CoupledToggleSwitchSA
|
Five coupled toggle switches |
EMT1
|
A circuit for epithelial to mesenchymal transition |
EMT2
|
A circuit for epithelial to mesenchymal transition
including microRNAs |
RacipeSE-class
|
RacipeSE |
RacipeSE()
|
RacipeSE constructor |
annotation(<RacipeSE>)
|
A method to get the annotation |
`annotation<-`(<RacipeSE>,<ANY>)
|
A method to set the circuit name or annotation |
configData
|
Configuration Data |
demoCircuit
|
A toggle switch circuit for demonstrations |
densityPlot()
|
Density Plot |
.ModelPvalue()
|
Returns the variance array after permutations. |
.NthMin()
|
Find nth minimum value from a vector |
.PermutedVar()
|
Find variance of permutations |
.SimulatedPValueAbs()
|
Finds the variance corresponding to a given value. |
.SimulatedVarPValue()
|
Finds the variance corresponding to a given value. |
.loadNetworkFile()
|
Loads the network/topology file. |
sRACIPE
|
sRACIPE: A package for stochastic random circuit perturbation. |
`sracipeCircuit<-`()
|
Initialize the circuit |
sracipeCircuit()
|
Method to get the circuit |
`sracipeConfig<-`()
|
A method to access the simulation hyperparameters |
sracipeConfig()
|
A method to access the simulation hyperparameters |
sracipeGenParamNames()
|
Generate parameter names for a circuit |
sracipeGetTS()
|
A method to extract the time series |
sracipeHeatmapSimilarity()
|
Calculates the similarity between two gene expression data. |
`sracipeIC<-`()
|
A method to set the initial conditions |
sracipeIC()
|
A method to get the initial conditions used for simulations |
sracipeKnockDown()
|
Perform in-silico knockdown analysis |
sracipeNormalize()
|
Normalize the simulated gene expression |
sracipeOverExp()
|
Perform in-silico over expression analysis |
`sracipeParams<-`()
|
A method to set the simulation parameters |
sracipeParams()
|
A method to access the simulation parameters |
sracipePlotCircuit()
|
Plot Gene Regulatory Circuit |
sracipePlotData()
|
Plot sRACIPE data |
sracipePlotParamBifur()
|
Parameter bifurcation plots |
sracipeSimulate()
|
Simulate a gene regulatory circuit |