Rising atmospheric CO2 and human nutrition: toward globally imbalanced plant stoichiometry? I Loladze Trends in Ecology & Evolution 17 (10), 457-461, 2002 | 483 | 2002 |
Hidden shift of the ionome of plants exposed to elevated CO2 depletes minerals at the base of human nutrition I Loladze elife 3, e02245, 2014 | 454 | 2014 |
Carbon dioxide (CO2) levels this century will alter the protein, micronutrients, and vitamin content of rice grains with potential health consequences for the poorest … C Zhu, K Kobayashi, I Loladze, J Zhu, Q Jiang, X Xu, G Liu, S Seneweera, ... Science advances 4 (5), eaaq1012, 2018 | 453 | 2018 |
Stoichiometry in producer-grazer systems: linking energy flow with element cycling I Loladze, Y Kuang, JJ Elser Bulletin of Mathematical Biology 62 (6), 1137-1162, 2000 | 291 | 2000 |
The origins of the Redfield nitrogen‐to‐phosphorus ratio are in a homoeostatic protein‐to‐rRNA ratio I Loladze, JJ Elser Ecology letters, 2011 | 233 | 2011 |
Competition and stoichiometry: coexistence of two predators on one prey I Loladze, Y Kuang, JJ Elser, WF Fagan Theoretical population biology 65 (1), 1-15, 2004 | 160* | 2004 |
Rising atmospheric CO2 is reducing the protein concentration of a floral pollen source essential for North American bees LH Ziska, JS Pettis, J Edwards, JE Hancock, MB Tomecek, A Clark, ... Proceedings of the Royal Society B: Biological Sciences 283 (1828), 20160414, 2016 | 136 | 2016 |
Ch. 7: Food safety, nutrition, and distribution L Ziska, A Crimmins, A Auclair, S DeGrasse, JF Garofalo, AS Khan, ... The impacts of climate change on human health in the United States: a …, 2016 | 80 | 2016 |
Climate Change, Crop Yields, and Grain Quality of C3 Cereals: A Meta-Analysis of [CO2], Temperature, and Drought Effects S Ben Mariem, D Soba, B Zhou, I Loladze, F Morales, I Aranjuelo Plants 10 (6), 1052, 2021 | 73 | 2021 |
Down‐regulation of tissue N:P ratios in terrestrial plants by elevated CO2 Q Deng, D Hui, Y Luo, J Elser, YP Wang, I Loladze, Q Zhang, S Dennis Ecology 96 (12), 3354-3362, 2015 | 68 | 2015 |
Dynamics of a mechanistically derived stoichiometric producer-grazer model H Wang, Y Kuang, I Loladze Journal of Biological Dynamics 2 (3), 286-296, 2008 | 67 | 2008 |
Biodiversity, habitat area, resource growth rate and interference competition Y Kuang, WF Fagan, I Loladze Bulletin of mathematical biology 65 (3), 497-518, 2003 | 64 | 2003 |
Elevated atmospheric CO2 concentrations and climate change will affect our food's quality and quantity KL Ebi, I Loladze The Lancet Planetary Health 3 (7), e283-e284, 2019 | 60 | 2019 |
Lotka re-loaded: Modeling trophic interactions under stoichiometric constraints JJ Elser, I Loladze, AL Peace, Y Kuang Ecological Modelling 245, 3-11, 2012 | 59 | 2012 |
Rising Atmospheric CO2 Lowers Concentrations of Plant Carotenoids Essential to Human Health: A Meta‐Analysis I Loladze, JM Nolan, LH Ziska, AR Knobbe Molecular nutrition & food research 63 (15), 1801047, 2019 | 47 | 2019 |
Nutritional quality of crops in a high CO2 world: an agenda for research and technology development KL Ebi, CL Anderson, JJ Hess, SH Kim, I Loladze, RB Neumann, D Singh, ... Environmental Research Letters 16 (6), 064045, 2021 | 44 | 2021 |
A stoichiometric producer-grazer model incorporating the effects of excess food-nutrient content on consumer dynamics A Peace, Y Zhao, I Loladze, JJ Elser, Y Kuang Mathematical Biosciences 244 (2), 107-115, 2013 | 41 | 2013 |
Revisiting the growth rate hypothesis: Towards a holistic stoichiometric understanding of growth J Isanta‐Navarro, C Prater, LM Peoples, I Loladze, T Phan, PD Jeyasingh, ... Ecology letters 25 (10), 2324-2339, 2022 | 26 | 2022 |
Competitive coexistence in stoichiometric chaos B Deng, I Loladze Chaos: An Interdisciplinary Journal of Nonlinear Science 17 (3), 2007 | 25 | 2007 |
Dynamics of a stoichiometric discrete producer-grazer model M Fan, I Loladze, Y Kuang, JJ Elser Journal of Difference Equations and Applications 11 (4-5), 347-364, 2005 | 25 | 2005 |