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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Accelerating MR diffusion tensor imaging via filtered reduced-encoding projection-reconstruction.
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Accelerating MR diffusion tensor imaging via filtered reduced-encoding projection-reconstruction.

机译:通过滤波的减少编码的投影重建来加速MR扩散张量成像。

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摘要

MR diffusion tensor imaging (DTI) is a promising tool for characterizing the microstructure of ordered tissues. However, its practical applications are hampered by relatively low signal-to-noise-ratio and spatial and temporal resolution. Reduced-encoding imaging (REI) via k-space sharing with constrained reconstruction has previously been shown to be effective for accelerating DTI, although the implementation was based on rectilinear k-space sampling. Due to the intrinsic oversampling of central k-space and allowance for isotropic downsampling, projection-reconstruction (PR) imaging may be better suited for REI. In this study, regularization procedures, including radial filtering and baseline signal correction to adequately reconstruct reduced encoded PR imaging data, are investigated. The proposed filtered reduced-encoding projection-reconstruction (FREPR) technique is applied to DTI tissue fiber orientation and fractional anisotropy (FA) measurements. Results show that FREPR offers improved reconstructions of the reduced encoded images and on an equal total scan-time basis provides more accurate fiber orientation and FA measurements compared to rectilinear k-space sampling-based REI methods or a control experiment consisting of only fully encoded images. These findings suggest a potentially significant role of FREPR in accelerating repeated imaging and improving the data acquisition-time efficiency of DTI experiments.
机译:MR扩散张量成像(DTI)是用于表征有序组织的微观结构的有前途的工具。但是,其相对较低的信噪比和空间和时间分辨率阻碍了其实际应用。尽管实现是基于直线k空间采样,但以前已证明了通过k空间共享和约束重建进行的缩减编码成像(REI)对于加速DTI是有效的。由于中心k空间的固有过采样和各向同性下采样的余量,投影重建(PR)成像可能更适合REI。在这项研究中,研究了正则化程序,包括径向滤波和基线信号校正,以充分重建减少的编码PR成像数据。所提出的滤波后减少编码投影重建(FREPR)技术被应用于DTI组织纤维取向和分数各向异性(FA)测量。结果表明,与基于直线k空间采样的REI方法或仅由完全编码图像组成的控制实验相比,FREPR可以提供对减少的编码图像的改进重建,并且在相等的总扫描时间上,可以提供更准确的纤维方向和FA测量。 。这些发现表明FREPR在加速重复成像和改善DTI实验的数据采集时间效率方面具有潜在的重要作用。

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