Changes for page TVB PIPELINE
Last modified by ldomide on 2024/05/20 08:56
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... ... @@ -4,11 +4,9 @@ 4 4 ((( 5 5 == TVB Image Processing Pipeline == 6 6 7 -=== [[Web-GUI to configure and start processing on HPC>>https://thevirtualbrain.apps.hbp.eu/||target="_blank"]] === 8 - 9 9 ==== [[Pipeline Video Tutorial>>https://drive.google.com/file/d/1VcXf3GX3KoihF4UzJQXzuGL4XWoqj5Jr/view||rel="noopener noreferrer" target="_blank"]] ==== 10 10 11 -==== [[Direct link to notebook>>https://drive.ebrains.eu/ #my-libs/lib/42ac27a5-981e-4cf6-8ec5-d67b0c24bf09/notebooks||rel="noopener noreferrer" target="_blank"]] ====9 +==== [[Direct link to notebook>>https://drive.ebrains.eu/d/5e2fbc74575c47e88780/||rel="noopener noreferrer" target="_blank"]] ==== 12 12 13 13 [[image:8677353.png||style="float:left"]] 14 14 ... ... @@ -29,6 +29,7 @@ 29 29 30 30 == What can I find here? == 31 31 30 +* the code underlying the pipeline including the orchestrator that manages processing on the supercomputer 32 32 * an IPython notebook that describes how to 33 33 ** use the TVB processing pipeline on one of the associated supercomputers using PyUnicore 34 34 ** upload MRI data to the supercomputer ... ... @@ -48,9 +48,9 @@ 48 48 == How do I use it? == 49 49 50 50 * the pipeline is implemented by three Docker containers (mrtrix3_connectome, fmriprep and tvb_converter) 51 -* the containers a re executed on supercomputers and operated viathe [[web GUI>>https://thevirtualbrain.apps.hbp.eu/]] or via IPython notebooks50 +* the containers can be executed on supercomputers and operated via IPython notebooks 52 52 * Find the notebook by clicking on "Drive" in the left menu. The notebook is located in the folder "notebooks" 53 -* Direct link to notebook: [[https:~~/~~/drive.ebrains.eu/ #my-libs/lib/42ac27a5-981e-4cf6-8ec5-d67b0c24bf09/notebooks>>url:https://drive.ebrains.eu/#my-libs/lib/42ac27a5-981e-4cf6-8ec5-d67b0c24bf09/notebooks]]52 +* Direct link to notebook: [[https:~~/~~/drive.ebrains.eu/d/5e2fbc74575c47e88780/>>https://drive.ebrains.eu/d/5e2fbc74575c47e88780/]] 54 54 * To use the notebook, download it onto your local filesystem, create a new Collab and upload it there. 55 55 * Then, head over to [[https:~~/~~/lab.ebrains.eu/>>url:https://lab.ebrains.eu/||rel="noopener noreferrer" target="_blank"]] to edit and run your notebook. 56 56 * Depending on whether you created a public or a private notebook it will be accessible in either "drive/Shared with all" or "drive/Shared with groups'" ... ... @@ -105,7 +105,7 @@ 105 105 == Citing this work == 106 106 107 107 108 -When using this pipeline for published work, please acknowledge MRtrix3, MRtrix3_connectome (R. Smith & Connelly, 2019; Tournier et al., 2019) and fmriprep (Esteban et al., 2019). 107 +When using this pipeline for published work, please acknowledge Schirner et al. 2015, Schirner et al. 2022, MRtrix3, MRtrix3_connectome (R. Smith & Connelly, 2019; Tournier et al., 2019) and fmriprep (Esteban et al., 2019). 109 109 110 110 111 111 Esteban, O., Markiewicz, C. J., Blair, R. W., Moodie, C. A., Isik, A. I., Erramuzpe, A., Kent, J. D., Goncalves, M., DuPre, E., Snyder, M., Oya, H., Ghosh, S. S., Wright, J., Durnez, J., Poldrack, R. A., & Gorgolewski, K. J. (2019). fMRIPrep: a robust preprocessing pipeline for functional MRI. //Nature Methods//. [[https:~~/~~/doi.org/10.1038/s41592-018-0235-4>>https://doi.org/10.1038/s41592-018-0235-4]] ... ... @@ -114,6 +114,9 @@ 114 114 Schirner, M., Rothmeier, S., Jirsa, V. K., McIntosh, A. R., & Ritter, P. (2015). An automated pipeline for constructing personalized virtual brains from multimodal neuroimaging data. NeuroImage, 117, 343-357. 115 115 116 116 116 +Schirner, Domide, Perdikis, Triebkorn, Stefanovski, Pai, Prodan, Valean, Palmer, Langford, Blickensdörfer, van der Vlag, Diaz-Pier, Peyser, Woodman, Zehl, Fousek, Petkoski, Kusch, Hashemi, Marinazzo, Mangin, Flöel, Akintoye, Stahl, Deco, McIntosh, Hilgetag, Morgan, Schuller, Upton, McMurtrie, Dickscheid, Bjaalie, Amunts, Mersmann, Jirsa, Ritter (2022). Brain Simulation as a Cloud Service: The Virtual Brain on the European Research Platform EBRAINS. //Neuroimage//. [[https:~~/~~/doi.org/10.1016/j.neuroimage.2022.118973>>https://doi.org/10.1016/j.neuroimage.2022.118973]] 117 + 118 + 117 117 Smith, R., & Connelly, A. (2019). MRtrix3_connectome: A BIDS Application for quantitative structural connectome construction. //OHBM//, W610. 118 118 119 119
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