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A CARS solution with high temporal resolution

机译:具有高时间分辨率的CARS解决方案

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Confocal and multiphoton microscopy are powerful fluorescence techniques for morphological and dynamics studies of labeled elements. For non-fluorescent components, CARS (Coherent Anti-Stokes Raman Scattering) microscopy can be used for imaging various elements of cells such as lipids, proteins, DNA, etc. This technique is based on the intrinsic vibrational properties of the molecules. Leica Microsystems has combined CARS technology with its TCS SP5 II confocal microscope to provide several advantages for CARS imaging. The Leica TCS CARS combines two technologies in one system: a conventional scanner for maximum accuracy and a resonant scanner for highly time resolved imaging. For CARS microscopy, two picosecond near-infrared lasers are overlapped tightly, spatially and temporally, and sent directly into the confocal system. The conventional scanner can be used for morphological studies and the resonant scanner for following dynamic processes of unstained living cells. The fast scanner has several advantages over other solutions. First, the sectioning is truly confocal and does not suffer from spatial leakage. Second, the high speed (29 images/sec @ 512×512 pixels) provides fast data acquisition at video rates, allowing studies at the sub-cellular level. In summary, CARS microscopy combined with the tandem scanner makes the Leica TCS CARS a powerful tool for multi-modal and three-dimensional imaging of chemical and biological sample.
机译:共聚焦和多光子显微镜是用于标记元素的形态学和动力学研究的强大荧光技术。对于非荧光成分,可以使用CARS(相干反斯托克斯拉曼散射)显微镜对细胞的各种元素(如脂质,蛋白质,DNA等)进行成像。该技术基于分子的固有振动特性。徕卡显微系统公司将CARS技术与其TCS SP5 II共焦显微镜相结合,为CARS成像提供了许多优势。徕卡TCS CARS在一个系统中结合了两项技术:传统扫描仪可实现最高精确度,而共振扫描仪可实现高分辨时间成像。对于CARS显微镜,两个皮秒的近红外激光在空间和时间上紧密重叠,并直接发送到共聚焦系统中。常规扫描仪可用于形态研究,共振扫描仪可用于追踪未染色活细胞的动态过程。与其他解决方案相比,快速扫描仪具有多个优势。首先,该切片是真正共焦的,不会遭受空间泄漏。其次,高速(29幅图像/秒@ 512×512像素)提供了视频速率下的快速数据采集,可进行亚细胞水平的研究。总而言之,CARS显微镜与串联扫描仪相结合,使Leica TCS CARS成为用于化学和生物样品的多模式和三维成像的强大工具。

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