31 results on '"Bertram, Richard"'
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2. Multi-layer Bundling as a New Approach for Determining Multi-scale Correlations Within a High-Dimensional Dataset
3. A mechanism for slow rhythms in coordinated pancreatic islet activity
4. Gain of function mutation in K(ATP) channels and resulting upregulation of coupling conductance are partners in crime in the impairment of Ca2+ oscillations in pancreatic ß-cells
5. A mathematical study of the efficacy of possible negative feedback pathways involved in neuronal polarization
6. Endocrine Cell Function and Dysfunction
7. Fast-slow analysis as a technique for understanding the neuronal response to current ramps
8. Oscillations in K(ATP) conductance drive slow calcium oscillations in pancreatic β-cells
9. Oscillations in delayed positive feedback systems.
10. Slow oscillations persist in pancreatic beta cells lacking phosphofructokinase M
11. A closed-loop multi-scale model for intrinsic frequency-dependent regulation of axonal growth
12. Information on Oral Temperature is More Robustly Encoded Than Taste in Neurons of the Mouse Gustatory Cortex
13. Population bursts in a modular neural network as a mechanism for synchronized activity in KNDy neurons.
14. Conversion of spikers to bursters in pituitary cell networks: Is it better to disperse for maximum exposure or circle the wagons?
15. KATP channel activity and slow oscillations in pancreatic beta cells are regulated by mitochondrial ATP production
16. Deconstructing the integrated oscillator model for pancreatic β-cells
17. Ca2+ Release or Ca2+ Entry, that is the Question: What Governs Ca2+ Oscillations in Pancreatic Beta Cells?
18. Multi-layer gene bundling: A new approach to gene clustering
19. Deconstructing the integrated oscillator model for pancreatic [formula omitted]-cells
20. KATP channel activity and slow oscillations in pancreatic beta cells are regulated by mitochondrial ATP production.
21. Active licking shapes cortical taste coding
22. Network Properties of Electrically Coupled Bursting Pituitary Cells
23. Ca2+ release or Ca2+ entry, that is the question: what governs Ca2+ oscillations in pancreatic β cells?
24. Canards Underlie Both Electrical and Ca$^{2+}$-Induced Early Afterdepolarizations in a Model for Cardiac Myocytes
25. Chronic stress facilitates bursting electrical activity in pituitary corticotrophs
26. Symbiosis of Electrical and Metabolic Oscillations in Pancreatic β-Cells
27. Canards Underlie Both Electrical and Ca2+-Induced Early Afterdepolarizations in a Model for Cardiac Myocytes.
28. Chronic stress facilitates bursting electrical activity in pituitary corticotrophs.
29. Cortical Coding of Gustatory and Thermal Signals in Active Licking Mice.
30. K ATP channel activity and slow oscillations in pancreatic beta cells are regulated by mitochondrial ATP production.
31. Ca 2+ release or Ca 2+ entry, that is the question: what governs Ca 2+ oscillations in pancreatic β cells?
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