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轨迹密度成像(TDI):超分辨率特性的验证。

Track density imaging (TDI): validation of super resolution property.

机构信息

Brain Research Institute, Florey Neuroscience Institutes, Heidelberg West, Victoria, Australia.

出版信息

Neuroimage. 2011 Jun 1;56(3):1259-66. doi: 10.1016/j.neuroimage.2011.02.059. Epub 2011 Feb 24.

Abstract

We have recently introduced a novel MRI methodology, so-called super resolution track-density imaging (TDI), which produces high-quality white matter images, with high spatial resolution and exquisite anatomical contrast not available from other MRI modalities. This method achieves super resolution by utilising the long-range information contained in the diffusion MRI fibre tracks. In this study, we validate the super resolution property of the TDI method by using in vivo diffusion MRI data acquired at ultra-high magnetic field strength (7 T), and in silico diffusion MRI data from a well-characterised numerical phantom. Furthermore, an alternative version of the TDI technique is described, which mitigates the track length weighting of the TDI map intensity. For the in vivo data, high-resolution diffusion images were down-sampled to simulate low-resolution data, for which the high-resolution images serve as a gold standard. For the in silico data, the gold standard is given by the known simulated structures of the numerical phantom. Both the in vivo and in silico data show that the structures that could be identified in the TDI maps only after using super resolution were consistent with the corresponding structures identified in the reference maps. This supports the claim that the structures identified by the super resolution step are accurate, thus providing further evidence for the important potential role of the super resolution TDI methodology in neuroscience.

摘要

我们最近引入了一种新的 MRI 方法,即所谓的超高分辨率追踪密度成像(TDI),它可以生成高质量的白质图像,具有其他 MRI 模态无法提供的高空间分辨率和精细的解剖对比度。该方法通过利用扩散 MRI 纤维轨迹中包含的长程信息来实现超高分辨率。在这项研究中,我们通过使用超高场强(7T)获得的活体扩散 MRI 数据和来自经过良好表征的数值体模的计算扩散 MRI 数据来验证 TDI 方法的超高分辨率特性。此外,还描述了 TDI 技术的另一种版本,该版本减轻了 TDI 图谱强度的轨迹长度加权。对于活体数据,高分辨率扩散图像被下采样以模拟低分辨率数据,其中高分辨率图像用作金标准。对于计算数据,金标准由数值体模的已知模拟结构给出。体内和计算数据均表明,仅在使用超高分辨率后才能在 TDI 图谱中识别出的结构与在参考图谱中识别出的相应结构一致。这支持了这样一种说法,即超高分辨率步骤识别出的结构是准确的,从而为超高分辨率 TDI 方法在神经科学中的重要潜在作用提供了进一步的证据。

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