A test of the computer simulation model ARCWHEAT1 on wheat crops grown in New Zealand
P.D. Jamieson;J.R. Porter;D.R. Wilson.
Field Crops Research (1991)
724 Citations
Sirius: a mechanistic model of wheat response to environmental variation
P.D. Jamieson;M.A. Semenov;I.R. Brooking;G.S. Francis.
European Journal of Agronomy (1998)
441 Citations
Modeling Grain Nitrogen Accumulation and Protein Composition to Understand the Sink/Source Regulations of Nitrogen Remobilization for Wheat
Pierre Martre;John R. Porter;Peter D. Jamieson;Eugène Triboï.
Plant Physiology (2003)
384 Citations
Simulated wheat growth affected by rising temperature, increased water deficit and elevated atmospheric CO2
S. Asseng;P.D. Jamieson;B. Kimball;P. Pinter.
Field Crops Research (2004)
376 Citations
A comparison of the models AFRCWHEAT2, CERES-Wheat, Sirius, SUCROS2 and SWHEAT with measurements from wheat grown under drought
P.D. Jamieson;J.R. Porter;J. Goudriaan;J.T. Ritchie.
Field Crops Research (1998)
373 Citations
Modelling nitrogen uptake and redistribution in wheat
P.D. Jamieson;M.A. Semenov.
Field Crops Research (2000)
277 Citations
Effects of elevated CO2 and drought on wheat: testing crop simulation models for different experimental and climatic conditions
F Ewert;D Rodriguez;P Jamieson;M.A Semenov.
Agriculture, Ecosystems & Environment (2002)
244 Citations
Prediction of leaf appearance in wheat: a question of temperature
P.D. Jamieson;I.R. Brooking;J.R. Porter;D.R. Wilson.
Field Crops Research (1995)
230 Citations
Effect of soil temperature on phenology, canopy development, biomass and yield of maize in a cool-temperate climate
P.J. Stone;I.B. Sorensen;P.D. Jamieson.
Field Crops Research (1999)
218 Citations
Modelling protein content and composition in relation to crop nitrogen dynamics for wheat
Pierre Martre;Peter D. Jamieson;Mikhail A. Semenov;Robert F. Zyskowski.
European Journal of Agronomy (2006)
215 Citations