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Legends: Link to a Model Reference cited by multiple papers


Holthoff K, Tsay D, Yuste R (2002) Calcium dynamics of spines depend on their dendritic location. Neuron 33:425-37 [PubMed]

References and models cited by this paper

References and models that cite this paper

Anwar H, Roome CJ, Nedelescu H, Chen W, Kuhn B, De Schutter E (2014) Dendritic diameters affect the spatial variability of intracellular calcium dynamics in computer models. Front Cell Neurosci 8:168 [Journal] [PubMed]
   Calcium dynamics depend on dendritic diameters (Anwar et al. 2014) [Model]
Badoual M, Zou Q, Davison AP, Rudolph M, Bal T, Fr├ęgnac Y, Destexhe A (2006) Biophysical and phenomenological models of multiple spike interactions in spike-timing dependent plasticity. Int J Neural Syst 16:79-97 [Journal] [PubMed]
   Biophysical and phenomenological models of spike-timing dependent plasticity (Badoual et al. 2006) [Model]
Cornelisse LN, van Elburg RA, Meredith RM, Yuste R, Mansvelder HD (2007) High speed two-photon imaging of calcium dynamics in dendritic spines: consequences for spine calcium kinetics and buffer capacity. PLoS One 2:e1073 [Journal] [PubMed]
   Determinants of fast calcium dynamics in dendritic spines and dendrites (Cornelisse et al. 2007) [Model]
Crook SM, Dur-E-Ahmad M, Baer SM (2007) A model of activity-dependent changes in dendritic spine density and spine structure. Math Biosci Eng 4:617-31 [Journal] [PubMed]
   Activity dependent changes in dendritic spine density and spine structure (Crook et al. 2007) [Model]
Manninen T, Hituri K, Kotaleski JH, Blackwell KT, Linne ML (2010) Postsynaptic signal transduction models for long-term potentiation and depression. Front Comput Neurosci 4:152 [Journal] [PubMed]
Tsay D, Yuste R (2002) Role of dendritic spines in action potential backpropagation: a numerical simulation study. J Neurophysiol 88:2834-45 [Journal] [PubMed]
(6 refs)