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Label-free in vivo imaging of myelinated axons inhealth and disease with spectral confocal reflectance microscopy

机译:髓鞘轴突的无标记体内成像共聚焦反射显微镜观察健康和疾病

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摘要

We report a new technique for high-resolution in vivo imaging of myelinated axons in the brain, spinal cord and peripheral nerve that requires no fluorescent labeling. This method, based on spectral confocal reflectance microscopy (SCoRe), uses a conventional laser scanning confocal system to generate images by merging the simultaneously reflected signals from multiple lasers of different wavelengths. Striking color patterns unique to individual myelinated fibers are generated that facilitate their tracing in dense axonal areas. These patterns highlight nodes of Ranvier and Schmidt-Lanterman incisures and can be used to detect various myelin pathologies. Using SCoRe we performed chronic brain imaging up to 400 μm deep, capturing for the first time de novo myelination of mouse cortical axons in vivo. We also established the feasibility of imaging myelinated axons in the human cerebral cortex. SCoRe adds a powerful component to the evolving toolbox for imaging myelination in living animals and potentially in humans.
机译:我们报告了一种新的技术,无需荧光标记即可在脑,脊髓和周围神经中对髓鞘轴突进行高分辨率的体内成像。该方法基于光谱共聚焦反射显微镜(SCoRe),使用常规的激光扫描共聚焦系统通过合并来自不同波长的多个激光器的同时反射的信号来生成图像。产生了单个有髓纤维特有的醒目的颜色图案,有助于在密集的轴突区域中进行描绘。这些模式突出显示了Ranvier和Schmidt-Lanterman事件的结点,可用于检测各种髓磷脂病状。使用SCoRe,我们进行了深度达400μm的慢性脑成像,首次捕获了小鼠皮质轴突的新生髓鞘。我们还确定了在人类大脑皮层中对髓鞘轴突进行成像的可行性。 SCoRe在不断发展的工具箱中添加了强大的组件,可对活体动物和潜在人类的髓鞘成像进行成像。

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