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  1. Quantitative In Vivo Fluorescence Cross-Correlation Analyses Highlight the Importance of Competitive Effects in the Regulation of Protein-Protein Interactions
  2. Development of a FRET Biosensor with High Specificity for Akt
  3. Stochastic ERK Activation Induced by Noise and Cell-to-Cell Propagation Regulates Cell Density-Dependent Proliferation
  4. A Quantitative Model of ERK MAP Kinase Phosphorylation in Crowded Media
  5. Fluorescence resonance energy transfer imaging of cell signaling fromin vitrotoin vivo: Basis of biosensor construction, live imaging, and image processing
  6. Stable expression of FRET biosensors: A new light in cancer research
  7. Visualization of Protein Kinase Activities in Living Cells
  8. SH3BP1, an Exocyst-Associated RhoGAP, Inactivates Rac1 at the Front to Drive Cell Motility
  9. Spatiotemporal Regulation of Small GTPases as Revealed by Probes Based on the Principle of Förster Resonance Energy Transfer (FRET): Implications for Signaling and Pharmacology
  10. Visualization of small GTPase activity with fluorescence resonance energy transfer-based biosensors
  11. Quantification of Local Morphodynamics and Local GTPase Activity by Edge Evolution Tracking
  12. FRET imaging and in silico simulation: analysis of the signaling network of nerve growth factor-induced neuritogenesis
  13. GTP Hydrolysis by the Rho Family GTPase TC10 Promotes Exocytic Vesicle Fusion
  14. Monitoring spatio-temporal regulation of Ras and Rho GTPases with GFP-based FRET probes
  15. FRET imaging in nerve growth cones reveals a high level of RhoA activity within the peripheral domain