首页> 外文期刊>Magnetic resonance in medical sciences : >A Fast GPU-optimized 3D MRI Simulator for Arbitrary k-space Sampling
【24h】

A Fast GPU-optimized 3D MRI Simulator for Arbitrary k-space Sampling

机译:快速GPU优化的3D MRI仿真器,用于任意k空间采样

获取原文
       

摘要

Purpose: To develop a fast 3D MRI simulator for arbitrary k -space sampling using a graphical processing unit (GPU) and demonstrate its performance by comparing simulation and experimental results in a real MRI system.Materials and Methods: A fast 3D MRI simulator using a GeForce GTX 1080 GPU (NVIDIA Corporation, Santa Clara, CA, USA) was developed using C++ and the CUDA 8.0 platform (NVIDIA Corporation). The unique advantage of this simulator was that it could use the same pulse sequence as used in the experiment. The performance of the MRI simulator was measured using two GTX 1080 GPUs and 3D Cones sequences. The MRI simulation results for 3D non-Cartesian sampling trajectories like 3D Cones sequences using a numerical 3D phantom were compared with the experimental results obtained with a real MRI system and a real 3D phantom.Results: The performance of the MRI simulator was about 3800–4900 gigaflops for 128- to 4-shot 3D Cones sequences with 256sup3/sup voxels, which was about 60% of the performance of the previous MRI simulator optimized for Cartesian sampling calculated for a Cartesian sampling gradient-echo sequence with 256sup3/sup voxels. The effects of the static magnetic field inhomogeneity, radio-frequency field inhomogeneity, gradient field nonlinearity, and fast repetition times on the MR images were reproduced in the simulated images as observed in the experimental images.Conclusion: The 3D MRI simulator developed for arbitrary k -space sampling optimized using GPUs is a powerful tool for the development and evaluation of advanced imaging sequences including both Cartesian and non-Cartesian k -space sampling.
机译:目的:开发一种使用图形处理单元(GPU)进行任意k空间采样的快速3D MRI模拟器,并通过在真实MRI系统中比较模拟结果和实验结果来证明其性能。 GeForce GTX 1080 GPU(NVIDIA Corporation,美国加利福尼亚州圣克拉拉)使用C ++和CUDA 8.0平台(NVIDIA Corporation)开发。该模拟器的独特优势在于它可以使用与实验中相同的脉冲序列。使用两个GTX 1080 GPU和3D Cones序列测量MRI模拟器的性能。将使用数字3D体模的3D非笛卡尔采样轨迹(如3D圆锥序列)的MRI仿真结果与使用真实MRI系统和真实3D体模获得的实验结果进行了比较。结果:MRI模拟器的性能约为3800–具有256 3 体素的128至4拍3D圆锥序列的4900千兆位触发器,大约是先前针对按笛卡尔采样梯度回波序列计算的笛卡尔采样优化的MRI模拟器性能的60%具有256 3 体素。如在实验图像中观察到的那样,在模拟图像中再现了静磁场不均匀性,射频场不均匀性,梯度场非线性和快速重复时间对MR图像的影响。结论:针对任意k研制的3D MRI模拟器使用GPU优化的空间采样是开发和评估高级成像序列(包括笛卡尔和非笛卡尔k空间采样)的强大工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号