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首页> 外文期刊>Journal of Neuroscience Methods >Visualization of individual axons in excised lamprey spinal cord by magnetic resonance microscopy.
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Visualization of individual axons in excised lamprey spinal cord by magnetic resonance microscopy.

机译:通过磁共振显微镜可视化切除的七lamp鳗脊髓中单个轴突的可视化。

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The direct visualization of axons within their native tissue environment by magnetic resonance (MR) microscopy is presented for the first time in the excised larval sea lamprey spinal cord. A home-built transverse radio frequency coil of 1.5 mm diameter was used in conjunction with a commercial 400 MHz MR microscopy system, implementing both 2-D and 3-D imaging pulse sequences. Images having nominal voxel sizes of 9x9x500 and 9x9x125 microm(3), respectively, in the lamprey spinal cord were obtained, resolving individual Mauthner and Muller axons. Furthermore, architectural changes associated with axonal degeneration were visualized in the spinal cord of one animal, excised 8 weeks after hemisection of the cord. Although the lamprey previously has not been the subject of MR microscopy investigations, these results demonstrate the method's potential for imaging this axon system, which is an important model of spinal cord injury and regeneration.
机译:首次在切除的幼虫海七rey鳗脊髓中显示了通过磁共振(MR)显微镜在其原始组织环境中对轴突的直接可视化。将直径为1.5 mm的自制横向射频线圈与商用400 MHz MR显微镜系统结合使用,可实现2-D和3-D成像脉冲序列。获得了在七rey鳗脊髓中标称体素大小分别为9x9x500和9x9x125 microm(3)的图像,从而解决了单个Mauthner和Muller轴突的问题。此外,在一只动物的脊髓半切后8周将其切除,可以看到与轴突变性相关的结构变化。尽管七the鳗以前并不是MR显微镜研究的对象,但这些结果证明了该方法具有对该轴突系统成像的潜力,该轴突系统是脊髓损伤和再生的重要模型。

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