A Bayesian computational approach to explore the optimal duration of a cell proliferation assay

AP Browning, SW McCue, MJ Simpson - Bulletin of Mathematical Biology, 2017 - Springer
Cell proliferation assays are routinely used to explore how a low-density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 h (or longer), a standard cell …

A Bayesian computational approach to explore the optimal duration of a cell proliferation assay

AP Browning, SW McCue, MJ Simpson - bioRxiv, 2017 - biorxiv.org
Cell proliferation assays are routinely used to explore how a low density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 hours (or longer), a …

A Bayesian computational approach to explore the optimal duration of a cell proliferation assay

A Browning, S McCue, M Simpson - Bulletin of Mathematical …, 2017 - eprints.qut.edu.au
Cell proliferation assays are routinely used to explore how a low-density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 h (or longer), a standard cell …

[PDF][PDF] A Bayesian computational approach to explore the optimal duration of a cell proliferation assay.

AP Browning, W Scott - scholar.archive.org
Cell proliferation assays are routinely used to explore how a low density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 hours (or longer), a …

A Bayesian Computational Approach to Explore the Optimal Duration of a Cell Proliferation Assay

AP Browning, SW Mccue… - Bulletin of Mathematical …, 2017 - search.proquest.com
Cell proliferation assays are routinely used to explore how a low-density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 h (or longer), a standard cell …

A Bayesian Computational Approach to Explore the Optimal Duration of a Cell Proliferation Assay.

AP Browning, SW McCue… - Bulletin of Mathematical …, 2017 - europepmc.org
Cell proliferation assays are routinely used to explore how a low-density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 h (or longer), a standard cell …

A Bayesian Computational Approach to Explore the Optimal Duration of a Cell Proliferation Assay

AP Browning, SW McCue… - Bulletin of mathematical …, 2017 - pubmed.ncbi.nlm.nih.gov
Cell proliferation assays are routinely used to explore how a low-density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 h (or longer), a standard cell …

A Bayesian Computational Approach to Explore the Optimal Duration of a Cell Proliferation Assay.

A Browning, S McCue… - Bulletin of Mathematical …, 2017 - search.ebscohost.com
Cell proliferation assays are routinely used to explore how a low-density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 h (or longer), a standard cell …

A Bayesian computational approach to explore the optimal duration of a cell proliferation assay

AP Browning, SW McCue, MJ Simpson - 2017 - europepmc.org
Cell proliferation assays are routinely used to explore how a low density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 hours (or longer), a …

A Bayesian computational approach to explore the optimal duration of a cell proliferation assay

A Browning, S McCue, M Simpson - Bulletin of Mathematical …, 2017 - eprints.qut.edu.au
Cell proliferation assays are routinely used to explore how a low-density monolayer of cells
grows with time. For a typical cell line with a doubling time of 12 h (or longer), a standard cell …