This function computes the Cox Model based on sPLSR components computed model with
as the response: the Residuals of a Cox-Model fitted with no covariate
as explanatory variables: Xplan.
It uses
the package spls
to perform the first step in SPLSR then
mixOmics
to perform PLSR step fit.
coxsplsDR(Xplan, ...)# S3 method for default
coxsplsDR(
Xplan,
time,
time2,
event,
type,
origin,
typeres = "deviance",
collapse,
weighted,
scaleX = TRUE,
scaleY = TRUE,
ncomp = min(7, ncol(Xplan)),
modepls = "regression",
plot = FALSE,
allres = FALSE,
eta = 0.5,
trace = FALSE,
...
)
# S3 method for formula
coxsplsDR(
Xplan,
time,
time2,
event,
type,
origin,
typeres = "deviance",
collapse,
weighted,
scaleX = TRUE,
scaleY = TRUE,
ncomp = min(7, ncol(Xplan)),
modepls = "regression",
plot = FALSE,
allres = FALSE,
dataXplan = NULL,
subset,
weights,
model_frame = FALSE,
eta = 0.5,
trace = FALSE,
model_matrix = FALSE,
contrasts.arg = NULL,
...
)
If allres=FALSE
:
Final Cox-model.
If
allres=TRUE
:
sPLSR components.
Final Cox-model.
The sPLSR model.
a formula or a matrix with the eXplanatory variables (training) dataset
Arguments to be passed on to survival::coxph
.
for right censored data, this is the follow up time. For interval data, the first argument is the starting time for the interval.
The status indicator, normally 0=alive, 1=dead. Other choices
are TRUE/FALSE
(TRUE
= death) or 1/2 (2=death). For interval
censored data, the status indicator is 0=right censored, 1=event at
time
, 2=left censored, 3=interval censored. Although unusual, the
event indicator can be omitted, in which case all subjects are assumed to
have an event.
ending time of the interval for interval censored or counting
process data only. Intervals are assumed to be open on the left and closed
on the right, (start, end]
. For counting process data, event
indicates whether an event occurred at the end of the interval.
character string specifying the type of censoring. Possible
values are "right"
, "left"
, "counting"
,
"interval"
, or "interval2"
. The default is "right"
or
"counting"
depending on whether the time2
argument is absent
or present, respectively.
for counting process data, the hazard function origin. This option was intended to be used in conjunction with a model containing time dependent strata in order to align the subjects properly when they cross over from one strata to another, but it has rarely proven useful.
character string indicating the type of residual desired.
Possible values are "martingale"
, "deviance"
, "score"
,
"schoenfeld"
, "dfbeta"
, "dfbetas"
, and
"scaledsch"
. Only enough of the string to determine a unique match is
required.
vector indicating which rows to collapse (sum) over. In
time-dependent models more than one row data can pertain to a single
individual. If there were 4 individuals represented by 3, 1, 2 and 4 rows of
data respectively, then collapse=c(1,1,1,2,3,3,4,4,4,4)
could be used
to obtain per subject rather than per observation residuals.
if TRUE
and the model was fit with case weights, then
the weighted residuals are returned.
Should the Xplan
columns be standardized ?
Should the time
values be standardized ?
The number of components to include in the model. The number of components to fit is specified with the argument ncomp. It this is not supplied, the maximal number of components is used.
character string. What type of algorithm to use, (partially)
matching one of "regression", "canonical", "invariant" or "classic". See
pls
for details
Should the survival function be plotted ?)
FALSE to return only the Cox model and TRUE for additionnal results. See details. Defaults to FALSE.
Thresholding parameter. eta
should be between 0 and 1.
Print out the progress of variable selection?
an optional data frame, list or environment (or object
coercible by as.data.frame
to a data frame) containing the
variables in the model. If not found in dataXplan
, the variables are
taken from environment(Xplan)
, typically the environment from which
coxsplsDR
is called.
an optional vector specifying a subset of observations to be used in the fitting process.
an optional vector of 'prior weights' to be used in the
fitting process. Should be NULL
or a numeric vector.
If TRUE
, the model frame is returned.
If TRUE
, the model matrix is returned.
a list, whose entries are values (numeric matrices, functions or character strings naming functions) to be used as replacement values for the contrasts replacement function and whose names are the names of columns of data containing factors.
Frédéric Bertrand
frederic.bertrand@utt.fr
http://www-irma.u-strasbg.fr/~fbertran/
If allres=FALSE
returns only the final Cox-model. If
allres=TRUE
returns a list with the sPLS components, the final
Cox-model and the sPLSR model. allres=TRUE
is useful for evluating
model prediction accuracy on a test sample.
plsRcox, Cox-Models in a high dimensional setting in R, Frederic
Bertrand, Philippe Bastien, Nicolas Meyer and Myriam Maumy-Bertrand (2014).
Proceedings of User2014!, Los Angeles, page 152.
Deviance residuals-based sparse PLS and sparse kernel PLS regression for censored data, Philippe Bastien, Frederic Bertrand, Nicolas Meyer and Myriam Maumy-Bertrand (2015), Bioinformatics, 31(3):397-404, doi:10.1093/bioinformatics/btu660.
coxph
, plsr
data(micro.censure)
data(Xmicro.censure_compl_imp)
X_train_micro <- apply((as.matrix(Xmicro.censure_compl_imp)),FUN="as.numeric",MARGIN=2)[1:80,]
X_train_micro_df <- data.frame(X_train_micro)
Y_train_micro <- micro.censure$survyear[1:80]
C_train_micro <- micro.censure$DC[1:80]
(cox_splsDR_fit=coxsplsDR(X_train_micro,Y_train_micro,C_train_micro,ncomp=6,eta=.5))
(cox_splsDR_fit2=coxsplsDR(~X_train_micro,Y_train_micro,C_train_micro,ncomp=6,eta=.5,trace=TRUE))
(cox_splsDR_fit3=coxsplsDR(~.,Y_train_micro,C_train_micro,ncomp=6,
dataXplan=X_train_micro_df,eta=.5))
rm(X_train_micro,Y_train_micro,C_train_micro,cox_splsDR_fit,cox_splsDR_fit2,cox_splsDR_fit3)
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