离体小鼠大脑的高分辨率弥散磁共振成像技术研究
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1.南方医科大学生物医学工程学院,广州 510515;2.广东省医学图像处理重点实验室,广州 510515;3.广东省医学成像与诊断技术工程实验室,广州510515

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国家自然科学基金(U21A6005,61971214,82372079);广东省基础与应用基础研究基金(2023A1515012093)。


High-Resolution Diffusion Magnetic Resonance Imaging Techniques in Ex-vivo Mouse Brain
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Affiliation:

1.School of Biomedical Engineering, Southern Medical University, Guangzhou 510515, China;2.Guangdong Provincial Key Laboratory of Medical Image Processing, Guangzhou 510515, China;3.Guangdong Province Engineering Laboratory for Medical Imaging and Diagnostic Technology, Guangzhou 510515, China

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    摘要:

    在离体高分辨率弥散磁共振研究中,传统弥散加权自旋回波脉冲(Diffusion-weighted spin-echo pulse, DWI-SE)序列因扫描时间过长,难以满足大样本需求。多激发弥散加权平面回波成像(Multi-shot diffusion-weighted echo-planar imaging, MS-DWI-EPI)序列结合平面回波成像(Echo-planar imaging, EPI)读出和k空间分段采集,不仅显著提升了扫描效率,也有效缓解了单次EPI常见的图像畸变与失真问题。然而,MS-DWI-EPI在离体样本中的微观结构解析能力仍缺乏系统的验证。因此,本文使用3D DWI-SE序列和3D MS-DWI-EPI序列对离体小鼠大脑进行高分辨率弥散成像,并评估两种序列在信噪比、弥散张量成像(Diffusion tensor imaging, DTI)参数估计及纤维束追踪表现方面的差异。实验结果表明,在采集相同空间和角度分辨率的情况下,MS-DWI-EPI序列的扫描时间缩短了近50%,同时其原始b0图像的信噪比约为DWI-SE的3倍。在关键解剖区域,如胼胝体与海马区,MS-DWI-EPI不仅提升了DTI图像的结构对比度,而且改善了纤维束追踪的效果。该序列在成像效率与质量之间实现了良好平衡,为高通量微观结构研究提供了更高效的弥散加权成像协议。

    Abstract:

    In ex-vivo high-resolution diffusion magnetic resonance studies, the conventional diffusion-weighted spin-echo pulse (DWI-SE) sequence is difficult to satisfy the large sample requirement due to the long scan time. Multi-shot diffusion-weighted echo-planar imaging (MS-DWI-EPI) sequence, which combines echo-planar imaging (EPI) readout and k-space segmented acquisition, not only significantly improves the scanning efficiency, but also effectively reduces the common image aberration and distortion problems of single-shot EPI. However, the microstructure resolution ability of MS-DWI-EPI in ex-vivo samples still lacks systematic validation. In this study, we perform high-resolution diffusion imaging of ex-vivo mouse brains using 3D DWI-SE sequence and 3D MS-DWI-EPI sequence, and evaluate the differences between these two sequences in signal-to-noise ratio, diffusion tensor imaging (DTI) parameter estimation, and tractography performance. Experimental results show that the scanning time of the MS-DWI-EPI sequence is nearly 50% shorter while the signal-to-noise ratio of its raw b0 images is about three times higher than the DWI-SE for the same spatial and angular resolution of acquisition. In critical anatomical regions such as the corpus callosum and hippocampus, MS-DWI-EPI not only enhances the structural contrast of DTI images, but also improves the tractography. The sequence achieves a good balance between imaging efficiency and quality, providing a more efficient diffusion-weighted imaging protocol for high-throughput microstructural studies.

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任保兴,冯衍秋,张鑫媛.离体小鼠大脑的高分辨率弥散磁共振成像技术研究[J].数据采集与处理,2025,40(4):901-911

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  • 收稿日期:2025-04-30
  • 最后修改日期:2025-07-09
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  • 在线发布日期: 2025-08-15