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Modelling of electrical activi...
Čujuhandieđut
Deakstadieđáhus
Sádde šleađgaboasttain
Čálit
Doalvvo čujuhusa
Doalvun: RefWorks
Doalvun: EndNoteWeb
Doalvun: EndNote
Bissovaš liŋka
Modelling of electrical activity in pancreatic islets: The role of a novel K-Ca-channel.
Bibliográfalaš dieđut
Váldodahkkit:
Galvanovskis, J
,
Gopel, S
,
Rorsman, P
Materiálatiipa:
Journal article
Almmustuhtton:
2000
Oažžasuvvandieđut
Govvádus
Geahča maid
Bargiidšearbma
Govvádus
Čoahkkáigeassu:
Geahča maid
Gap junction conductance in pancreatic islets
Dahkki: Gopel, S, et al.
Almmustuhtton: (2000)
Activation of Ca(2+)-dependent K(+) channels contributes to rhythmic firing of action potentials in mouse pancreatic beta cells.
Dahkki: Göpel, S, et al.
Almmustuhtton: (1999)
Activation of Ca2+-dependent K+ channels contributes to rhythmic firing of action potentials in mouse pancreatic beta cells
Dahkki: Gopel, S, et al.
Almmustuhtton: (1999)
Voltage-gated and resting membrane currents recorded from B-cells in intact mouse pancreatic islets.
Dahkki: Göpel, S, et al.
Almmustuhtton: (1999)
Activation of Ca2+-activated K+-conductance terminates the burst of action potentials in insulin-secreting pancreatic B-cells
Dahkki: Gopel, S, et al.
Almmustuhtton: (1998)