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Reconstruction of magnetic resonance images from EPI data

机译:从EPI数据重建磁共振图像

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Abstract: We present a method for reconstructing magnetic resonance (MR) images from data acquired using echo-planar imaging (EPI) techniques. All data were acquired from a commercial scanner, the 1.5 Tesla Picker Vista HPQ MR imaging system, equipped with a special, high-performance, gradient system. Blipped echo planar imaging (BEPI) was performed, with and without digitizer pausing during data acquisition. Both sinusoidal and trapezoidal readout gradients were programmed and tested. Samples obtained from the gradient amplifier current monitors were used to calculate the approximate position of every sample obtained in the spatial- frequency (k-space) plane. A convolution function with compact support int he k-space and good rolloff in the image domain was used to resample the data onto a lattice permitting the use of fast transformation methods to the image domain. Strong ghosting was observed in the resulting images due probably to static magnetic field variation, gradient asymmetry and echo asymmetry between data lines. A piecewise-linear function was used to model the introduced ghost and hence to remove pixels in the reconstructed image which were determined to be spurious. Initial results are promising.!8
机译:摘要:我们提出了一种从使用回波平面成像(EPI)技术获取的数据中重建磁共振(MR)图像的方法。所有数据均从商用扫描仪1.5 Tesla Picker Vista HPQ MR成像系统获取,该系统配备了特殊的高性能渐变系统。进行了回波平面成像(BEPI),在数据采集过程中有或没有数字转换器暂停。正弦和梯形读数梯度都经过编程和测试。从梯度放大器电流监控器获得的样本用于计算在空间频率(k空间)平面中获得的每个样本的大概位置。卷积函数在k域中具有紧凑的支持空间,并且在图像域中具有良好的滚降,用于将数据重采样到晶格上,从而允许使用到图像域的快速转换方法。可能由于静磁场变化,数据线之间的梯度不对称和回波不对称而在生成的图像中观察到强烈的重影。使用分段线性函数对引入的重影进行建模,从而删除重建图像中确定为虚假的像素。初步结果很有希望。!8

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