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Journal of Environmental Management|October 24, 2022
Conceptual methodological framework for the resilience of biogeochemical services to heavy metals stressVirgil Iordache, Aurora NeagoePlants (Basel, Switzerland)|September 1, 2023
A Commercial Arbuscular Mycorrhizal Inoculum Alleviated the Effects of Acid Water on <i>Lupinus angustifolius</i> Grown in a Sterilized Mining DumpAurora Neagoe, Virgil IordachePlants (Basel, Switzerland)|May 14, 2025
Phytotoxicity Assessment of <i>Solanum lycopersicum</i> L. Seedlings Moderately Irrigated with Non-Thermal Plasma Treated Water Containing SulfamethoxazoleMarius Cicirma, Marius Dumitru, Sergiu Emil Georgescu, et al.Data in Brief|January 1, 2020
Data from experiments with tailing material and Agrostis capillaris at three scales: pot, lysimeter and field plotAurora Neagoe, Paula Constantinescu, Andrei Nicoara, et al.Scientific Reports|December 29, 2019
Soil mite communities (Acari: Mesostigmata, Oribatida) as bioindicators for environmental conditions from polluted soilsMinodora Manu, Viorica Honciuc, Aurora Neagoe, et al.The Science of the Total Environment|September 22, 2019
Implications of spatial heterogeneity of tailing material and time scale of vegetation growth processes for the design of phytostabilisationPaula Constantinescu, Aurora Neagoe, Andrei Nicoară, et al.Environmental Science and Pollution Research International|July 4, 2013
Effects of arbuscular mycorrhizal fungi on Agrostis capillaris grown on amended mine tailing substrate at pot, lysimeter, and field plot scalesAurora Neagoe, Paula Stancu, Andrei Nicoară, et al.Scientific Reports|August 16, 2025
Increasing the fungal inoculation of mine tailings from 1 to 2% decreases plant oxidative stress and increases the soil respiration rateAurora Neagoe, Minodora Manu, Marilena Onete, et al.Environmental Science and Pollution Research International|January 11, 2014
Coupled pot and lysimeter experiments assessing plant performance in microbially assisted phytoremediationAndrei Nicoară, Aurora Neagoe, Paula Stancu, et al.Applied Microbiology and Biotechnology|December 31, 2011
Overexpression of the PHO84 gene causes heavy metal accumulation and induces Ire1p-dependent unfolded protein response in Saccharomyces cerevisiae cellsAugustin Minel Ofiteru, Lavinia Liliana Ruta, Codruta Rotaru, et al.Pageof 2