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High speed handheld multiphoton multifoci microscopy

机译:高速手持式多光子多焦点显微镜

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For the last decade, multiphoton excitation fluorescence microscopy has found numerous applications in biology, Multiphoton microscopy provides several advantages over conventional fluorescence microscopy, including increased penetration depth, unproved signal-to-background ratio, and reduced photodamage. Despite its suitability for tissue imaing, multiphoton microscopy has not been used for in-vivo clinical applications due to its lack of portability and its F imaging speed. Multiphoton microscopy has recently been improved with the development of high speed imaging systems and handheld devices. High speed imaging has been achieved by simultaneously exciting multiple foci in the specimen, known as multiphoton multifocal microscopy (MMM). Compact devices have been developed by combining fiber optic delivery and miniaturized scanning devices. We have developed a handheld device for high speed multiphoton microscopy based on optical fiber delivery, multifoci excitation/detection and a novel scanner. Our system is designed to be sufficiently compact such that it can be used for in vivo clinical imaging, or optical biopsy with potential applications in dermal, cervical and colorectal cancer diagnosis. The power available from a typical Ti:sapphire laser is fully utilized by using multifoci excitation; this results in reduced image acquisition time. Femtosecond pulses from a Ti:sapphire laser are delivered to our system through conventional optical fiber. We realize multifoci excitation with a microlens array, and multifoci detection with a multi-anode PMT. A high bandwidth tip tilt mirror is further used as the scanning element for high speed imaging. The feasibility of this handheld MMM is demonstrated by measuring the performance of major components individually. This work is supported by NIH R33 CA091354.
机译:在过去的十年中,MultioHoton激发荧光显微镜发现了许多在生物学中的应用,多光子显微镜提供了与常规荧光显微镜的若干优点,包括增加的渗透深度,未经制剂的信号 - 背景比和降低的光电模数。尽管它适用于组织植入,但由于其缺乏可移植性及其成像速度,多光子显微镜尚未用于体内临床应用。随着高速成像系统和手持设备的开发,最近已经改进了多选显微镜显微镜。通过在样本中同时激发多个焦点来实现高速成像,称为Multiboton多焦点显微镜(MMM)。通过将光纤输送和小型化扫描装置组合来开发紧凑的装置。我们已经开发了一种基于光纤输送,多焦电激励/检测和新型扫描仪的高速多光子显微镜的手持设备。我们的系统设计得足够紧凑,使得它可以用于体内临床成像,或光学活组织检查,具有皮肤,宫颈和结直肠癌诊断的潜在应用。通过典型Ti提供的功率:通过使用多焦油激励充分利用了蓝宝石激光器;这导致图像采集时间降低。来自TI的飞秒脉冲:通过传统光纤将蓝宝石激光送到我们的系统。我们用微透镜阵列实现多焦点激发,以及用多阳极PMT进行多焦点检测。高带宽尖端倾斜镜进一步用作高速成像的扫描元件。通过单独测量主要部件的性能,证明了该手持式MMM的可行性。 NIH R33 CA091354支持此工作。

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