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Chemical sectioning fluorescence tomography: high-throughput, high-contrast, multicolor, whole-brain imaging at subcellular resolution

机译:化学切片荧光断层扫描:高通量,高对比度,多色,亚细胞分辨率的全脑成像

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A thorough neuroanatomical study of the brain architecture is crucial for understanding its cellular compositions, connections, and working mechanisms. However, the fine- and multiscale features of neuron structures make it challenging for microscopic imaging, as it requires high contrast and high throughput simultaneously. Here, we propose chemical sectioning fluorescence tomography (CSFT) to solve this problem. By chemically switching OFF/ON the fluorescent state of the labeled proteins (FPs), we light only the top layer as thin as submicron for imaging without background interference. Combined with the wide-field fluorescence micro-optical sectioning tomography (fMOST) system, we have shown multicolor CSFT imaging. We also demonstrate mouse whole-brain imaging at the subcellular resolution, as well as the power for quantitative acquisition of synaptic-connection-related pyramidal dendritic spines and axon boutons on the brain-wide scale at the complete single-neuron level. We believe that the CSFT method would greatly facilitate our understanding of the brain-wide neuron networks.
机译:对大脑建筑的彻底神经解剖学研究对于理解其细胞组合物,连接和工作机制至关重要。然而,神经元结构的细小和多尺度特征使其对微观成像进行挑战,因为它需要高对比度和高吞吐量。在这里,我们提出了化学切片荧光断层扫描(CSFT)来解决这个问题。通过在标记蛋白(FPS)的荧光状态下进行化学切断/上,我们只能轻,如亚微米的顶层,用于成像,没有背景干扰。结合宽野荧光微光学切片断层扫描(最小)系统,我们已经显示了多色CSFT成像。我们还在亚细胞分辨率下展示了鼠标全脑成像,以及在完整的单神经元水平的脑范围内定量采集突触连接相关的金字塔形树枝状刺和轴突前部的能力。我们相信CSFT方法将极大地促进我们对脑拓神经元网络的理解。

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