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Modelling6
liver3
Hepatocytes2
Simulation2
Standards2
bile flux1
HCC1
interferon1
Regeneration1
Signal transduction1
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Project
LiSyM Pillar I: Early Metabolic Injury (LiSyM-EMI)6
LiSyM network4
DEEP-HCC network3
LiSyM Pillar II: Chronic Liver Disease Progression (LiSyM-DP)2
Forschungsnetzwerk LiSyM-Krebs2
LiSyM PALs1
Programme
LiSyM: Liver Systems Medicine 10
LiSyM-Krebs - Systemmedizinisches Forschungsnetz zur Früherkennung und Prävention von Leberkrebs3
Creator
Lutz Brusch9
Michael Kücken4
Jens Timmer3
Diego Jahn2
Viktor Makarenko1
Lorenza D'Alessandro1
Daniel Lill1
Ursula Klingmüller1
Daniel Seehofer1
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Model type
Ordinary differential equations (ODE)6
Agent based modelling5
Partial differential equations (PDE)2
Modelling analysis type
Model Analysis Type1
13
Models visible to you, out of a total of 19
In the experimental paradigm of CCl4 intoxication of mice, hepatocytes around the central vein (located in the center of an idealized hexagonal liver lobule) are dying and are subsequently replaced by new hepatocytes, largely through activation of proliferation in the remaining hepatocytes.
Alignment of daughter hepatocytes along the orientation of the closest sinusoid, a process which is named hepatocyte-sinusoid alignment (HSA), was proposed by Höhme et al. (https://doi.org/10.1073/pnas.0909374107) ...
Creators: Diego Jahn, Michael Kücken, Lutz Brusch
Submitter: Diego Jahn
Model type: Agent based modelling
Model format: MorpheusML
Environment: Morpheus