Quantitative second-harmonic generation microscopy in collagen
- 1 September 2003
- journal article
- Published by Optica Publishing Group in Applied Optics
- Vol. 42 (25) , 5209-5219
- https://doi.org/10.1364/ao.42.005209
Abstract
The second-harmonic signal in collagen, even in highly organized samples such as rat tail tendon fascicles, varies significantly with position. Previous studies suggest that this variability may be due to the parallel and antiparallel orientation of neighboring collagen fibrils. We applied high-resolution second-harmonic generation microscopy to confirm this hypothesis. Studies in which the focal spot diameter was varied from ∼1 to ∼6 μm strongly suggest that regions in which collagen fibrils have the same orientation in rat tail tendon are likely to be less than ∼1 μm in diameter. These measurements required accurate determination of the focal spot size achieved by use of different microscope objectives; we developed a technique that uses second-harmonic generation in a quartz reference to measure the focal spot diameter directly. We also used the quartz reference to determine a lower limit (d XXX > 0.4 pm/V) for the magnitude of the second-order nonlinear susceptibility in collagen.Keywords
This publication has 24 references indexed in Scilit:
- Polarization-Modulated Second Harmonic Generation in CollagenBiophysical Journal, 2002
- Three-Dimensional High-Resolution Second-Harmonic Generation Imaging of Endogenous Structural Proteins in Biological TissuesBiophysical Journal, 2002
- Polarization-dependent optical second-harmonic imaging of a rat-tail tendonJournal of Biomedical Optics, 2002
- High resolution nonlinear microscopy: A review of sources and methods for achieving optimal imagingReview of Scientific Instruments, 2001
- Second-harmonic imaging microscopy of living cellsJournal of Biomedical Optics, 2001
- Multiphoton microscopy in life sciencesJournal of Microscopy, 2000
- Collagen structure and nonlinear susceptibility: Effects of heat, glycation, and enzymatic cleavage on second harmonic signal intensityLasers in Surgery and Medicine, 2000
- Frequency doubling of ultrashort laser pulses in biological tissuesApplied Optics, 1999
- Second-harmonic tomography of tissuesOptics Letters, 1997
- Optical harmonic generation from animal tissues by the use of picosecond and femtosecond laser pulsesApplied Optics, 1996