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American Journal of Botany|June 4, 2011
Do epidermal lens cells facilitate the absorptance of diffuse light?Craig R Brodersen, Thomas C VogelmannThe New Phytologist|August 22, 2006
Photosynthesis within isobilateral Eucalyptus pauciflora leavesJohn R Evans, Thomas C VogelmannPhotochemistry and Photobiology|July 23, 2003
Ultraviolet radiation and the snow alga Chlamydomonas nivalis (Bauer) WilleHolly L Gorton, Thomas C VogelmannPlant Physiology|July 15, 2003
Photoacoustic analysis indicates that chloroplast movement does not alter liquid-phase CO2 diffusion in leaves of Alocasia brisbanensisHolly L Gorton, Stephen K Herbert, Thomas C VogelmannPhotosynthesis Research|May 16, 2006
A photoacoustic method for rapid assessment of temperature effects on photosynthesisStephen K Herbert, Karl Y Biel, Thomas C VogelmannProceedings of the National Academy of Sciences of the United States of America|January 9, 2003
Surface gas-exchange processes of snow algaeWilliam E Williams, Holly L Gorton, Thomas C VogelmannJournal of Experimental Botany|April 26, 2008
The influence of epidermal windows on the light environment within the leaves of six succulentsKathryn J Egbert, Craig E Martin, Thomas C VogelmannJournal of Experimental Botany|July 26, 2008
Optical effects of abaxial anthocyanin on absorption of red wavelengths by understorey species: revisiting the back-scatter hypothesisNicole M Hughes, Thomas C Vogelmann, William K SmithFunctional Plant Biology : FPB|July 22, 2020
Anthocyanin influence on light absorption within juvenile and senescing sugar maple leaves - do anthocyanins function as photoprotective visible light screens?Abby K van den Berg, Thomas C Vogelmann, Timothy D PerkinsPhysiologia Plantarum|September 5, 2002
Profiles of photosynthesis within red and green leaves of Quintinia serrataKevin S Gould, Thomas C Vogelmann, Tao Han, et al.Pageof 2