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David Basler
David Basler
Harvard University OEB
Verified email at fas.harvard.edu
Title
Cited by
Cited by
Year
Phenology under global warming
C Körner, D Basler
Science 327 (5972), 1461-1462, 2010
11392010
Photoperiod sensitivity of bud burst in 14 temperate forest tree species
D Basler, C Körner
Agricultural and forest Meteorology 165, 73-81, 2012
3702012
Where, why and how? Explaining the low‐temperature range limits of temperate tree species
C Körner, D Basler, G Hoch, C Kollas, A Lenz, CF Randin, Y Vitasse, ...
Journal of Ecology 104 (4), 1076-1088, 2016
2322016
Photoperiod and temperature responses of bud swelling and bud burst in four temperate forest tree species
D Basler, C Körner
Tree physiology 34 (4), 377-388, 2014
2252014
What role for photoperiod in the bud burst phenology of European beech
Y Vitasse, D Basler
European Journal of Forest Research 132, 1-8, 2013
2222013
Evaluating phenological models for the prediction of leaf-out dates in six temperate tree species across central Europe
D Basler
Agricultural and Forest Meteorology 217, 10-21, 2016
1782016
An integrated phenology modelling framework in r
K Hufkens, D Basler, T Milliman, EK Melaas, AD Richardson
Methods in Ecology and Evolution 9 (5), 1276-1285, 2018
1712018
Is the use of cuttings a good proxy to explore phenological responses of temperate forests in warming and photoperiod experiments?
Y Vitasse, D Basler
Tree Physiology 34 (2), 174-183, 2014
1012014
Tree species traits determine the success of LiDAR-based crown mapping in a mixed temperate forest
JH Hastings, SV Ollinger, AP Ouimette, R Sanders-DeMott, MW Palace, ...
Remote Sensing 12 (2), 309, 2020
642020
Precipitation isotope time series predictions from machine learning applied in Europe
DB Nelson, D Basler, A Kahmen
Proceedings of the National Academy of Sciences 118 (26), e2024107118, 2021
472021
Latitude and weather influences on sun light quality and the relationship to tree growth
C Chiang, JE Olsen, D Basler, D Bånkestad, G Hoch
Forests 10 (8), 610, 2019
422019
TreeNet–the biological drought and growth indicator network
R Zweifel, S Etzold, D Basler, R Bischoff, S Braun, N Buchmann, ...
Frontiers in Forests and Global Change 4, 776905, 2021
272021
Root water uptake depth determines the hydraulic vulnerability of temperate European tree species during the extreme 2018 drought
A Kahmen, D Basler, G Hoch, RM Link, B Schuldt, C Zahnd, M Arend
Plant Biology 24 (7), 1224-1239, 2022
262022
Networking the forest infrastructure towards near real-time monitoring–a white paper
R Zweifel, C Pappas, RL Peters, F Babst, D Balanzategui, D Basler, ...
Science of the Total Environment 872, 162167, 2023
252023
Developmental changes in the reflectance spectra of temperate deciduous tree leaves and implications for thermal emissivity and leaf temperature
AD Richardson, DM Aubrecht, D Basler, K Hufkens, CD Muir, L Hanssen
New Phytologist 229 (2), 791-804, 2021
222021
Flux Puppy–An open-source software application and portable system design for low-cost manual measurements of CO2 and H2O fluxes
MS Carbone, B Seyednasrollah, TT Rademacher, D Basler, JM Le Moine, ...
Agricultural and Forest Meteorology 274, 1-6, 2019
222019
Using direct phloem transport manipulation to advance understanding of carbon dynamics in forest trees
TT Rademacher, D Basler, AH Eckes-Shephard, P Fonti, AD Friend, ...
Frontiers in Forests and Global Change 2, 11, 2019
212019
Warming, photoperiods, and tree phenology response
C Korner, D Basler
Science 329 (5989), 278-278, 2010
112010
The Wood Image Analysis and Dataset (WIAD): Open‐access visual analysis tools to advance the ecological data revolution
T Rademacher, B Seyednasrollah, D Basler, J Cheng, T Mandra, E Miller, ...
Methods in Ecology and Evolution 12 (12), 2379-2387, 2021
102021
Response—Warming, photoperiods, and tree phenology
C Körner, D Basler
Science 329 (5989), 278-278, 2010
102010
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