The fluorescence lidar technique for the remote sensing of photoautotrophic biodeteriogens in the outdoor cultural heritage: A decade of in situ experiments

Author:

Raimondi V.,Cecchi G.,Lognoli D.,Palombi L.,Grönlund R.,Johansson A.,Svanberg S.,Barup K.,Hällström J.

Publisher

Elsevier BV

Subject

Waste Management and Disposal,Biomaterials,Microbiology

Reference48 articles.

1. The F685/F730 chlorophyll fluorescence ratio as a tool in plant physiology: response to physiological and environmental factors;Agati;Journal of Plant Physiology,1995

2. Lidar remote sensing of stone cultural heritage: detection of protective treatments;Ballerini;Optical Engineering,2001

3. Phytoplankton monitoring by laser induced fluorescence;Bazzani;EARSeL Advances in Remote Sensing,1992

4. Fungus covered insulator materials studied with laser-induced fluorescence and principal component analysis;Bengtsson;Applied Spectroscopy,2005

5. FLIDAR a multipurpose fluorosensor spectrometer;Breschi;EARSeL Advances in Remote Sensing,1992

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