Explores MEMS resonators for single cell studies and cellphone communications, discussing fabrication, mass measurements, and transduction-induced heating.
Explores the mechanobiology of cell growth, focusing on essential components, force curve-based sample characterization, and the impact of turgor pressure on growth.
Introduces fundamental aspects of living beings, biochemistry, and cell biology, emphasizing the importance of macromolecules, molecular evolution, and metabolism.
Explores proximity-specific ribosome profiling and translational dynamics with high resolution, covering translation in different cells and the ER's role in protein synthesis.
Delves into synthetic biology, assembling molecular components for biological functions in living cells, including gene expression control and engineered receptor signaling.