Multiphoton confocal microscopy using a femtosecond Cr:forsterite laser.
نویسندگان
چکیده
With its output wavelength covering the infrared penetrating window of most biological tissues at 1,200-1,250 nm, the femtosecond Cr:forsterite laser shows high potential to serve as an excellent excitation source for the multiphoton fluorescence microscope. Its high output power, short optical pulse width, high stability, and low dispersion in fibers make it a perfect replacement for the currently widely used Ti:sapphire laser. In this paper, we study the capability of using a femtosecond Cr:forsterite laser in multiphoton scanning microscopy. We have performed the multiphoton excited photoluminescence spectrum measurement on several commonly used bioprobes using the 1,230 nm femtosecond pulses from a Cr:forsterite laser. Efficient fluorescence can be easily observed in these bioprobes through two-photon or three-photon excitation processes. These results will assist in the selection of dichroic beam splitter and band pass filters in a multiphoton microscopic system. We have also performed the autofluorescence spectrum measurement from chlorophylls in live leaves of the plant Arabidopsis thaliana excited by 1,230 nm femtosecond pulses from the Cr:forsterite laser. Bright luminescence from chlorophyll, centered at 673 and 728 nm, respectively, can be easily observed. Taking advantage of the bright two-photon photoluminescence from chlorophyll, we demonstrated the two-photon scanning paradermal and cross-sectional images of palisade mesophyll cells in live leaves of Arabidopsis thaliana.
منابع مشابه
Beam-scanning Multiphoton Multimodality Endoscopy
Two-photon-exciter fluorescence (2PEF) imaging and second-harmonic generation (SHG) microscopy has become well-established techniques for biomedical imaging [1]. Integration of fibers into the multiphoton microscopy system further enables in vivo and noninvasive investigation of biological samples. Nonetheless the broadening of ultrashort pulses in fibers has greatly hampered the development of...
متن کاملSingle-wavelength reflected confocal and multiphoton microscopy for tissue imaging.
Both reflected confocal and multiphoton microscopy can have clinical diagnostic applications. The successful combination of both modalities in tissue imaging enables unique image contrast to be achieved, especially if a single laser excitation wavelength is used. We apply this approach for skin and corneal imaging using the 780-nm output of a femtosecond, titanium-sapphire laser. We find that t...
متن کاملMultiple Features over Broad Wavelength Range Two-photon Microscopy/multimodal Imaging: Femtosecond Laser Developments Advance Two-photon Imaging
Multiphoton microscopy (also known by such names as multiphoton excitation fluorescence microscopy, twophoton laser scanning microscopy, and nonlinear microscopy), a technique valued for its ability to penetrate deep into living tissue, has experienced rapid growth recently. This growth has been driven in part by advances in the laser technology that is at the heart of the technique: Major deve...
متن کاملUnilateral rainbow glare after uncomplicated femto-LASIK using the FS-200 femtosecond laser.
PURPOSE To report a case of rainbow glare following femtosecond laser-assisted LASIK (femto-LASIK) with the Wavelight FS-200 femtosecond laser (Alcon Laboratories, Inc., Fort Worth, TX). METHODS A patient was treated bilaterally for myopia with femto-LASIK using the FS-200 femtosecond laser. Postoperatively, he complained of rainbow glare in his right eye. RESULTS Three months postoperative...
متن کاملConfocal microscopy of a femtosecond laser LASIK flap before separation.
PURPOSE To describe stromal changes after a femtosecond laser laser-assisted in situ keratomileusis (LASIK) flap was created but not separated. DESIGN Case report. METHODS As part of a randomized paired-eye study comparing LASIK flap creation by a femtosecond laser to a mechanical microkeratome, a femtosecond laser flap was successfully created on one eye of one patient, but the flap was no...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Scanning
دوره 23 4 شماره
صفحات -
تاریخ انتشار 2001