Pages that link to "Robust Multi-Layer Control Systems for Cooperative Cellular Behaviors"
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				The following pages link to Robust Multi-Layer Control Systems for Cooperative Cellular Behaviors:
Displayed 5 items.
- Projects  (← links)
- Admin/Projects  (← links)
- DARPA BioCon (redirect page)  (← links)
- Ania Baetica  (← links)
- Anandh Swaminathan  (← links)
- Mark Prator  (← links)
- Samuel Clamons  (← links)
- Victoria Hsiao  (← links)
- James Parkin  (← links)
- Reed McCardell  (← links)
- Xinying (Cindy) Ren  (← links)
- Andrey Shur  (← links)
- Admin/Group members  (← links)
- SURF 2017  (← links)
- Population regulation in microbial consortia using dual feedback control  (← links)
- Quantitative Modeling of Integrase Dynamics Using a Novel Python Toolbox for Parameter Inference in Synthetic Biology  (← links)
- AFOSR BRI, DARPA BioCon  (← links)
- Andrew Halleran  (← links)
- Leopold Green  (← links)
- Cell-free and in vivo characterization of Lux, Las, and Rpa quorum activation systems in E. coli  (← links)
- SURF 2018  (← links)
- Hard Limits And Performance Tradeoffs In A Class Of Sequestration Feedback Systems  (← links)
- Control of bacterial population density with population feedback and molecular sequestration  (← links)
- Single day construction of multi-gene circuits with 3G assembly  (← links)
- Long-distance communication in synthetic bacterial consortia through active signal propagation  (← links)
- Chelsea Hu  (← links)
- SURF 2019  (← links)
- Model of Paradoxical Signaling Regulated T-Cell Population Control for Design of Synthetic Circuits  (← links)
- Cooperation Enhances Robustness of Coexistence in Spatially Structured Consortia  (← links)
- Role of interaction network topology in controlling microbial population in consortia  (← links)
- Guidelines for Designing the Antithetic Feedback Motif  (← links)
- Michaelle Mayalu  (← links)
- Ayush Pandey  (← links)
- Control of density and composition in an engineered two-member bacterial community  (← links)
- An automated model reduction tool to guide the design and analysis of synthetic biological circuits  (← links)
- Design of a genetic layered feedback controller in synthetic biological circuitry  (← links)
- Bacterial Controller Aided Wound Healing: A Case Study in Dynamical Population Controller Design  (← links)
- Model Reduction Tools For Phenomenological Modeling of Input-Controlled Biological Circuits  (← links)
- Theoretical Design of Paradoxical Signaling-Based Synthetic Population Control Circuit in E. coli  (← links)
- A geometric and structural approach to the analysis and design of biological circuit dynamics: a theory tailored for synthetic biology  (← links)
- Layered Feedback Control Improves Robust Functionality across Heterogeneous Cell Populations  (← links)
- BioCRNpyler: Compiling chemical reaction networks from biomolecular parts in diverse contexts  (← links)
- A two-state ribosome and protein model can robustly capture the chemical reaction dynamics of gene expression  (← links)
- Synthetic mammalian signaling circuits for robust cell population control  (← links)
- Robustness Guarantees for Structured Model Reduction of Dynamical Systems  (← links)
- Layered Feedback Control Overcomes Performance Trade-Off in Synthetic Biomolecular Networks  (← links)
- Michael Elowitz  (← links)
- Niles Pierce  (← links)
- John Doyle  (← links)
 
- Admin/Collaborators  (← links)
- Collaborators  (← links)

