Differences in hydraulic architecture account for near‐isohydric and anisohydric behaviour of two field‐grown Vitis vinifera L. cultivars during drought HR Schultz Plant, Cell & Environment 26 (8), 1393-1405, 2003 | 757 | 2003 |
Climate change and viticulture: A European perspective on climatology, carbon dioxide and UV-B effects. Invited Review Paper. HR Schultz Australian Journal of Grape and Wine Research 6, 2-12, 2000 | 616 | 2000 |
A review of the potential climate change impacts and adaptation options for European viticulture JA Santos, H Fraga, AC Malheiro, J Moutinho-Pereira, LT Dinis, C Correia, ... Applied Sciences 10 (9), 3092, 2020 | 449 | 2020 |
Phenologic and growth responses to early and late season water deficits in Cabernet franc. MA Mattthews, MM Anderson, HR Schultz Vitis 26, 147-160, 1987 | 360 | 1987 |
Climate induced historic and future changes in viticulture HR Schultz, GV Jones Journal of wine research 21 (2-3), 137-145, 2010 | 282 | 2010 |
Some critical issues in environmental physiology of grapevines: future challenges and current limitations HR Schultz, M Stoll Australian Journal of Grape and Wine Research 16, 4-24, 2010 | 245 | 2010 |
Modelling the seasonal dynamics of the soil water balance of vineyards E Lebon, V Dumas, P Pieri, HR Schultz Functional Plant Biology 30 (6), 699-710, 2003 | 233 | 2003 |
Water relations and photosynthetic responses of two grapevine cultivars of different geographical origin during water stress HR Schultz Strategies to Optimize Wine Grape Quality 427, 251-266, 1995 | 217 | 1995 |
Changes in European winegrape phenology and relationships with climate. GV Jones, E Duchêne, D Tomasi, J Yuste, O Braslavska, H Schultz, ... | 199 | 2005 |
Why climate change will not dramatically decrease viticultural suitability in main wine-producing areas by 2050 C Van Leeuwen, HR Schultz, I Garcia de Cortazar-Atauri, E Duchêne, ... Proceedings of the National Academy of Sciences 110 (33), E3051-E3052, 2013 | 174 | 2013 |
Resistance to Water Transport in Shoots of Vitis vinifera L. Relation to Growth at Low Water Potential HR Schultz, MA Matthews Plant Physiology 88 (3), 718-724, 1988 | 170 | 1988 |
Field evaluation of water transport in grape berries during water deficits MD Greenspan, HR Schultz, MA Matthews Physiologia Plantarum 97 (1), 55-62, 1996 | 166 | 1996 |
Xylem development and hydraulic conductance in sun and shade shoots of grapevine (Vitis vinifera L.): evidence that low light uncouples water transport capacity from leaf area HR Schultz, MA Matthews Planta 190 (3), 393-406, 1993 | 166 | 1993 |
Growth, osmotic adjustment, and cell‐wall mechanics of expanding grape leaves during water deficits HR Schultz, MA Matthews Crop science 33 (2), 287-294, 1993 | 148 | 1993 |
Vegetative growth distribution during water deficits in Vitis vinifera L HR Schultz, MA Matthews Functional Plant Biology 15 (5), 641-656, 1988 | 133 | 1988 |
A model analysis of the photosynthetic response of Vitis vinifera L. cvs Riesling and Chasselas leaves in the field: I. Interaction of age, light and temperature V Zufferey, F Murisier, HR Schultz VITIS-GEILWEILERHOF- 39 (1), 19-26, 2000 | 129 | 2000 |
An empirical model for the simulation of leaf appearance and leaf area development of primary shoots of several grapevine (Vitis vinifera L.) canopy-systems HR Schultz Scientia Horticulturae 52 (3), 179-200, 1992 | 125 | 1992 |
Global climate change, sustainability, and some challenges for grape and wine production HR Schultz Journal of Wine Economics 11 (1), 181-200, 2016 | 122 | 2016 |
Grape canopy structure, light microclimate and photosynthesis. I. A two-dimensional model of the spatial distribution of surface area densities and leaf ages in two canopy systems HR Schultz Vitis-Geilweilerhof- 34, 211-216, 1995 | 115 | 1995 |
Early pathogen detection under different water status and the assessment of spray application in vineyards through the use of thermal imagery M Stoll, HR Schultz, G Baecker, B Berkelmann-Loehnertz Precision agriculture 9, 407-417, 2008 | 101 | 2008 |