Enrichment and low-level determination of glyphosate, aminomethylphosphonic acid and glufosinate in drinking water after cleanup by cation exchange resin. | J Sep Sci | 2010 Apr | 20183819 |
Pea (Pisum sativum) seed production as an assay for reproductive effects due toherbicides. | Environ Toxicol Chem | 2009 Sep | 19413364 |
Simulating the evolution of glyphosate resistance in grains farming in northernAustralia. | Ann Bot | 2009 Sep | 19567415 |
[Effects of aerial applications of the herbicide glyphosate and insecticides onhuman health]. | Biomedica | 2009 Sep | 20436997 |
New approaches for determination of glyphosate and aminomethylphosphonic acidfrom different tea samples--prospects and limits of cleanup with molecularlyimprinted polymer and titanium dioxide. | J AOAC Int | 2009 May-Jun | 19610358 |
Determination of organophosphorus pesticides by capillaryelectrophoresis-inductively coupled plasma mass spectrometry with collectivesample-introduction technique. | Electrophoresis | 2009 May | 19391145 |
A cocktail of contaminants: how mixtures of pesticides at low concentrations affect aquatic communities. | Oecologia | 2009 Mar | 19002502 |
Soil depth and tillage effects on glyphosate degradation. | J Agric Food Chem | 2009 Jun 10 | 19408929 |
Decontamination of aqueous glyphosate, (aminomethyl)phosphonic acid, andglufosinate solutions by electro-fenton-like process with Mn2+ as the catalyst. | J Agric Food Chem | 2009 Jun 10 | 19438208 |
Nontarget mechanims involved in glyphosate tolerance found in Canavaliaensiformis plants. | J Agric Food Chem | 2009 Jun 10 | 19432449 |