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Simon Alamos

Showing results (1-10 of 16) with videos related to

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Nature Plants|May 2, 2022
Noise-cancelling translation syncs cellular clocksSimon Alamos
Science (New York, N.Y.)|August 11, 2022
Synthetic gene circuits take rootSimon Alamos, Patrick M Shih
Plos Biology|July 17, 2023
How to engineer the unknown: Advancing a quantitative and predictive understanding of plant and soil biology to address climate changeSimon Alamos, Patrick M Shih
Nature Plants|August 10, 2021
Quantitative imaging of RNA polymerase II activity in plants reveals the single-cell basis of tissue-wide transcriptional dynamicsSimon Alamos, Armando Reimer, Krishna K Niyogi, et al.
ACS Synthetic Biology|July 30, 2025
Rational Modulation of Plant Root Development Using Engineered Cytokinin RegulatorsRohan Rattan, Simon Alamos, Matthew Szarzanowicz, et al.
Cell|May 15, 2018
LlamaTags: A Versatile Tool to Image Transcription Factor Dynamics in Live EmbryosJacques P Bothma, Matthew R Norstad, Simon Alamos, et al.
Nature Communications|October 27, 2024
Optogenetic dissection of transcriptional repression in a multicellular organismJiaxi Zhao, Nicholas C Lammers, Simon Alamos, et al.
Plos Computational Biology|May 18, 2021
Real-time single-cell characterization of the eukaryotic transcription cycle reveals correlations between RNA initiation, elongation, and cleavageJonathan Liu, Donald Hansen, Elizabeth Eck, et al.
Nature Biotechnology|November 25, 2025
Multiplexed profiling of transcriptional regulators in plant cellsSimon Alamos, Lucas Waldburger, Amanda Dee, et al.
Biology of the Cell|February 2, 2018
Variation in traction forces during cell cycle progressionBenoit Vianay, Fabrice Senger, Simon Alamos, et al.
Pageof 2

Showing results (1-10 of 16) with videos related to

Sort By:
Pageof 2
Nature Plants|May 2, 2022
Noise-cancelling translation syncs cellular clocksSimon Alamos
Science (New York, N.Y.)|August 11, 2022
Synthetic gene circuits take rootSimon Alamos, Patrick M Shih
Plos Biology|July 17, 2023
How to engineer the unknown: Advancing a quantitative and predictive understanding of plant and soil biology to address climate changeSimon Alamos, Patrick M Shih
Nature Plants|August 10, 2021
Quantitative imaging of RNA polymerase II activity in plants reveals the single-cell basis of tissue-wide transcriptional dynamicsSimon Alamos, Armando Reimer, Krishna K Niyogi, et al.
ACS Synthetic Biology|July 30, 2025
Rational Modulation of Plant Root Development Using Engineered Cytokinin RegulatorsRohan Rattan, Simon Alamos, Matthew Szarzanowicz, et al.
Cell|May 15, 2018
LlamaTags: A Versatile Tool to Image Transcription Factor Dynamics in Live EmbryosJacques P Bothma, Matthew R Norstad, Simon Alamos, et al.
Nature Communications|October 27, 2024
Optogenetic dissection of transcriptional repression in a multicellular organismJiaxi Zhao, Nicholas C Lammers, Simon Alamos, et al.
Plos Computational Biology|May 18, 2021
Real-time single-cell characterization of the eukaryotic transcription cycle reveals correlations between RNA initiation, elongation, and cleavageJonathan Liu, Donald Hansen, Elizabeth Eck, et al.
Nature Biotechnology|November 25, 2025
Multiplexed profiling of transcriptional regulators in plant cellsSimon Alamos, Lucas Waldburger, Amanda Dee, et al.
Biology of the Cell|February 2, 2018
Variation in traction forces during cell cycle progressionBenoit Vianay, Fabrice Senger, Simon Alamos, et al.
Pageof 2