Physical Review Letters · 2007 · 86 citations · 18 references
We compare the plasma and cavitation dynamics underlying pulsed laser microsurgery in water and in fruit fly embryos (in vivo)--specifically for nanosecond pulses at 355 and 532 nm. We find two key differences. First, the plasma-formation thresholds are lower in vivo--especially at 355 nm--due to the presence of endogenous chromophores that serve as additional sources for plasma seed electrons. Second, the biological matrix constrains the growth of laser-induced cavitation bubbles. Both effects reduce the disrupted region in vivo when compared to extrapolations from measurements in water.
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Mechanisms of femtosecond laser nanosurgery of cells and tissues
Alfred Vogel, J. Noack, Gereon Hüttman et al. · Applied Physics B · 2005 · 1.4K citations
Intracellular Oxidation-Reduction States in Vivo
Britton Chance, Peter Cohen, Frans F. Jöbsis et al. · Science · 1962 · 945 citations
Low Oxygen Concentrations, Intracellular Oxidation-reduction States, Redox Biology +17