We have developed a simple wavelength-tunable optical parametric generator (OPG), emitting broadband ultrashort pulses with peak wavelengths at 1530–1790 nm, for nonlinear label-free microscopy. The OPG consists of a periodically poled lithium niobate crystal, pumped at 1064 nm by a ultrafast Yb:fiber laser with high pulse energy. We demonstrate that this OPG can be used for label-free imaging, by third-harmonic generation, of nuclei of brain cells and blood vessels in a >150 μm thick brain tissue section, with very little decay of intensity with imaging depth and no visible damage to the tissue at an incident average power of 15 mW
For centuries, optical microscopy has greatly facilitated our observation and understanding of micro...
We report on a Yb-pumped optical parametric oscillator (OPO) that delivers 30 fs pulses with spectra...
The use of multiphoton microscopy has proven its potential on deep tissue virtual biopsy for early d...
We have developed a simple wavelength tunable optical parametric generator (OPG), emitting broad ban...
We have developed a simple tunable optical parametric generator (OPG), emitting broad band ultrashor...
Z stack of brain tissue. Originally published in Optics Letters on 01 August 2015 (ol-40-15-3484
The ability to visualize neurons inside living brain tissue is a fundamental requirement in neurosci...
We demonstrate a continuous wave (CW) seeded synchronization-free optical parametric amplifier (OPA)...
Routine application of nonlinear microscopy methods in the research laboratory and beyond is depende...
n recent decades, super-resolution optical microscopy has become an attractive research topic that t...
Abstract—Nonlinear microscopy has become widely used in biophotonic imaging. Pulse shaping provides ...
Biomedical Spectroscopy, Microscopy, and Imaging: 9720 - High-Speed Biomedical Imaging and Spectrosc...
Second harmonic generation microscopy is used to image interfaces or non-centrosymmetric structures ...
We report an all-fiberized 1840-nm mode-locked thulium fiber laser seeded chirped-pulse amplificatio...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
For centuries, optical microscopy has greatly facilitated our observation and understanding of micro...
We report on a Yb-pumped optical parametric oscillator (OPO) that delivers 30 fs pulses with spectra...
The use of multiphoton microscopy has proven its potential on deep tissue virtual biopsy for early d...
We have developed a simple wavelength tunable optical parametric generator (OPG), emitting broad ban...
We have developed a simple tunable optical parametric generator (OPG), emitting broad band ultrashor...
Z stack of brain tissue. Originally published in Optics Letters on 01 August 2015 (ol-40-15-3484
The ability to visualize neurons inside living brain tissue is a fundamental requirement in neurosci...
We demonstrate a continuous wave (CW) seeded synchronization-free optical parametric amplifier (OPA)...
Routine application of nonlinear microscopy methods in the research laboratory and beyond is depende...
n recent decades, super-resolution optical microscopy has become an attractive research topic that t...
Abstract—Nonlinear microscopy has become widely used in biophotonic imaging. Pulse shaping provides ...
Biomedical Spectroscopy, Microscopy, and Imaging: 9720 - High-Speed Biomedical Imaging and Spectrosc...
Second harmonic generation microscopy is used to image interfaces or non-centrosymmetric structures ...
We report an all-fiberized 1840-nm mode-locked thulium fiber laser seeded chirped-pulse amplificatio...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
For centuries, optical microscopy has greatly facilitated our observation and understanding of micro...
We report on a Yb-pumped optical parametric oscillator (OPO) that delivers 30 fs pulses with spectra...
The use of multiphoton microscopy has proven its potential on deep tissue virtual biopsy for early d...