Brain Research Institute, Florey Neuroscience Institutes, Heidelberg, Victoria, Australia.
Neuroimage. 2012 Jan 2;59(1):286-96. doi: 10.1016/j.neuroimage.2011.07.014. Epub 2011 Jul 14.
The recently proposed track-density imaging (TDI) technique was introduced as a means to achieve super-resolution using diffusion MRI. This technique is able to increase the spatial resolution of the reconstructed images beyond the acquired MRI resolution by incorporating information from whole-brain fibre-tracking results. It not only achieves super-resolution, but also provides very high anatomical contrast with a new MRI contrast mechanism. However, the anatomical information-content of this novel contrast mechanism has not yet been assessed. In this work, we perform such a study using diffusion MRI of ex vivo mouse brains acquired at 16.4 T, to compare the results of the super-resolution TDI technique with histological staining (myelin and Nissl stains) in the same brains. Furthermore, a modified version of the directionally-encoded colour TDI map using short-tracks is introduced, which reduces the TDI intensity dynamic range, and therefore enhances the directionality colour-contrast. Good agreement was observed between structures visualised in the super-resolution TDI maps and in the histological sections, supporting the anatomical information-content of the images generated using the TDI technique. The results therefore show that the TDI methodology does provide meaningful and rich anatomical contrast, in addition to achieving super-resolution. Furthermore, this study is the first to show the application of TDI to mouse brain imaging: the high-resolution, high-quality images demonstrate the useful complementary information that can be achieved using super-resolution TDI.
最近提出的轨迹密度成像(TDI)技术被引入作为一种使用扩散 MRI 实现超分辨率的方法。该技术能够通过整合全脑纤维追踪结果的信息,将重建图像的空间分辨率提高到超过所采集的 MRI 分辨率。它不仅实现了超分辨率,而且还提供了具有新 MRI 对比机制的非常高的解剖对比度。然而,这种新对比机制的解剖信息量尚未得到评估。在这项工作中,我们使用在 16.4 T 下采集的离体小鼠脑的扩散 MRI 进行了这样的研究,以比较超分辨率 TDI 技术的结果与同一脑组织中的组织学染色(髓鞘和尼氏染色)。此外,还引入了一种使用短轨迹的方向编码彩色 TDI 图的修改版本,该版本降低了 TDI 强度动态范围,从而增强了方向性颜色对比度。在超分辨率 TDI 图中可视化的结构与组织学切片之间观察到了良好的一致性,这支持了使用 TDI 技术生成的图像的解剖信息量。因此,结果表明,除了实现超分辨率之外,TDI 方法确实提供了有意义且丰富的解剖对比度。此外,这项研究首次将 TDI 应用于小鼠脑成像:高分辨率、高质量的图像展示了使用超分辨率 TDI 可以实现的有用的补充信息。