De Schutter E, Smolen P. (1998). Calcium dynamics in large neuronal models Methods In Neuronal Modeling: From Ions To Networks.
Denizot A, Arizono M, Nägerl UV, Soula H, Berry H. (2019). Simulation of calcium signaling in fine astrocytic processes: Effect of spatial properties on spontaneous activity. PLoS computational biology. 15 [PubMed]
Dormanns K, Brown RG, David T. (2016). The role of nitric oxide in neurovascular coupling. Journal of theoretical biology. 394 [PubMed]
Dormanns K, van Disseldorp EM, Brown RG, David T. (2015). Neurovascular coupling and the influence of luminal agonists via the endothelium. Journal of theoretical biology. 364 [PubMed]
Dupont G, Berridge MJ, Goldbeter A. (1991). Signal-induced Ca2+ oscillations: properties of a model based on Ca(2+)-induced Ca2+ release. Cell calcium. 12 [PubMed]
Friel DD. (1995). [Ca2+]i oscillations in sympathetic neurons: an experimental test of a theoretical model. Biophysical journal. 68 [PubMed]
Lavrentovich M, Hemkin S. (2008). A mathematical model of spontaneous calcium(II) oscillations in astrocytes. Journal of theoretical biology. 251 [PubMed]
Riera J, Hatanaka R, Ozaki T, Kawashima R. (2011). Modeling the spontaneous Ca2+ oscillations in astrocytes: Inconsistencies and usefulness. Journal of integrative neuroscience. 10 [PubMed]
Sterratt DC, Graham B, Gillies A, Willshaw D. (2011). Principles of Computational Modelling in Neuroscience, Cambridge University Press.
Vasalou C, Henson MA. (2010). A multiscale model to investigate circadian rhythmicity of pacemaker neurons in the suprachiasmatic nucleus. PLoS computational biology. 6 [PubMed]
Wiesner TF, Berk BC, Nerem RM. (1996). A mathematical model of cytosolic calcium dynamics in human umbilical vein endothelial cells. The American journal of physiology. 270 [PubMed]