Abstract
AbstractLight microscopy is a powerful tool that allows for many types of samples to be examined in a rapid, easy, and nondestructive manner. Subsequent image analysis, however, is compromised by distortion of signal by instrument optics. Deconvolution of images prior to analysis allows for the recovery of lost information by procedures that utilize either a theoretically or experimentally calculated point spread function (PSF). Using a laser scanning confocal microscope (LSCM), we have imaged whole impact tracks of comet particles captured in silica aerogel, a low density, porous SiO2 solid, by the NASA Stardust mission. In order to understand the dynamical interactions between the particles and the aerogel, precise grain location and track volume measurement are required. We report a method for measuring an experimental PSF suitable for three-dimensional deconvolution of imaged particles in aerogel. Using fluorescent beads manufactured into Stardust flight-grade aerogel, we have applied a deconvolution technique standard in the biological sciences to confocal images of whole Stardust tracks. The incorporation of an experimentally measured PSF allows for better quantitative measurements of the size and location of single grains in aerogel and more accurate measurements of track morphology.
Publisher
Cambridge University Press (CUP)
Reference17 articles.
1. Three-dimensional textural and compositional analysis of particle tracks and fragmentation history in aerogel
2. LIFE: Life Investigation For EnceladusA Sample Return Mission Concept in Search for Evidence of Life
3. Aerogel track morphology: Measurement, three dimensional reconstruction, and particle location using confocal laser scanning microscopy;Kearsley;Lunar Planet Sci,2007
4. Measurement of optical parameters of aerogel
5. SVI (2014). SVI-wiki on 3D microscopy, deconvolution, visualization, and analysis. Available at http://www.svi.nl/FrontPage (accessed November 14, 2014).
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