Pages that link to "Q36908363"
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The following pages link to Modeling Ca2 feedback on a single inositol 1,4,5-trisphosphate receptor and its modulation by Ca2 buffers (Q36908363):
Displaying 20 items.
- Calcium signals driven by single channel noise (Q27334750) (← links)
- Developmental profile of localized spontaneous Ca(2 ) release events in the dendrites of rat hippocampal pyramidal neurons (Q30528844) (← links)
- Understanding calcium waves and sparks in central neurons (Q30657673) (← links)
- Intra-cluster percolation of calcium signals (Q33533346) (← links)
- A simple sequential-binding model for calcium puffs (Q33678032) (← links)
- Frequency and relative prevalence of calcium blips and puffs in a model of small IP₃R clusters (Q33736477) (← links)
- The influence of Ca²⁺ buffers on free [Ca²⁺] fluctuations and the effective volume of Ca²⁺ microdomains. (Q33804028) (← links)
- Calcium domains around single and clustered IP3 receptors and their modulation by buffers (Q33954345) (← links)
- Multi-scale data-driven modeling and observation of calcium puffs (Q34297923) (← links)
- Termination of Ca² release for clustered IP₃R channels (Q34302116) (← links)
- Unitary Ca2 current through recombinant type 3 InsP3 receptor channels under physiological ionic conditions (Q34368469) (← links)
- Inositol 1,4,5-trisphosphate receptors in the endoplasmic reticulum: A single-channel point of view. (Q35691086) (← links)
- Emergence of ion channel modal gating from independent subunit kinetics (Q37247653) (← links)
- Targeting and clustering of IP3 receptors: key determinants of spatially organized Ca2 signals. (Q37607171) (← links)
- Exact stochastic simulation of a calcium microdomain reveals the impact of Ca²⁺ fluctuations on IP₃R gating (Q42036098) (← links)
- Stochastic fire-diffuse-fire model with realistic cluster dynamics. (Q42758107) (← links)
- Stochastic contribution for the coding of agonist induced calcium oscillation in hepatocytes (Q51011853) (← links)
- Stochastic simulation of calcium microdomains in the vicinity of an L-type calcium channel (Q51616451) (← links)
- Simulation of calcium signaling in fine astrocytic processes: Effect of spatial properties on spontaneous activity (Q92697475) (← links)
- IP3 mediated global Ca2 signals arise through two temporally and spatially distinct modes of Ca2 release (Q94584369) (← links)