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Timothy J Shafer

Showing results (51-60 of 91) with videos related to

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Neurotoxicology|October 1, 2014
Glufosinate binds N-methyl-D-aspartate receptors and increases neuronal network activity in vitroStephen R Lantz, Cina M Mack, Kathleen Wallace, et al.
Neurotoxicology and Teratology|June 30, 2009
Neural progenitor cells as models for high-throughput screens of developmental neurotoxicity: state of the scienceJoseph M Breier, Kathrin Gassmann, Reinier Kayser, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|February 16, 2022
Integrating Data From In Vitro New Approach Methodologies for Developmental NeurotoxicityKelly E Carstens, Amy F Carpenter, Melissa M Martin, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|November 27, 2018
International Regulatory and Scientific Effort for Improved Developmental Neurotoxicity TestingMagdalini Sachana, Anna Bal-Price, Kevin M Crofton, et al.
Neurotoxicology|December 12, 2013
Burst and principal components analyses of MEA data for 16 chemicals describe at least three effects classesCina M Mack, Bryant J Lin, James D Turner, et al.
Toxicology|May 16, 2016
In vitro screening of silver nanoparticles and ionic silver using neural networks yields differential effects on spontaneous activity and pharmacological responsesJenna D Strickland, William R LeFew, James Crooks, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|December 20, 2021
Integrated Omic Analyses Identify Pathways and Transcriptomic Regulators Associated With Chemical Alterations of In Vitro Neural Network FormationCarmen A Marable, Christopher L Frank, Roland F Seim, et al.
Toxicology|August 24, 2025
Development of a multiplexed, high content imaging-based assay for assessing chemical effects on proliferation and apoptosis in human neural progenitor cellsGabrielle Byrd, Theresa M Freudenrich, Seline Choo, et al.
Nanotoxicology|November 24, 2015
In vitro screening of metal oxide nanoparticles for effects on neural function using cortical networks on microelectrode arraysJenna D Strickland, William R Lefew, James Crooks, et al.
Neurotoxicology|April 20, 2010
Microelectrode arrays: a physiologically based neurotoxicity testing platform for the 21st centuryAndrew F M Johnstone, Guenter W Gross, Dieter G Weiss, et al.
Pageof 10

Showing results (51-60 of 91) with videos related to

Sort By:
Pageof 10
Neurotoxicology|October 1, 2014
Glufosinate binds N-methyl-D-aspartate receptors and increases neuronal network activity in vitroStephen R Lantz, Cina M Mack, Kathleen Wallace, et al.
Neurotoxicology and Teratology|June 30, 2009
Neural progenitor cells as models for high-throughput screens of developmental neurotoxicity: state of the scienceJoseph M Breier, Kathrin Gassmann, Reinier Kayser, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|February 16, 2022
Integrating Data From In Vitro New Approach Methodologies for Developmental NeurotoxicityKelly E Carstens, Amy F Carpenter, Melissa M Martin, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|November 27, 2018
International Regulatory and Scientific Effort for Improved Developmental Neurotoxicity TestingMagdalini Sachana, Anna Bal-Price, Kevin M Crofton, et al.
Neurotoxicology|December 12, 2013
Burst and principal components analyses of MEA data for 16 chemicals describe at least three effects classesCina M Mack, Bryant J Lin, James D Turner, et al.
Toxicology|May 16, 2016
In vitro screening of silver nanoparticles and ionic silver using neural networks yields differential effects on spontaneous activity and pharmacological responsesJenna D Strickland, William R LeFew, James Crooks, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|December 20, 2021
Integrated Omic Analyses Identify Pathways and Transcriptomic Regulators Associated With Chemical Alterations of In Vitro Neural Network FormationCarmen A Marable, Christopher L Frank, Roland F Seim, et al.
Toxicology|August 24, 2025
Development of a multiplexed, high content imaging-based assay for assessing chemical effects on proliferation and apoptosis in human neural progenitor cellsGabrielle Byrd, Theresa M Freudenrich, Seline Choo, et al.
Nanotoxicology|November 24, 2015
In vitro screening of metal oxide nanoparticles for effects on neural function using cortical networks on microelectrode arraysJenna D Strickland, William R Lefew, James Crooks, et al.
Neurotoxicology|April 20, 2010
Microelectrode arrays: a physiologically based neurotoxicity testing platform for the 21st centuryAndrew F M Johnstone, Guenter W Gross, Dieter G Weiss, et al.
Pageof 10