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Tree Physiology
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October 3, 2023
Physiological and phenological adjustments in water and carbon fluxes of Aleppo pine forests under contrasting climates in the Eastern Mediterranean
Nikos Markos, Yakir Preisler, Kalliopi Radoglou, et al.
Plant, Cell & Environment
|
May 14, 2025
Tree Growth, Contraction and Recovery: Disentangling Soil and Atmospheric Drought Effects
Erez Feuer, Yakir Preisler, Eyal Rotenberg, et al.
The New Phytologist
|
September 18, 2021
Evidence for efficient nonevaporative leaf-to-air heat dissipation in a pine forest under drought conditions
Jonathan D Muller, Eyal Rotenberg, Fyodor Tatarinov, et al.
Tree Physiology
|
November 30, 2012
Differential ecophysiological response of a major Mediterranean pine species across a climatic gradient
Tamir Klein, Giovanni Di Matteo, Eyal Rotenberg, et al.
Plant, Cell & Environment
|
February 16, 2023
Detailed in situ leaf energy budget permits the assessment of leaf aerodynamic resistance as a key to enhance non-evaporative cooling under drought
Jonathan D Muller, Eyal Rotenberg, Fyodor Tatarinov, et al.
Scientific Reports
|
January 19, 2018
Large-scale semi-arid afforestation can enhance precipitation and carbon sequestration potential
Gil Yosef, Robert Walko, Roni Avisar, et al.
The New Phytologist
|
March 23, 2016
Resilience to seasonal heat wave episodes in a Mediterranean pine forest
Fedor Tatarinov, Eyal Rotenberg, Kadmiel Maseyk, et al.
PNAS Nexus
|
November 29, 2023
Photovoltaic fields largely outperform afforestation efficiency in global climate change mitigation strategies
Rafael Stern, Jonathan D Muller, Eyal Rotenberg, et al.
The New Phytologist
|
March 12, 2008
Physiology-phenology interactions in a productive semi-arid pine forest
Kadmiel S Maseyk, Tongbao Lin, Eyal Rotenberg, et al.
Oecologia
|
May 4, 2005
Association between tree-ring and needle delta13C and leaf gas exchange in Pinus halepensis under semi-arid conditions
Tamir Klein, Deborah Hemming, Tongbao Lin, et al.
Page
of 3
Search research articles
Search
Showing results (11-20 of 28) with videos related to
Sort By:
Page
of 3
Tree Physiology
|
October 3, 2023
Physiological and phenological adjustments in water and carbon fluxes of Aleppo pine forests under contrasting climates in the Eastern Mediterranean
Nikos Markos, Yakir Preisler, Kalliopi Radoglou, et al.
Plant, Cell & Environment
|
May 14, 2025
Tree Growth, Contraction and Recovery: Disentangling Soil and Atmospheric Drought Effects
Erez Feuer, Yakir Preisler, Eyal Rotenberg, et al.
The New Phytologist
|
September 18, 2021
Evidence for efficient nonevaporative leaf-to-air heat dissipation in a pine forest under drought conditions
Jonathan D Muller, Eyal Rotenberg, Fyodor Tatarinov, et al.
Tree Physiology
|
November 30, 2012
Differential ecophysiological response of a major Mediterranean pine species across a climatic gradient
Tamir Klein, Giovanni Di Matteo, Eyal Rotenberg, et al.
Plant, Cell & Environment
|
February 16, 2023
Detailed in situ leaf energy budget permits the assessment of leaf aerodynamic resistance as a key to enhance non-evaporative cooling under drought
Jonathan D Muller, Eyal Rotenberg, Fyodor Tatarinov, et al.
Scientific Reports
|
January 19, 2018
Large-scale semi-arid afforestation can enhance precipitation and carbon sequestration potential
Gil Yosef, Robert Walko, Roni Avisar, et al.
The New Phytologist
|
March 23, 2016
Resilience to seasonal heat wave episodes in a Mediterranean pine forest
Fedor Tatarinov, Eyal Rotenberg, Kadmiel Maseyk, et al.
PNAS Nexus
|
November 29, 2023
Photovoltaic fields largely outperform afforestation efficiency in global climate change mitigation strategies
Rafael Stern, Jonathan D Muller, Eyal Rotenberg, et al.
The New Phytologist
|
March 12, 2008
Physiology-phenology interactions in a productive semi-arid pine forest
Kadmiel S Maseyk, Tongbao Lin, Eyal Rotenberg, et al.
Oecologia
|
May 4, 2005
Association between tree-ring and needle delta13C and leaf gas exchange in Pinus halepensis under semi-arid conditions
Tamir Klein, Deborah Hemming, Tongbao Lin, et al.
Page
of 3