Shaunak Sen, Ph.D.
Affiliations: | 2011 | Control and Dynamical Systems | California Institute of Technology, Pasadena, CA |
Area:
Gene Circuit Dynamics in Regulation and DifferentiationGoogle:
"Shaunak Sen"Mean distance: 10.69
Parents
Sign in to add mentorMichael B. Elowitz | grad student | 2011 | Caltech | |
(Regulatory consequences of bandpass feedback in a bacterial phosphorelay.) |
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Publications
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Sen S, Patel A, Gola KK. (2022) Design of a Toolbox of RNA Thermometers. Methods in Molecular Biology (Clifton, N.J.). 2518: 125-133 |
Patel A, Sen S. (2020) Experimental evidence for constraints in amplitude-timescale co-variation of a biomolecular pulse generating circuit design. Iet Systems Biology. 14: 217-222 |
Patel A, Murray RM, Sen S. (2020) Assessment of Robustness to Temperature in a Negative Feedback Loop and a Feedforward Loop. Acs Synthetic Biology |
Banerjee S, Sen S. (2020) Robustness of a biomolecular oscillator to pulse perturbations. Iet Systems Biology. 14: 127-132 |
Dey A, Bokka V, Sen S. (2020) Dependence of bacterial growth rate on dynamic temperature changes. Iet Systems Biology. 14: 68-74 |
Joshi SK, Sen S, Kar IN. (2020) Synchronization of Master-Slave Oscillators: Analysis and Experimental Results Ifac-Papersonline. 53: 226-231 |
Patel A, Sen S. (2020) Computational Framework for Design of a Pulse Generating Biomolecular Circuit Ifac-Papersonline. 53: 220-225 |
Bokka V, Dey A, Sen S. (2018) Period-amplitude co-variation in biomolecular oscillators. Iet Systems Biology. 12: 190-198 |
Patel A, Sen S. (2018) Non-normality can facilitate pulsing in biomolecular circuits. Iet Systems Biology. 12: 199-204 |
Dey A, Sen S. (2018) Describing function-based approximations of biomolecular systems. Iet Systems Biology. 12: 93-100 |