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data processing assistant for resting-state fmri (dparsf)  (SourceForge net)

 
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    Structured Review

    SourceForge net data processing assistant for resting-state fmri (dparsf)
    Data Processing Assistant For Resting State Fmri (Dparsf), supplied by SourceForge net, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/data+processing+assistant+for+resting-state+fmri+dparsf/data+processing+assistant+for+resting+state+fmri+dparsf/pm39908657-73-21-14
    Average 90 stars, based on 1 article reviews
    data processing assistant for resting-state fmri (dparsf) - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Functional Assay:

    Article Title: Common and distinct brain networks underlying verbal and visual creativity
    Article Snippet: .. The processing of resting‐state functional MRI data was performed using the Data Processing Assistant for Resting‐State fMRI (DPARSF, http://resting-fmri.sourceforge.net /) [Yan and Zang, 2010 ] based on SPM8. ..

    Magnetic Resonance Imaging:

    Article Title: Common and distinct brain networks underlying verbal and visual creativity
    Article Snippet: .. The processing of resting‐state functional MRI data was performed using the Data Processing Assistant for Resting‐State fMRI (DPARSF, http://resting-fmri.sourceforge.net /) [Yan and Zang, 2010 ] based on SPM8. ..

    other:

    Article Title: Laparoscopic sleeve gastrectomy induces sustained changes in gray and white matter brain volumes and resting functional connectivity in obese patients
    Article Snippet: RSFC analysis Resting-state images were preprocessed using SPM12 and Data Processing Assistant for Resting-State fMRI (DPARSF, https://sourceforge.net/projects/restingfmri/ ).

    Article Title: Cerebellum abnormalities in vascular mild cognitive impairment with depression symptom patients: A multimodal magnetic resonance imaging study.
    Article Snippet: Functional MRI data preprocessing was performed using Data Processing Assistant for Resting-State fMRI (DPARSF, http://resting-fmri. sourceforge.net/) (Yan et al., 2016).

    Article Title: Correlation of abnormalities in resting state fMRI with executive functioning in chronic schizophrenia.
    Article Snippet: Background: Although previous studies have consistently demonstrated that neurocognitive and social cognitive impairments are commonly observed in schizophrenia, the neural substrates of deficits of cognitive function remain unclear, especially for the chronic schizophrenia.. There has been little resting-state functional magnetic resonance imaging (rs-fMRI) study of cognitive function in chronic schizophrenia.. In this study we aimed to investigate the changes of rs-fMRI signals with regional homogeneity (ReHo), and explore the correlations between abnormal regional activity and cognitive function in chronic schizophrenia.

    Article Title: Dissociated neural substrates underlying impulsive choice and impulsive action.
    Article Snippet: Article history: Received 17 November 2015 Revised 23 March 2016 Accepted 4 April 2016 Available online 12 April 2016 There is a growing consensus that impulsivity is a multifaceted construct that comprises several components such as impulsive choice and impulsive action.. Although impulsive choice and impulsive action have been shown to be the common characteristics of some impulsivity-related psychiatric disorders, surprisingly few studies have directly compared their neural correlates and addressed the question whether they involve common or distinct neural correlates.. We addressed this important empirical gap using an individual differences approach that could characterize the functional relevance of neural networks in behaviors.

    Software:

    Article Title: Voxel-Mirrored Homotopic Connectivity Associated With Change of Cognitive Function in Chronic Pontine Stroke
    Article Snippet: .. The preprocessing of the resting-state fMRI data were performed on the software Data Processing Assistant for Resting-State fMRI (DPARSF, http://resting-fmri.sourceforge.net ) with Statistical Parametric Mapping (SPM8, http://www.fil.ion.ucl.ac.uk/spm ). ..



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    Experimental approach for <t>fMRI</t> during Reflexive Micturition. (a) This task‐related fMRI sequence began with an empty bladder, and MRI scanning was performed for two cycles as “Empty”. Then, the bladder infusion started. When stable bladder contractions were observed, MRI scanning was conducted for two cycles as “Infusion.” Next, MRI paused, and NLX‐112 (0.3 g/kg) was injected through the jugular vein. MRI scanning was performed for two cycles as “after – drugs.” Finally, MRI and infusion stopped. (b) The “Infusion” period was divided into the contraction period and the relaxation period by cystometric methods, and MRI images were divided into task‐fMRI and rs‐fMRI.
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    Experimental approach for <t>fMRI</t> during Reflexive Micturition. (a) This task‐related fMRI sequence began with an empty bladder, and MRI scanning was performed for two cycles as “Empty”. Then, the bladder infusion started. When stable bladder contractions were observed, MRI scanning was conducted for two cycles as “Infusion.” Next, MRI paused, and NLX‐112 (0.3 g/kg) was injected through the jugular vein. MRI scanning was performed for two cycles as “after – drugs.” Finally, MRI and infusion stopped. (b) The “Infusion” period was divided into the contraction period and the relaxation period by cystometric methods, and MRI images were divided into task‐fMRI and rs‐fMRI.
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    The schematic illustration of the pipeline of the data analysis in the present study. <t>fMRI,</t> functional magnetic resonance imaging; AAL, automated anatomical labeling.
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    SourceForge net data processing assistant for resting-state fmri (dparsf)
    The schematic illustration of the pipeline of the data analysis in the present study. <t>fMRI,</t> functional magnetic resonance imaging; AAL, automated anatomical labeling.
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    The schematic illustration of the pipeline of the data analysis in the present study. <t>fMRI,</t> functional magnetic resonance imaging; AAL, automated anatomical labeling.
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    Image Search Results


    Experimental approach for fMRI during Reflexive Micturition. (a) This task‐related fMRI sequence began with an empty bladder, and MRI scanning was performed for two cycles as “Empty”. Then, the bladder infusion started. When stable bladder contractions were observed, MRI scanning was conducted for two cycles as “Infusion.” Next, MRI paused, and NLX‐112 (0.3 g/kg) was injected through the jugular vein. MRI scanning was performed for two cycles as “after – drugs.” Finally, MRI and infusion stopped. (b) The “Infusion” period was divided into the contraction period and the relaxation period by cystometric methods, and MRI images were divided into task‐fMRI and rs‐fMRI.

    Journal: CNS Neuroscience & Therapeutics

    Article Title: Functional MRI Analysis of Brain Activity in Rats With Diabetic Bladder Dysfunction

    doi: 10.1111/cns.70466

    Figure Lengend Snippet: Experimental approach for fMRI during Reflexive Micturition. (a) This task‐related fMRI sequence began with an empty bladder, and MRI scanning was performed for two cycles as “Empty”. Then, the bladder infusion started. When stable bladder contractions were observed, MRI scanning was conducted for two cycles as “Infusion.” Next, MRI paused, and NLX‐112 (0.3 g/kg) was injected through the jugular vein. MRI scanning was performed for two cycles as “after – drugs.” Finally, MRI and infusion stopped. (b) The “Infusion” period was divided into the contraction period and the relaxation period by cystometric methods, and MRI images were divided into task‐fMRI and rs‐fMRI.

    Article Snippet: Finally, 12 NC rats and 12 DM rats were included in the comparative analysis of rs‐fMRI. fMRI data were preprocessed using Statistical Parametric Mapping (SPM12, Wellcome Trust Centre for Neuroimaging) and Data Processing Assistant for Resting‐State fMRI (DPARSF) on MATLAB R2014b.

    Techniques: Sequencing, Injection

    The schematic illustration of the pipeline of the data analysis in the present study. fMRI, functional magnetic resonance imaging; AAL, automated anatomical labeling.

    Journal: Quantitative Imaging in Medicine and Surgery

    Article Title: Association of aberrant brain network connectivity with visual dysfunction in patients with nonarteritic anterior ischemic optic neuropathy: a pilot study

    doi: 10.21037/qims-24-2062

    Figure Lengend Snippet: The schematic illustration of the pipeline of the data analysis in the present study. fMRI, functional magnetic resonance imaging; AAL, automated anatomical labeling.

    Article Snippet: The preprocessing of functional data was conducted using Data Processing Assistant for Resting-State fMRI (DPARSF 5.0; http://www.rfmri.org/DPARSF/ ) based on MATLAB version R2019b (MathWorks, Natick, MA, USA).

    Techniques: Functional Assay, Magnetic Resonance Imaging, Labeling

    Flowchart of participant recruitment and exclusion. NAION, nonarteritic anterior ischemic optic neuropathy; rs-fMRI, resting-state functional magnetic resonance imaging.

    Journal: Quantitative Imaging in Medicine and Surgery

    Article Title: Association of aberrant brain network connectivity with visual dysfunction in patients with nonarteritic anterior ischemic optic neuropathy: a pilot study

    doi: 10.21037/qims-24-2062

    Figure Lengend Snippet: Flowchart of participant recruitment and exclusion. NAION, nonarteritic anterior ischemic optic neuropathy; rs-fMRI, resting-state functional magnetic resonance imaging.

    Article Snippet: The preprocessing of functional data was conducted using Data Processing Assistant for Resting-State fMRI (DPARSF 5.0; http://www.rfmri.org/DPARSF/ ) based on MATLAB version R2019b (MathWorks, Natick, MA, USA).

    Techniques: Functional Assay, Magnetic Resonance Imaging