate the RF emitted field, the RF sensitivity reception and the proportion of each tissue. The criterion contains smoothness regularization for both RF fields. We solve the optimization problem using a conjugate gradient algorithm within a Gauss-Seidel iterative scheme. Results based on real MR images of fish demonstrate the effectiveness of the method.
机译:我们提出了一种校正方法,用于磁共振(MR)图像,以消除射频(RF)脉冲的不均匀性和RF接收的感觉性的影响,特别是在T1加权图像的情况下。在这种情况下,脉冲不均匀性的效果随组织而变化,这防止了基于全局乘法偏置场模型使用更简单的校正技术。这里,MR信号被建模为对象中存在的所有组织的贡献之和。为与人的缘故,假设每个像素包含每个组织的未知比例,使得通常采用的基于分割的方法在当前背景下无效。需要组成对象的组织数量以及每个组织的MR特性。还需要具有不同采集参数值的几个图像。惩罚最小二乘标准提出估计RF发射的场,RF敏感性接收和每个组织的比例。标准包含两个RF字段的平滑度正则化。我们在高斯 - Seidel迭代方案中使用共轭梯度算法来解决优化问题。基于真正的鱼MR图像的结果证明了该方法的有效性。

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