Research Interests:
• Multidimensional light microscopy
• Advanced non-invasive optical methods to probe living cells
• Three-dimensional structural dynamical processes
• Polarised light imaging
• Optical fibre sensors
Current Projects:
• Quantitative polarization phase microscopy: a new tool for advances in structural analysis and biophotonics - Structural and micromechanical quantitative assessment of collagen in arteries
• Confocal immunofluorescence imaging of unfixed single muscle fibres – A novel approach
• Next generation equipment for compression garment assessment.
Outreach
• partnering with Scientists in Schools (http://www.scientistsinschools.edu.au/)
• regular presentations during National Science Week ( http://www.vu.edu.au/news/spectacular-light-and-laser-show-beamed-across-victoria)
• Regular use of the Optics Suitcase kindly provided by Rochester OSA: http://www.osarochester.org/education.html
• Multidimensional light microscopy
• Advanced non-invasive optical methods to probe living cells
• Three-dimensional structural dynamical processes
• Polarised light imaging
• Optical fibre sensors
Current Projects:
• Quantitative polarization phase microscopy: a new tool for advances in structural analysis and biophotonics - Structural and micromechanical quantitative assessment of collagen in arteries
• Confocal immunofluorescence imaging of unfixed single muscle fibres – A novel approach
• Next generation equipment for compression garment assessment.
Outreach
• partnering with Scientists in Schools (http://www.scientistsinschools.edu.au/)
• regular presentations during National Science Week ( http://www.vu.edu.au/news/spectacular-light-and-laser-show-beamed-across-victoria)
• Regular use of the Optics Suitcase kindly provided by Rochester OSA: http://www.osarochester.org/education.html
Three parameter measurement using a single fiber Bragg grating inscribed in Er3+: Yb3+-codoped fiber
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