Chen Xiao, Zhang Xiaoyu, Zhong Qiuyuan, Sun Qingtao, Peng Jie, Gong Hui, Yuan Jing
Collaborative Innovation Center for Biomedical Engineering, Wuhan National Laboratory for Optoelectronics-Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.
Britton Chance Center and MOE Key Laboratory for Biomedical Photonics, School of Engineering Sciences, Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.
Biomed Opt Express. 2017 Dec 18;9(1):230-244. doi: 10.1364/BOE.9.000230. eCollection 2018 Jan 1.
Acquiring an accurate orientation reference is a prerequisite for precisely analysing the morphological features of Golgi-stained neurons in the whole brain. However, the same reflective imaging contrast of Golgi staining for morphology and Nissl staining for cytoarchitecture leads to the failure of distinguishing soma morphology and simultaneously co-locate cytoarchitecture. Here, we developed the dual-mode micro-optical sectioning tomography (dMOST) method to simultaneously image the reflective and fluorescent signals in three dimensions. We evaluated the feasibility of real-time fluorescent counterstaining on Golgi-stained brain tissue. With our system, we acquired whole-brain data sets of physiological and pathological Golgi-stained mouse model brains with fluorescence-labelled anatomical annotation at single-neuron resolution. We also obtained the neuronal morphology of macaque monkey brain tissue using this method. The results show that real-time acquisition of the co-located cytoarchitecture reference in the same brain greatly facilitates the precise morphological analysis of Golgi-stained neurons.
获取准确的定向参考是精确分析全脑高尔基染色神经元形态特征的前提条件。然而,高尔基染色用于形态学和尼氏染色用于细胞构筑的反射成像对比度相同,导致无法区分胞体形态并同时对细胞构筑进行共定位。在此,我们开发了双模式微光学切片断层扫描(dMOST)方法,以在三维空间中同时成像反射和荧光信号。我们评估了对高尔基染色脑组织进行实时荧光复染的可行性。利用我们的系统,我们以单神经元分辨率获取了生理和病理高尔基染色小鼠模型脑的全脑数据集,并带有荧光标记的解剖学注释。我们还用此方法获得了猕猴脑组织的神经元形态。结果表明,在同一大脑中实时获取共定位的细胞构筑参考极大地促进了高尔基染色神经元的精确形态分析。