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Updated meta data for ellinwood, koivumaki and sampson
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MichaelClerx committed Sep 4, 2024
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2 changes: 1 addition & 1 deletion c/ellinwood-2017.mmt
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[1] Ellinwood, Dobrev, Morotti, Grandi (2017) Revealing kinetics and
state-dependent binding properties of IKur-targeting drugs that
maximize atrial fibrillation selectivity
maximize atrial fibrillation selectivity. Chaos, 27, 093918
https://doi.org/10.1063/1.5000226

[2] Erratum to [1]
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10 changes: 5 additions & 5 deletions c/koivumaki-2011.mmt
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name: koivumaki-2011
version: 20240904
mmt_authors: Michael Clerx
display_name: Koivumäki et al., 2011
display_name: Koivumäki-Korhonen et al., 2011
desc: """
The 2011 model of the human atrial AP by Koivumäki et al. [1], based on the
earlier model by Nygren et al. [2].
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calculated derivatives. The code can be run to produce an AP similar to
that seen in the original paper.

[1] Koivumäki, J. T, Korhonen, T., & Tavi P. (2011). Impact of Sarcoplasmic
Reticulum Calcium Release on Calcium Dynamics and Action Potential
Morphology in Human Atrial Myocytes: A Computational Study. PLOS
Computational Biology, 7(1), e1001067.
[1] Koivumäki*, J. T, Korhonen*, T., & Tavi P. (2011). Impact of
Sarcoplasmic Reticulum Calcium Release on Calcium Dynamics and Action
Potential Morphology in Human Atrial Myocytes: A Computational Study.
PLOS Computational Biology, 7(1), e1001067.
https://doi.org/10.1371/journal.pcbi.1001067

[2] Nygren, A., Fiset, C., Firek, L., Clark, J. W., Lindblad, D. S., Clark,
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4 changes: 2 additions & 2 deletions c/sampson-2010.mmt
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name: sampson-2010
version: 20240904
mmt_authors: Michael Clerx
display_name: Sampson et al., 2024
display_name: Sampson-Iyer et al., 2024
desc: """
The 2010 model of the human Purkinje cell AP by Sampson et al. [1].

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The stimulus was set to 0.5ms and approximately half the depolarisation
threshold.

[1] Sampson, K. J., Iyer, V., Marks, A. R., & Kass, R. S. (2010). A
[1] Sampson*, K. J., Iyer*, V., Marks, A. R., & Kass, R. S. (2010). A
computational model of Purkinje fibre single cell electrophysiology:
implications for the long QT syndrome. Journal of Physiology, 588(14),
2643-2655. (Sampson & Iyer contributed equally)
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