Longitudinal MRI (T2-weighted and rs-fMRI) of GFAP-/-/Vim-/- and WT mice; 6 time points over 4 weeks post photothrombotic stroke.
Programme: Aswendt Lab
SEEK ID: https://ldh.stroke-koeln.imise.uni-leipzig.de/projects/4
Public web page: https://doi.org/10.12751/g-node.yzjhz3
NFDI4Health PIs: No PIs for this Project
Project created: 4th Nov 2024
- : Study
- : Reactive astrocytes prevent maladaptive plasticity after ischemic stroke
- : English
- : Not specified
- : Not specified
- : Longitudinal MRI (T2-weighted and rs-fMRI) of GFAP-/-/Vim-/- and WT mice; 6 time points over 4 weeks post photothrombotic stroke.
- : English
- : Stroke, Recovery, Reactive gliosis, intermediate filaments, MRI, functional connectivity
- : Personal
- Details about the contributing organisation(s)/institution(s)/group(s)
- : Creator/Author
- : Project-ID 431549029 – SFB 1451
- : University Hospital Cologne
- Details about the contributing person(s)
- : Principal investigator
- : Markus
- : Aswendt
- Digital identifier(s)
- : 0000-0003-1423-0934
- : ORCID
- : Not specified
- : Not specified
- Organisation(s) associated with the contributor
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- Digital identifier(s)
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- : Not specified
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- : Not specified
- : Non-interventional
- Specification of the type of the Project
- : []
- : []
- Primary health condition(s) or disease(s) considered in the Project
- : Not specified
- : Not specified
- : Not specified
- Groups of diseases or conditions(*)
- : Diseases of the nervous system (VI)
- : Lower level ICD-10 (https://icd.who.int/browse10/2019/en), with autocomplete
- : Not specified
- Administrative information about the Project
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- : Animal
- Eligibility criteria for Project participants
- Eligibility criteria: Minimum age
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- Eligibility criteria: Maximum age
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- : []
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- Population of the Project(*)
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- : []
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- Interventions of the Project
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- Exposures of the Project
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- Outcome measures in the Project
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- Data sharing strategy of the Project(*)
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- Non-interventional aspects of the Project
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- Target follow-up duration of the Project
- : Not specified
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- : []
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- Interventional aspects of the Project
- : Not specified
- Masking of intervention(s) assignment
- : Not specified
- : []
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Related items
Projects:
- Temporal and spatial gene expression profile of stroke recovery genes
- Reactive astrocytes prevent maladaptive plasticity after ischemic stroke
- Graph theoretical quantification of white matter reorganization after cortical stroke in mice
- Complement C3a treatment accelerates recovery after stroke via modulation of astrocyte reactivity and cortical connectivity
- How to establish and maintain a multimodal animal research dataset using DataLad
- Proportional recovery in mice with cortical stroke
Institutions: University Hospital Cologne

Expertise: Bioinformatics, Data Management, Software Engineering, Neuroscience
Tools: Neuroimaging
Projects:
- Temporal and spatial gene expression profile of stroke recovery genes
- Reactive astrocytes prevent maladaptive plasticity after ischemic stroke
- Graph theoretical quantification of white matter reorganization after cortical stroke in mice
- Complement C3a treatment accelerates recovery after stroke via modulation of astrocyte reactivity and cortical connectivity
- How to establish and maintain a multimodal animal research dataset using DataLad
- Proportional recovery in mice with cortical stroke
Web page: Not specified
Longitudinal MRI (T2-weighted and rs-fMRI) of GFAP-/-/Vim-/- and WT mice; 6 time points over 4 weeks post photothrombotic stroke.
Files:
- MRI_raw_data - contains all raw data in Bruker 2dseq format and the original Bruker folder structure
- MRI_proc_data - contains all data processed with the AIDAmri pipeline. Processing steps: 1) convert Bruker to NIfTI-1 data format, 2) image re-orientation, bias-field correction, brain ...
Creator: Markus Aswendt
Submitter: Markus Aswendt
Investigatios: No Investigatios
Studies: No Studies
Assays: No Assays
Abstract (Expand)
Authors: Markus Aswendt, Ulrika Wilhelmsson, Frederique Wieters, Anna Stokowska, Felix Johannes Schmitt, Niklas Pallast, Yolanda de Pablo, Lava Mohammed, Mathias Hoehn, Marcela Pekna, Milos Pekny
Date Published: 1st Feb 2022
Publication Type: Journal
DOI: 10.1016/j.pneurobio.2021.102199
Citation: Progress in Neurobiology 209:102199