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Oecologia|March 18, 2017
A comparison of photosynthesis in two thalloid liverwortsT G A Green, W P SnelgarOecologia|March 18, 2017
Utilisation of pressure-volume techniques and non-linear least squares analysis to investigate site induced stresses in evergreen treesG T Jane, T G A GreenOecologia|March 18, 2017
Pseudocyphellaria dissimilis: a desiccation-sensitive, highly shade-adapted lichen from New ZealandT G A Green, Ellen Kilian, O L LangeOecologia|March 18, 2017
Water status related photosynthesis and carbon isotope discrimination in species of the lichen genusPseudocyphellaria with green or blue-green photobionts and in photosymbiodemesO L Lange, T G A Green, H ZieglerOecologia|March 18, 2017
Monitoring photosynthetic activity of crustose lichens using a PAM-2000 fluorescence systemB Schroeter, T G A Green, R D Seppelt, et al.Oecologia|March 18, 2017
Chlorophyll a fluorescence and CO2 exchange of Umbilicaria aprina under extreme light stress in the coldL Kappen, B Schroeter, T G A Green, et al.American Journal of Botany|March 27, 2012
Isolation and characterization of microsatellites in the lichen Buellia frigida (Physciaceae), an Antarctic endemicTracey C Jones, T G A Green, Ian D Hogg, et al.Oecologia|March 18, 2017
Do secondary substances in the thallus of a lichen promote CO2 diffusion and prevent depression of net photosynthesis at high water content?O L Lange, T G A Green, H Reichenberger, et al.Oecologia|March 18, 2017
Small-scale field mapping of lichen distribution in three dimensions with a computer-based position-tracking systemF D Broom, B N Parkinson, T G A Green, et al.Oecologia|March 18, 2017
Temperate rainforest lichens in New Zealand: high thallus water content can severely limit photosynthetic CO2 exchangeO L Lange, B Büdel, U Heber, et al.Pageof 2