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High-resolution single-cell imaging for functional studies in the whole brain and spinal cord and thick tissue blocks using light-emitting diode illumination

机译:高分辨率单细胞成像使用发光二极管照明在整个大脑和脊髓以及厚组织块中进行功能性研究

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摘要

Functional studies of neuronal networks require recordings from visually identified neurons in their natural environment, preservation of which may demand experimenting with a tissue of a significant depth or the entire brain. Here we describe a new technique of single-cell imaging and visually controlled patch-clamp recordings in both brain slices of unlimited thickness and the whole brain or spinal cord preparations with a cut upper surface. It utilizes an upright microscope and ultra bright light-emitting diodes (LEDs) as a source of oblique illumination. This technique provided high quality images of superficial cells regardless of slice thickness or the presence of opaque structures, like metal plate or bone, below the tissue, when conventional differential interference contrast (DIC) optics became powerless. The technique opens broad possibilities for a single-cell imaging and visually guided recordings from intact neuronal networks in the entire brain or spinal cord.
机译:对神经元网络的功能研究需要在其自然环境中从视觉上识别的神经元记录下来,对其进行保存可能需要对相当深度的组织或整个大脑进行实验。在这里,我们描述了一种单细胞成像和视觉控制的膜片钳记录的新技术,该技术既可以无限厚度的脑片,也可以通过切开上表面的方式来进行全脑或脊髓制剂的治疗。它利用立式显微镜和超亮发光二极管(LED)作为倾斜照明源。当传统的微分干涉对比(DIC)光学器件变得无能为力时,无论切片厚度或组织下方是否存在不透明结构(如金属板或骨头),该技术均能提供浅层细胞的高质量图像。该技术为来自整个大脑或脊髓中完整神经网络的单细胞成像和视觉引导的记录打开了广阔的可能性。

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