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基于非线性光学显微镜的大鼠脊髓微观结构的无标记识别

Label-free identification of the microstructure of rat spinal cords based on nonlinear optical microscopy.

作者信息

Liao C X, Wang Z Y, Zhou Y, Zhou L Q, Zhu X Q, Liu W G, Chen J X

机构信息

Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Normal University, Fuzhou, 350007, P. R. China.

Department of Orthopedics, Affiliated Union Hospital of Fujian Medical University, Fuzhou, P. R. China.

出版信息

J Microsc. 2017 Aug;267(2):143-149. doi: 10.1111/jmi.12554. Epub 2017 Mar 20.

Abstract

The spinal cord is a vital link between the brain and the body and mainly comprises neurons, glial cells and nerve fibres. In this work, nonlinear optical (NLO) microscopy based on intrinsic tissue properties was employed to label-freely analyze the cells and matrix in spinal cords at a molecular level. The high-resolution and high-contrast NLO images of unstained spinal cords demonstrate that NLO microscopy has the ability to show the microstructure of white and grey matter including ventral horn, intermediate area, dorsal horns, ventral column, lateral column and dorsal column. Neurons with various sizes were identified in grey matter by dark spots of nonfluorescent nuclei encircled by cytoplasm-emitting two-photon excited fluorescence signals. Nerve fibres and neuroglias were observed in white matter. Besides, the spinal arteries were clearly presented by NLO microscopy. Using spectral and morphological information, this technique was proved to be an effective tool for label-freely imaging spinal cord tissues, based on endogenous signals in biological tissue. With future development, we foresee promising applications of the NLO technique for in vivo, real-time assessment of spinal cord diseases or injures.

摘要

脊髓是大脑与身体之间的重要连接,主要由神经元、神经胶质细胞和神经纤维组成。在这项工作中,基于组织固有特性的非线性光学(NLO)显微镜被用于在分子水平上对脊髓中的细胞和基质进行无标记分析。未染色脊髓的高分辨率和高对比度NLO图像表明,NLO显微镜能够显示白质和灰质的微观结构,包括腹角、中间区域、背角、腹侧柱、外侧柱和背侧柱。在灰质中,通过被发射双光子激发荧光信号的细胞质包围的非荧光细胞核的暗点识别出了各种大小的神经元。在白质中观察到了神经纤维和神经胶质。此外,NLO显微镜清晰地呈现了脊髓动脉。利用光谱和形态学信息,该技术被证明是一种基于生物组织内源性信号对脊髓组织进行无标记成像的有效工具。随着未来的发展,我们预见NLO技术在脊髓疾病或损伤的体内实时评估方面具有广阔的应用前景。

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