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statistical parametric mapping spm software version 12  (MathWorks Inc)


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    Structured Review

    MathWorks Inc statistical parametric mapping spm software version 12
    Statistical Parametric Mapping Spm Software Version 12, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 672 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/matlab-based+computing+application/Mapping+Toolbox/pm40460524-94-10-9
    Average 96 stars, based on 672 article reviews
    statistical parametric mapping spm software version 12 - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    other:

    Article Title: Sixty years of observations and future projections of nine declining North American glaciers.
    Article Snippet: Basemap imagery (Fig. 1) is from the MATLAB Mapping Toolbox MTRI is also acknowledged for any related publication costs.

    Article Title: Testosterone modulates multispectral oscillatory activity serving performance of motor sequences in typically developing youth
    Article Snippet: Separate whole-brain ANCOVAs with sex as a between-subjects factor, testosterone level as a covariate of interest, and age as a covariate of no interest were then performed per oscillatory response using the open-source Statistical Parametric Mapping (SPM 12) toolbox (https://www.fil.ion.ucl.ac.uk/spm/software/) in MATLAB (MathWorks,Natick,MA,USA).A full factorial design was used specifying testosterone interactions with sex.

    Article Title: Testosterone modulates multispectral oscillatory activity serving performance of motor sequences in typically developing youth
    Article Snippet: Separate whole‐brain ANCOVAs with sex as a between‐subjects factor, testosterone level as a covariate of interest, and age as a covariate of no interest were then performed per oscillatory response using the open‐source Statistical Parametric Mapping (SPM 12) toolbox ( https://www.fil.ion.ucl.ac.uk/spm/software/ ) in MATLAB (MathWorks, Natick, MA, USA).

    Article Title: Moral inconsistency is based on the vmPFC's insufficient representation across tasks and connectedness.
    Article Snippet: All images were preprocessed using MATLAB toolbox Statistical Parametric Mapping (SPM12; www.fil.ion.ucl.ac.uk/spm) and custom code.

    Article Title: Effects of 5-Minute Light-Intensity Physical Activity Breaks (Sit-Cycling and Stand-Twisting) on Cognitive Function, Sleepiness, and Back Pain in Physically Inactive University Students: Protocol for a Mixed-Design Laboratory Study.
    Article Snippet: A MATLAB-based toolbox was used to accurately estimate the spatial brain mapping of the electroencephalography (EEG) 10-20 system onto associated Brodmann areas, identifying the left and the right DLPFC as the regions of interest.

    Construct:

    Article Title: Source of Lateralization in Reverse Total Shoulder Arthroplasty Matters: A Comparison of Glenoid and Humeral Lateralization on Rotator Cuff Biomechanics.
    Article Snippet: Journal Pre-proof Source of Lateralization in Reverse Total Shoulder Arthroplasty Matters: A Comparison of Glenoid and Humeral Lateralization on Rotator Cuff Biomechanics Christopher M. Brusalis, MD, Jonathan Glenday, PhD, Michael C. Fu, MD, MHS, Joshua S. Dines, MD, Theodore A. Blaine, MD, David M. Dines, MD, Lawrence V. Gulotta, MD, Samuel A. Taylor, MD, Andreas Kontaxis, PhD PII: S1058-2746(26)00135-7 DOI: https://doi.org/10.1016/j.jse.2026.02.021 Reference: YMSE 7694 To appear in: Journal of Shoulder and Elbow Surgery Received Date: 13 November 2025 Revised Date: 21 February 2026 Accepted Date: 26 February 2026 Please cite this article as: Brusalis CM, Glenday J, Fu MC, Dines JS, Blaine TA, Dines DM, Gulotta LV, Taylor SA, Kontaxis A, Source of Lateralization in Reverse Total Shoulder Arthroplasty Matters: A Comparison of Glenoid and Humeral Lateralization on Rotator Cuff Biomechanics, Journal of Shoulder and Elbow Surgery (2026), doi: https://doi.org/10.1016/j.jse.2026.02.021.. This is a PDF of an article that has undergone enhancements after acceptance, such as the addition of a cover page and metadata, and formatting for readability.. This version will undergo additional copyediting, typesetting and review before it is published in its final form.

    Imaging:

    Article Title: Neuronal populations across the cortex underlie discrete, categorical, and subjective representations of visual durations
    Article Snippet: We performed the entire procedure using custom functions in MATLAB. shows the fitting result for a representative vertex. .. We conducted our analyses within a set of ROIs identified using a mass-univariate GLM approach performed with the Statistical Parametric Mapping toolbox in MATLAB (SPM12, version 7219, Wellcome Department of Imaging Neuroscience, University College London). ..

    Clinical Proteomics:

    Article Title: Cognitive and brain reserve in bilingual speakers with clinical AD variants
    Article Snippet: .. MR images were bias-corrected, segmented into gray matter (GM), white matter (WM) and cerebrospinal fluid (CSF)[ ] and normalized to Montreal Neurological Institute (MNI) using an optimized geodesic shooting procedure[ ] in CAT12 toolbox via Statistical Parametric Mapping (SPM[ ] running in MATLAB version 2022b ( The MathWorks Inc ., 2022 ). ..



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    Use of <t>PlantSize</t> to measure rosette sizes of Arabidopsis plants. (A) Dialog box of PlantSize with imported images of young wild type and mutant Arabidopsis plants. (B) Linear correlation of fresh weights and rosette sizes of individual Arabidopsis plants, grown on standard culture medium. Note high level of correlation between rosette sizes (shown in pixel numbers) and fresh weights (FW) of individual plants. (C) Change of average fresh weights of wild type Arabidopsis plants in 14 days growth period. (D) Change of average rosette sizes of wild type Arabidopsis plants in 14 days growth period, as determined by PlantSize. (E) Linear correlation of average fresh weights and average rosette sizes displayed on C,D .
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    Use of <t>PlantSize</t> to measure rosette sizes of Arabidopsis plants. (A) Dialog box of PlantSize with imported images of young wild type and mutant Arabidopsis plants. (B) Linear correlation of fresh weights and rosette sizes of individual Arabidopsis plants, grown on standard culture medium. Note high level of correlation between rosette sizes (shown in pixel numbers) and fresh weights (FW) of individual plants. (C) Change of average fresh weights of wild type Arabidopsis plants in 14 days growth period. (D) Change of average rosette sizes of wild type Arabidopsis plants in 14 days growth period, as determined by PlantSize. (E) Linear correlation of average fresh weights and average rosette sizes displayed on C,D .
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    Use of <t>PlantSize</t> to measure rosette sizes of Arabidopsis plants. (A) Dialog box of PlantSize with imported images of young wild type and mutant Arabidopsis plants. (B) Linear correlation of fresh weights and rosette sizes of individual Arabidopsis plants, grown on standard culture medium. Note high level of correlation between rosette sizes (shown in pixel numbers) and fresh weights (FW) of individual plants. (C) Change of average fresh weights of wild type Arabidopsis plants in 14 days growth period. (D) Change of average rosette sizes of wild type Arabidopsis plants in 14 days growth period, as determined by PlantSize. (E) Linear correlation of average fresh weights and average rosette sizes displayed on C,D .
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    Use of <t>PlantSize</t> to measure rosette sizes of Arabidopsis plants. (A) Dialog box of PlantSize with imported images of young wild type and mutant Arabidopsis plants. (B) Linear correlation of fresh weights and rosette sizes of individual Arabidopsis plants, grown on standard culture medium. Note high level of correlation between rosette sizes (shown in pixel numbers) and fresh weights (FW) of individual plants. (C) Change of average fresh weights of wild type Arabidopsis plants in 14 days growth period. (D) Change of average rosette sizes of wild type Arabidopsis plants in 14 days growth period, as determined by PlantSize. (E) Linear correlation of average fresh weights and average rosette sizes displayed on C,D .
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    Image Search Results


    Use of PlantSize to measure rosette sizes of Arabidopsis plants. (A) Dialog box of PlantSize with imported images of young wild type and mutant Arabidopsis plants. (B) Linear correlation of fresh weights and rosette sizes of individual Arabidopsis plants, grown on standard culture medium. Note high level of correlation between rosette sizes (shown in pixel numbers) and fresh weights (FW) of individual plants. (C) Change of average fresh weights of wild type Arabidopsis plants in 14 days growth period. (D) Change of average rosette sizes of wild type Arabidopsis plants in 14 days growth period, as determined by PlantSize. (E) Linear correlation of average fresh weights and average rosette sizes displayed on C,D .

    Journal: Frontiers in Plant Science

    Article Title: PlantSize Offers an Affordable, Non-destructive Method to Measure Plant Size and Color in Vitro

    doi: 10.3389/fpls.2018.00219

    Figure Lengend Snippet: Use of PlantSize to measure rosette sizes of Arabidopsis plants. (A) Dialog box of PlantSize with imported images of young wild type and mutant Arabidopsis plants. (B) Linear correlation of fresh weights and rosette sizes of individual Arabidopsis plants, grown on standard culture medium. Note high level of correlation between rosette sizes (shown in pixel numbers) and fresh weights (FW) of individual plants. (C) Change of average fresh weights of wild type Arabidopsis plants in 14 days growth period. (D) Change of average rosette sizes of wild type Arabidopsis plants in 14 days growth period, as determined by PlantSize. (E) Linear correlation of average fresh weights and average rosette sizes displayed on C,D .

    Article Snippet: Images are analyzed with the MatLab-based computer application PlantSize, which simultaneously calculates several parameters including rosette size, convex area, convex ratio, chlorophyll and anthocyanin contents of all plants identified on the image.

    Techniques: Mutagenesis

    Repression of Arabidopsis growth by increasing concentrations of salt. Five days-old seedlings were transferred to media supplemented by different concentrations of NaCl. Growth was monitored either by rosette imaging or weight measurements. (A) Rosette sizes of Arabidopsis plants determined by imaging and PlantSize analysis. (B) Average growth rates of plants calculated by the “Logest” function of Excel. (C,D) Average fresh weights (FW) and dry weights (DW) of plants grown on saline media. Bars on diagrams indicate standard deviation, ∗ shows significant differences to control tested by one-way ANOVA ( p < 0.05).

    Journal: Frontiers in Plant Science

    Article Title: PlantSize Offers an Affordable, Non-destructive Method to Measure Plant Size and Color in Vitro

    doi: 10.3389/fpls.2018.00219

    Figure Lengend Snippet: Repression of Arabidopsis growth by increasing concentrations of salt. Five days-old seedlings were transferred to media supplemented by different concentrations of NaCl. Growth was monitored either by rosette imaging or weight measurements. (A) Rosette sizes of Arabidopsis plants determined by imaging and PlantSize analysis. (B) Average growth rates of plants calculated by the “Logest” function of Excel. (C,D) Average fresh weights (FW) and dry weights (DW) of plants grown on saline media. Bars on diagrams indicate standard deviation, ∗ shows significant differences to control tested by one-way ANOVA ( p < 0.05).

    Article Snippet: Images are analyzed with the MatLab-based computer application PlantSize, which simultaneously calculates several parameters including rosette size, convex area, convex ratio, chlorophyll and anthocyanin contents of all plants identified on the image.

    Techniques: Imaging, Saline, Standard Deviation, Control

    Correlation of chlorophyll contents with Hue values. Fourteen days-old Arabidopsis plants treated by different stresses: 0,1 mM CdCl 2 , 3 mM H 2 O 2 , 150 mM NaCl, known to affect chlorophyll content. Plants were photographed after 3 days, and images were analyzed by PlantSize. (A) Images of treated plants. (B) Linear correlation of Hue values and chlorophyll contents of individual Arabidopsis plants (pixel numbers were used according to Figure ). (C,D) Average chlorophyll contents and HUE values of treated plants. (E) Correlation of average chlorophyll contents and average HUE values. Bars on diagrams show standard deviation, ∗ Indicates significant differences to control tested by one-way ANOVA ( p < 0.05).

    Journal: Frontiers in Plant Science

    Article Title: PlantSize Offers an Affordable, Non-destructive Method to Measure Plant Size and Color in Vitro

    doi: 10.3389/fpls.2018.00219

    Figure Lengend Snippet: Correlation of chlorophyll contents with Hue values. Fourteen days-old Arabidopsis plants treated by different stresses: 0,1 mM CdCl 2 , 3 mM H 2 O 2 , 150 mM NaCl, known to affect chlorophyll content. Plants were photographed after 3 days, and images were analyzed by PlantSize. (A) Images of treated plants. (B) Linear correlation of Hue values and chlorophyll contents of individual Arabidopsis plants (pixel numbers were used according to Figure ). (C,D) Average chlorophyll contents and HUE values of treated plants. (E) Correlation of average chlorophyll contents and average HUE values. Bars on diagrams show standard deviation, ∗ Indicates significant differences to control tested by one-way ANOVA ( p < 0.05).

    Article Snippet: Images are analyzed with the MatLab-based computer application PlantSize, which simultaneously calculates several parameters including rosette size, convex area, convex ratio, chlorophyll and anthocyanin contents of all plants identified on the image.

    Techniques: Standard Deviation, Control

    Estimation of anthocyanin accumulation in Arabidopsis plants. Fourteen days-old Arabidopsis plants were treated by 0,1 mM CdCl 2 , 3 mM H 2 O 2 , 200 mM, and 500 mM sucrose, known to stimulate anthocyanin accumulation. Plants were photographed after 3 days and images were analyzed by PlantSize. (A) Images of plants with different anthocyanin content. (B) Reverse correlation of Anthocyanin contents and HUE values of individual Arabidopsis plants (pixel numbers were used according to Figure ). (C,D) Average anthocyanin contents and average HUE values of treated plants. (E) Reverse correlation of average anthocyanin contents and HUE values. Bars on diagrams indicate standard deviation, ∗ shows significant differences to control tested by one-way ANOVA ( p < 0.05).

    Journal: Frontiers in Plant Science

    Article Title: PlantSize Offers an Affordable, Non-destructive Method to Measure Plant Size and Color in Vitro

    doi: 10.3389/fpls.2018.00219

    Figure Lengend Snippet: Estimation of anthocyanin accumulation in Arabidopsis plants. Fourteen days-old Arabidopsis plants were treated by 0,1 mM CdCl 2 , 3 mM H 2 O 2 , 200 mM, and 500 mM sucrose, known to stimulate anthocyanin accumulation. Plants were photographed after 3 days and images were analyzed by PlantSize. (A) Images of plants with different anthocyanin content. (B) Reverse correlation of Anthocyanin contents and HUE values of individual Arabidopsis plants (pixel numbers were used according to Figure ). (C,D) Average anthocyanin contents and average HUE values of treated plants. (E) Reverse correlation of average anthocyanin contents and HUE values. Bars on diagrams indicate standard deviation, ∗ shows significant differences to control tested by one-way ANOVA ( p < 0.05).

    Article Snippet: Images are analyzed with the MatLab-based computer application PlantSize, which simultaneously calculates several parameters including rosette size, convex area, convex ratio, chlorophyll and anthocyanin contents of all plants identified on the image.

    Techniques: Standard Deviation, Control

    Heat shock factor A4A (HSFA4A) modulates stress tolerance. (A) 5-days-old HSFA4A overexpressing seedlings (lines HSFox1, HSFox2) and wild type plants were transferred to culture medium supplemented by 100 mM NaCl. Growth was monitored by periodic imaging and evaluated by PlantSize. (A) Relative rosette sizes of plants grown on standard culture medium (1 corresponds to pixel No. on day 0). (B) Plant growth on saline medium. (C,D) 14-days-old plants were transferred to medium containing 150 mM NaCl and photographed at daily intervals. Changes in chlorophyll (C) and anthocyanin (D) contents were calculated from shifts in HUE values of the color images. Relative values are shown, where 1 corresponds to values of non-treated plants (day 0). Error bars indicate standard deviation, ∗ shows significant differences to control tested by one-way ANOVA ( p < 0.05).

    Journal: Frontiers in Plant Science

    Article Title: PlantSize Offers an Affordable, Non-destructive Method to Measure Plant Size and Color in Vitro

    doi: 10.3389/fpls.2018.00219

    Figure Lengend Snippet: Heat shock factor A4A (HSFA4A) modulates stress tolerance. (A) 5-days-old HSFA4A overexpressing seedlings (lines HSFox1, HSFox2) and wild type plants were transferred to culture medium supplemented by 100 mM NaCl. Growth was monitored by periodic imaging and evaluated by PlantSize. (A) Relative rosette sizes of plants grown on standard culture medium (1 corresponds to pixel No. on day 0). (B) Plant growth on saline medium. (C,D) 14-days-old plants were transferred to medium containing 150 mM NaCl and photographed at daily intervals. Changes in chlorophyll (C) and anthocyanin (D) contents were calculated from shifts in HUE values of the color images. Relative values are shown, where 1 corresponds to values of non-treated plants (day 0). Error bars indicate standard deviation, ∗ shows significant differences to control tested by one-way ANOVA ( p < 0.05).

    Article Snippet: Images are analyzed with the MatLab-based computer application PlantSize, which simultaneously calculates several parameters including rosette size, convex area, convex ratio, chlorophyll and anthocyanin contents of all plants identified on the image.

    Techniques: Imaging, Saline, Standard Deviation, Control

    Comparison of  PlantSize  with other imaging tools, developed for quantification of different plant parameters.

    Journal: Frontiers in Plant Science

    Article Title: PlantSize Offers an Affordable, Non-destructive Method to Measure Plant Size and Color in Vitro

    doi: 10.3389/fpls.2018.00219

    Figure Lengend Snippet: Comparison of PlantSize with other imaging tools, developed for quantification of different plant parameters.

    Article Snippet: Images are analyzed with the MatLab-based computer application PlantSize, which simultaneously calculates several parameters including rosette size, convex area, convex ratio, chlorophyll and anthocyanin contents of all plants identified on the image.

    Techniques: Comparison, Imaging, Software, In Vitro