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在9.4特斯拉磁场下,通过高分辨率磁共振成像对切除的人体脊髓和颈髓交界处进行微观解剖学研究。

Microanatomy of the excised human spinal cord and the cervicomedullary junction examined with high-resolution MR imaging at 9.4 Tesla.

作者信息

Beuls E, Gelan J, Vandersteen M, Adriaensens P, Vanormelingen L, Palmers Y

机构信息

Department of Anatomy, Limburg University, Diepenbeek, Belgium.

出版信息

AJNR Am J Neuroradiol. 1993 May-Jun;14(3):699-707.

Abstract

PURPOSE

To study in detail the MR anatomy of the spinal cord and the cervicomedullary junction that could serve as a reference for clinical MR studies.

METHODS

Specimens of fresh human spinal cord and formalin-fixed cervicomedullary transition zones were imaged with a 9.4-T vertical bore magnet. Using a multisection spin-warp pulse sequence the parameters were selected to produce essentially proton density images.

RESULTS

The images obtained depict the microanatomical organization of the spinal cord and cervicomedullary junction. In the spinal cord, the central gray has the expected higher signal intensity compared with the white matter, which is, apart from its darker general appearance, characterized by the presence of a dense radially structured neuroglial framework of high signal intensity. Anatomically more complex regions such as the dorsal root entry zone, the adjacent posterior horn complex, and the crossing fibers of the cervicomedullary junction are seen as well as parts of the microvascular system.

CONCLUSION

Although cellular details are still beyond the limits of this investigation, the images at 9.4 T show the spinal cord and cervicomedullary junction with detail comparable to low-power microscopic images of fixed sections, especially with respect to distinguishing gray and white matter, nuclei, tracts, and angioarchitecture.

摘要

目的

详细研究脊髓和颈髓交界处的磁共振成像(MR)解剖结构,为临床MR研究提供参考。

方法

使用9.4-T垂直孔径磁体对新鲜人脊髓标本和福尔马林固定的颈髓过渡区进行成像。采用多层面自旋扭曲脉冲序列,选择参数以生成基本的质子密度图像。

结果

所获得的图像描绘了脊髓和颈髓交界处的微观解剖结构。在脊髓中,中央灰质与白质相比具有预期的更高信号强度,白质除了整体外观较暗外,其特征还在于存在密集的呈放射状结构的高信号强度神经胶质框架。还可以看到解剖结构更复杂的区域,如背根入区、相邻的后角复合体以及颈髓交界处的交叉纤维,以及微血管系统的部分结构。

结论

尽管细胞细节仍超出本研究的范围,但9.4 T时的图像显示脊髓和颈髓交界处的细节与固定切片的低倍显微镜图像相当,尤其是在区分灰质和白质、核、束以及血管结构方面。

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