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This episode features a conversation with renowned scientist Dr. Levin who shares exciting updates from his lab’s groundbreaking work. Focusing on understanding and controlling complex pattern formation, Dr. Levin’s team explores the fascinating crossroads of molecular genetics, biophysics, and computational modeling.
The Levin lab operates at the forefront of scientific exploration, working with organisms such as frogs, flatworms, zebrafish, and even human tissues in culture. Their projects traverse a wide range of topics including regeneration, embryogenesis, cancer, and learning plasticity – all seen as instances of how cellular networks process information.
Dr. Levin's aim extends beyond just deciphering the necessary molecular mechanisms for morphogenesis. He is on a quest to unravel and harness the cooperative signaling dynamics that enable complex bodies to build and remodel themselves toward a correct structure in spite of unpredictable environmental disruptions.
This episode offers a deep dive into the quest to understand how individual cell behaviors are orchestrated toward appropriate large-scale outcomes, providing listeners with a glimpse into the future of biophysics and molecular genetics.
Keywords: Dr. Levin, Bioelectricity, Basal Cognition, Molecular Genetics, Biophysics, Computational Modeling, Pattern Formation, Regeneration, Embryogenesis, Cancer, Learning Plasticity, Cellular Networks, Morphogenesis.
By Catarina CunhaThis episode features a conversation with renowned scientist Dr. Levin who shares exciting updates from his lab’s groundbreaking work. Focusing on understanding and controlling complex pattern formation, Dr. Levin’s team explores the fascinating crossroads of molecular genetics, biophysics, and computational modeling.
The Levin lab operates at the forefront of scientific exploration, working with organisms such as frogs, flatworms, zebrafish, and even human tissues in culture. Their projects traverse a wide range of topics including regeneration, embryogenesis, cancer, and learning plasticity – all seen as instances of how cellular networks process information.
Dr. Levin's aim extends beyond just deciphering the necessary molecular mechanisms for morphogenesis. He is on a quest to unravel and harness the cooperative signaling dynamics that enable complex bodies to build and remodel themselves toward a correct structure in spite of unpredictable environmental disruptions.
This episode offers a deep dive into the quest to understand how individual cell behaviors are orchestrated toward appropriate large-scale outcomes, providing listeners with a glimpse into the future of biophysics and molecular genetics.
Keywords: Dr. Levin, Bioelectricity, Basal Cognition, Molecular Genetics, Biophysics, Computational Modeling, Pattern Formation, Regeneration, Embryogenesis, Cancer, Learning Plasticity, Cellular Networks, Morphogenesis.