[Re] Fast-Activating Voltage- and Calcium-Dependent Potassium (BK) Conductance Promotes Bursting in Pituitary Cells: A Dynamic Clamp Study
A replication of a pituitary-cell conductance model, with uncertainty quantification identified in source keywords.
External publication. Published by its original venue; not published in our journal.
Which bursting summary is robust to a prespecified parameter-uncertainty grid and solver refinement?
Independently compute bursting criteria from trajectories and distinguish parameter sensitivity, numerical error and experimental uncertainty.
What you could produce
- Versioned protocol, input and environment manifest, and independent per-case comparison table including uncertainty and incomplete cases.
Before you use it
- Exact article-specific dependencies, data and build requirements remain uninspected.
Limits to keep in view
- No research code was executed; no independent scientific verification has been performed.
- The current qualified pilot is self-contained Python 3.13 with a 90-second author deadline. This article's environment has not been qualified for that path.
- Published source metadata and a historical review do not establish compatibility, successful reproduction, operator independence or current scientific correctness.
Source and permission context
Tennøe, Simen; Hodne, Kjetil; Haug, Trude M.; Weltzien, Finn-Arne; Einevoll, Gaute T.; Halnes, Geir. [Re] Fast-Activating Voltage- and Calcium-Dependent Potassium (BK) Conductance Promotes Bursting in Pituitary Cells: A Dynamic Clamp Study. ReScience 5(1), #2; 10.5281/zenodo.2611252.
Rights need review. Review the scope and upstream conditions before reuse.
manuscript · CC-BY-4.0
The exact Zenodo record cited by the journal declares cc-by-4.0; the journal separately identifies published manuscripts as CC BY. This records manuscript rights, not separate code/data licenses or archive contents.
Inspect the license evidence ↗Still unresolved
- The associated code's exact license and version-specific third-party notices have not been independently checked.
- Data licenses, permissions, consent restrictions and redistribution conditions have not been independently checked.
- Artifacts are referenced only; PDF/archive contents, dependency locks and bytes have not been inspected or executed.