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Dockerfile

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@@ -267,7 +267,7 @@ ARG VERSION
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LABEL org.label-schema.build-date=$BUILD_DATE \
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org.label-schema.name="fMRIPrep" \
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org.label-schema.description="fMRIPrep - robust fMRI preprocessing tool" \
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org.label-schema.url="http://fmriprep.org" \
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org.label-schema.url="https://fmriprep.org" \
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org.label-schema.vcs-ref=$VCS_REF \
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org.label-schema.vcs-url="https://github.com/nipreps/fmriprep" \
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org.label-schema.version=$VERSION \

docs/Makefile

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# User-friendly check for sphinx-build
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ifeq ($(shell which $(SPHINXBUILD) >/dev/null 2>&1; echo $$?), 1)
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$(error The '$(SPHINXBUILD)' command was not found. Make sure you have Sphinx installed, then set the SPHINXBUILD environment variable to point to the full path of the '$(SPHINXBUILD)' executable. Alternatively you can add the directory with the executable to your PATH. If you don\'t have Sphinx installed, grab it from http://sphinx-doc.org/)
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$(error The '$(SPHINXBUILD)' command was not found. Make sure you have Sphinx installed, then set the SPHINXBUILD environment variable to point to the full path of the '$(SPHINXBUILD)' executable. Alternatively you can add the directory with the executable to your PATH. If you don\'t have Sphinx installed, grab it from https://www.sphinx-doc.org/)
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endif
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# Internal variables.

docs/installation.rst

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@@ -94,6 +94,6 @@ Sherlock enables `the following data transfer options
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<https://www.sherlock.stanford.edu/docs/user-guide/storage/data-transfer/>`_.
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Alternatively, more comprehensive solutions such as `Datalad
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<http://www.datalad.org/>`_ will handle data transfers with the appropriate
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<https://www.datalad.org/>`_ will handle data transfers with the appropriate
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settings and commands.
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Datalad also performs version control over your data.

docs/links.rst

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.. _Nipype: http://nipype.readthedocs.io/en/latest/
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.. _BIDS: http://bids.neuroimaging.io
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.. _Nipype: https://nipype.readthedocs.io/en/latest/
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.. _BIDS: https://bids.neuroimaging.io/
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.. _`BIDS Derivatives`: https://bids-specification.readthedocs.io/en/stable/05-derivatives/01-introduction.html
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.. _`BEP 011`: https://bids-specification.readthedocs.io/en/bep011/05-derivatives/04-structural-derivatives.html
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.. _`BEP 012`: https://bids-specification.readthedocs.io/en/bep012/05-derivatives/05-functional-derivatives.html

docs/outputs.rst

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.. [Behzadi2007] Behzadi Y, Restom K, Liau J, Liu TT, A component-based noise correction method
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(CompCor) for BOLD and perfusion-based fMRI. NeuroImage. 2007.
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doi:`10.1016/j.neuroimage.2007.04.042 <http://doi.org/10.1016/j.neuroimage.2007.04.042>`_
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doi:`10.1016/j.neuroimage.2007.04.042 <https://doi.org/10.1016/j.neuroimage.2007.04.042>`_
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.. [Ciric2017] Ciric R, Wolf DH, Power JD, Roalf DR, Baum GL, Ruparel K, Shinohara RT, Elliott MA,
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Eickhoff SB, Davatzikos C., Gur RC, Gur RE, Bassett DS, Satterthwaite TD.
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.. [Greve2013] Greve DN, Brown GG, Mueller BA, Glover G, Liu TT,
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A Survey of the Sources of Noise in fMRI. Psychometrika. 2013.
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doi:`10.1007/s11336-013-9344-2 <http://dx.doi.org/10.1007/s11336-013-9344-2>`_
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doi:`10.1007/s11336-013-9344-2 <https://doi.org/10.1007/s11336-013-9344-2>`_
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.. [Friston1996] Friston KJ1, Williams S, Howard R, Frackowiak RS, Turner R,
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Movement‐Related effects in fMRI time‐series. Magnetic Resonance in Medicine. 1996.
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.. [Muschelli2014] Muschelli J, Nebel MB, Caffo BS, Barber AD, Pekar JJ, Mostofsky SH,
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Reduction of motion-related artifacts in resting state fMRI using aCompCor. NeuroImage. 2014.
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doi:`10.1016/j.neuroimage.2014.03.028 <http://doi.org/10.1016/j.neuroimage.2014.03.028>`_
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doi:`10.1016/j.neuroimage.2014.03.028 <https://doi.org/10.1016/j.neuroimage.2014.03.028>`_
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.. [Parkes2018] Parkes L, Fulcher B, Yücel M, Fornito A, An evaluation of the efficacy, reliability,
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and sensitivity of motion correction strategies for resting-state functional MRI. NeuroImage. 2018.
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doi:`10.1016/j.neuroimage.2011.10.018 <https://doi.org/10.1016/j.neuroimage.2011.10.018>`_
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.. [Power2016] Power JD, A simple but useful way to assess fMRI scan qualities. NeuroImage. 2016.
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doi:`10.1016/j.neuroimage.2016.08.009 <http://doi.org/10.1016/j.neuroimage.2016.08.009>`_
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doi:`10.1016/j.neuroimage.2016.08.009 <https://doi.org/10.1016/j.neuroimage.2016.08.009>`_
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.. [Provins2022] Provins C et al., Quality control and nuisance regression of fMRI, looking out
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where signal should not be found. Proc. Intl. Soc. Mag. Reson. Med. 31, London (UK). 2022

docs/sphinxext/github_link.py

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>>> _linkcode_resolve('py', {'module': 'tty',
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... 'fullname': 'setraw'},
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... package='tty',
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... url_fmt='http://hg.python.org/cpython/file/'
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... url_fmt='https://hg.python.org/cpython/file/'
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... '{revision}/Lib/{package}/{path}#L{lineno}',
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... revision='xxxx')
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'http://hg.python.org/cpython/file/xxxx/Lib/tty/tty.py#L18'
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'https://hg.python.org/cpython/file/xxxx/Lib/tty/tty.py#L18'
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"""
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if revision is None:

docs/usage.rst

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Structure)` format, and it must include at least one T1w structural image and
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(unless disabled with a flag) a BOLD series.
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We highly recommend that you validate your dataset with the free, online
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`BIDS Validator <http://bids-standard.github.io/bids-validator/>`_.
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`BIDS Validator <https://bids-standard.github.io/bids-validator/>`_.
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The exact command to run *fMRIPRep* depends on the Installation_ method.
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The common parts of the command follow the `BIDS-Apps
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Troubleshooting
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---------------
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Logs and crashfiles are outputted into the
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Logs and crashfiles are output into the
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``<output dir>/fmriprep/sub-<participant_label>/log`` directory.
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Information on how to customize and understand these files can be found on the
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`nipype debugging <http://nipype.readthedocs.io/en/latest/users/debug.html>`_
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`Debugging Nipype Workflows <http://nipype.readthedocs.io/en/latest/users/debug.html>`_
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page.
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**Support and communication**.
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The documentation of this project is found here: http://fmriprep.readthedocs.org/en/latest/.
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The documentation of this project is found here: https://fmriprep.readthedocs.org/en/latest/.
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All bugs, concerns and enhancement requests for this software can be submitted here:
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https://github.com/nipreps/fmriprep/issues.
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If you have a problem or would like to ask a question about how to use *fMRIPRep*,
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please submit a question to `NeuroStars.org <http://neurostars.org/tags/fmriprep>`_ with an ``fmriprep`` tag.
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please submit a question to `NeuroStars.org <https://neurostars.org/tag/fmriprep>`_ with an ``fmriprep`` tag.
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NeuroStars.org is a platform similar to StackOverflow but dedicated to neuroinformatics.
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Previous questions about *fMRIPRep* are available here:
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http://neurostars.org/tags/fmriprep/
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https://neurostars.org/tag/fmriprep/
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To participate in the *fMRIPRep* development-related discussions please use the
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following mailing list: http://mail.python.org/mailman/listinfo/neuroimaging
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following mailing list: https://mail.python.org/mailman/listinfo/neuroimaging
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Please add *[fmriprep]* to the subject line when posting on the mailing list.
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