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Albert Gough

Showing results (11-20 of 34) with videos related to

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SLAS Discovery : Advancing Life Sciences R & D|February 26, 2019
A High-Throughput Assay for DNA Replication Inhibitors Based upon Multivariate Analysis of Yeast Growth KineticsMarilyn Ngo, Nick Wechter, Emily Tsai, et al.
Lab on a Chip|March 27, 2020
Applications of the microphysiology systems database for experimental ADME-Tox and disease modelsMark Schurdak, Lawrence Vernetti, Luke Bergenthal, et al.
Toxicology|December 28, 2020
A 3D microfluidic liver model for high throughput compound toxicity screening in the OrganoPlate®Kristin M Bircsak, Richard DeBiasio, Mark Miedel, et al.
SLAS Discovery : Advancing Life Sciences R & D|May 1, 2020
Development and Optimization of a High-Content Analysis Platform to Identify Suppressors of Lamin B1 Overexpression as a Therapeutic Strategy for Autosomal Dominant LeukodystrophyBruce Nmezi, Laura L Vollmer, Tong Ying Shun, et al.
SLAS Discovery : Advancing Life Sciences R & D|February 24, 2017
Biologically Relevant Heterogeneity: Metrics and Practical InsightsAlbert Gough, Andrew M Stern, John Maier, et al.
Lab on a Chip|September 28, 2023
Modeling mechanisms underlying differential inflammatory responses to COVID-19 in type 2 diabetes using a patient-derived microphysiological organ-on-a-chip systemVinny Negi, Dillon Gavlock, Mark T Miedel, et al.
Toxicology|December 11, 2020
Analysis of reproducibility and robustness of a human microfluidic four-cell liver acinus microphysiology system (LAMPS)Courtney Sakolish, Celeste E Reese, Yu-Syuan Luo, et al.
Nature Communications|July 16, 2020
Spatial domain analysis predicts risk of colorectal cancer recurrence and infers associated tumor microenvironment networksShikhar Uttam, Andrew M Stern, Christopher J Sevinsky, et al.
Handbook of Experimental Pharmacology|June 16, 2019
Harnessing Human Microphysiology Systems as Key Experimental Models for Quantitative Systems PharmacologyD Lansing Taylor, Albert Gough, Mark E Schurdak, et al.
Cell Reports Methods|April 15, 2025
Validation of microphysiological systems for interpreting patient heterogeneity requires robust reproducibility analytics and experimental metadataMark T Miedel, Mahboubeh Varmazyad, Mengying Xia, et al.
Pageof 4

Showing results (11-20 of 34) with videos related to

Sort By:
Pageof 4
SLAS Discovery : Advancing Life Sciences R & D|February 26, 2019
A High-Throughput Assay for DNA Replication Inhibitors Based upon Multivariate Analysis of Yeast Growth KineticsMarilyn Ngo, Nick Wechter, Emily Tsai, et al.
Lab on a Chip|March 27, 2020
Applications of the microphysiology systems database for experimental ADME-Tox and disease modelsMark Schurdak, Lawrence Vernetti, Luke Bergenthal, et al.
Toxicology|December 28, 2020
A 3D microfluidic liver model for high throughput compound toxicity screening in the OrganoPlate®Kristin M Bircsak, Richard DeBiasio, Mark Miedel, et al.
SLAS Discovery : Advancing Life Sciences R & D|May 1, 2020
Development and Optimization of a High-Content Analysis Platform to Identify Suppressors of Lamin B1 Overexpression as a Therapeutic Strategy for Autosomal Dominant LeukodystrophyBruce Nmezi, Laura L Vollmer, Tong Ying Shun, et al.
SLAS Discovery : Advancing Life Sciences R & D|February 24, 2017
Biologically Relevant Heterogeneity: Metrics and Practical InsightsAlbert Gough, Andrew M Stern, John Maier, et al.
Lab on a Chip|September 28, 2023
Modeling mechanisms underlying differential inflammatory responses to COVID-19 in type 2 diabetes using a patient-derived microphysiological organ-on-a-chip systemVinny Negi, Dillon Gavlock, Mark T Miedel, et al.
Toxicology|December 11, 2020
Analysis of reproducibility and robustness of a human microfluidic four-cell liver acinus microphysiology system (LAMPS)Courtney Sakolish, Celeste E Reese, Yu-Syuan Luo, et al.
Nature Communications|July 16, 2020
Spatial domain analysis predicts risk of colorectal cancer recurrence and infers associated tumor microenvironment networksShikhar Uttam, Andrew M Stern, Christopher J Sevinsky, et al.
Handbook of Experimental Pharmacology|June 16, 2019
Harnessing Human Microphysiology Systems as Key Experimental Models for Quantitative Systems PharmacologyD Lansing Taylor, Albert Gough, Mark E Schurdak, et al.
Cell Reports Methods|April 15, 2025
Validation of microphysiological systems for interpreting patient heterogeneity requires robust reproducibility analytics and experimental metadataMark T Miedel, Mahboubeh Varmazyad, Mengying Xia, et al.
Pageof 4