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Leica solution: CARS microscopy at video rates

机译:徕卡解决方案:视频录像的CARS显微镜

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Confocal and multiphoton microscopy are powerful techniques to study morphology and dynamics in cells and tissue, if fluorescent labeling is possible or autofluorescence is strong. For non-fluorescent molecules, Coherent anti-Stokes Raman scattering (CARS) microscopy provides chemical contrast based on intrinsic and highly specific vibrational properties of molecules eliminating the need for labeling. Just as other multiphoton techniques, CARS microscopy possesses three-dimensional sectioning capabilities. Leica Microsystems has combined the CARS imaging technology with its TCS SP5 confocal microscope to provide several advantages for CARS imaging. For CARS microscopy, two picosecond near-infrared lasers are overlapped spatially and temporally and sent into the scanhead of the confocal system. The software allows programmed, automatic switching between these light sources for multi-modal imaging. Furthermore the Leica TCS SP5 can be equipped with a non-descanned detector which will significantly enhance the signal. The Leica TCS SP5 scanhead combines two technologies in one system: a conventional scanner for maximum resolution and a resonant scanner for high time resolution. The fast scanner allows imaging speeds as high as 25 images/per second at a resolution of 512 × 512 pixel. This corresponds to true video-rate allowing to follow processes at these time-scales as well as the acquisition of three-dimensional stacks in a few seconds. This time resolution is critical to study live animals or human patients for which heart beat and muscle movements lead to a blurring of the image if the acquisition time is high. Furthermore with the resonant scanhead the sectioning is truly confocal and does not suffer from spatial leakage. In summary, CARS microscopy combined with the tandem scanner makes the Leica TCS SP5 a powerful tool for three-dimensional, label-free imaging of chemical and biological samples in vitro and in vivo.
机译:如果可以进行荧光标记或自发荧光较强,则共聚焦和多光子显微镜技术是研究细胞和组织中形态和动力学的强大技术。对于非荧光分子,相干抗斯托克斯拉曼散射(CARS)显微镜可根据分子的固有和高度特异性的振动特性提供化学对比,从而无需标记。像其他多光子技术一样,CARS显微镜具有三维切片功能。徕卡显微系统公司将CARS成像技术与其TCS SP5共焦显微镜相结合,为CARS成像提供了许多优势。对于CARS显微镜,两个皮秒的近红外激光在空间和时间上重叠,然后发送到共聚焦系统的扫描头中。该软件允许在这些光源之间进行编程的自动切换,以进行多模式成像。此外,Leica TCS SP5可以配备未扫描的检测器,这将显着增强信号。 Leica TCS SP5扫描头在一个系统中结合了两种技术:用于最大分辨率的传统扫描仪和用于高时间分辨率的共振扫描仪。快速扫描仪可在512×512像素的分辨率下以每秒25张图像的速度进行成像。这对应于真实的视频速率,从而允许在这些时间尺度上跟踪过程,并在几秒钟内获取三维堆栈。此时间分辨率对于研究活体动物或人类患者至关重要,如果采集时间较长,则其心跳和肌肉运动会导致图像模糊。此外,使用共振扫描头,该切片确实是共聚焦的,并且不会遭受空间泄漏。总之,CARS显微镜与串联扫描仪相结合,使Leica TCS SP5成为了在体外和体内对化学和生物样品进行三维无标记成像的强大工具。

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