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runtime compiler mcr  (MathWorks Inc)


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    Structured Review

    MathWorks Inc runtime compiler mcr
    Runtime Compiler Mcr, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 323 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/matlab+software+curvealign/MATLAB+Compiler/pmc06343484-120-4-3
    Average 96 stars, based on 323 article reviews
    runtime compiler mcr - by Bioz Stars, 2026-09
    96/100 stars

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    other:

    Article Title: An Integrated Framework for Automated Image Segmentation and Personalized Wall Stress Estimation of Abdominal Aortic Aneurysms.
    Article Snippet: The script can be compiled into a standalone executable (e.g., via MATLAB Compiler) that runs with the free MATLAB Runtime, so end users do not require a MATLAB license [45].

    Article Title: RUBAT Studio: A Unified Workbench for Multichannel Bioacoustic Data Acquisition
    Article Snippet: RUBAT Studio v4.0 was packaged using the MATLAB Application Compiler to produce standalone executables requiring only the freely distributable MATLAB Runtime.

    Article Title: Autophagy dysfunction in iPSCs-derived neurons and midbrain organoids carrying a SNCA triplication.
    Article Snippet: Neural stat compiler files were used for data analysis in MATLAB.

    Article Title: Predicting Cell Adhesion States on Nanopillar Arrays with a Nano‐Bio Interface Model: From Modeling to Functional Device Design
    Article Snippet: Nanopillar arrays (NAs) are widely employed as versatile nanostructures for biological applications.. Cells on NAs adopt three adhesion states—“top”, “middle”, and “bottom”—each corresponding to distinct biological functions.. Although these adhesion states are influenced by NAs geometry, existing models overlook the role of the membrane reservoir—an intrinsic cellular property—in regulating membrane tension during cell settling, resulting in an incomplete mechanistic understanding and limited predictive capability.

    Article Title: An Integrated Framework for Automated Image Segmentation and Personalized Wall Stress Estimation of Abdominal Aortic Aneurysms
    Article Snippet: The script can be compiled into a standalone executable (e.g., via MATLAB Compiler) that runs with the free MATLAB Runtime, so end users do not require a MATLAB license [ ].

    Generated:

    Article Title: WAH- i : Optimising Microphone Array Geometry for Customised Localisation Accuracy
    Article Snippet: .. To support deployment beyond a MATLAB development environment, standalone executables were generated using the MATLAB Compiler ( ). ..



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    Image Search Results


    Examination of cardiac collagen content and organization: A , Intact midpapillary sections stained with PSR; B , quantification of PSR signal (cardiac fibrosis) and ( C ) scar thickness (n=6–9 biological replicates); D , Computational assessment of scar collagen architecture in SHG‐imaged infarct segments. Left to right, representative master SHG images from postinfarct scar regions (region of interest: 256×256 pixel), CurveAlign‐generated images displaying the spatial distribution (red dots) and direction (green lines) of collagen fiber segments, corresponding CurveAlign sourced heatmaps depicting the relative alignment of collagen fibers across the region (red denotes regions of high alignment), and, lastly, CT‐FIRE extracted fibers overlaid on master SHG images (individual fibers are separated by varying colored lines). From these computational analyses, macrostructural collagen attributes were enumerated and graphed, including ( E ) fiber alignment, ( F ) fiber width, and ( G ) fiber straightness (n=3 biological replicates per sex per group). Data are mean±SEM. Normality was assessed via Shapiro–Wilk test. Parametric unpaired Student's t test or nonparametric Mann–Whitney U test as appropriate. Scale bar=8.14 μm. BCAA indicates branched‐chain amino acid; PSR, picrosirius red; and SHG, second harmonic generation.

    Journal: Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease

    Article Title: Dietary Branched‐Chain Amino Acids Modify Postinfarct Cardiac Remodeling and Function in the Murine Heart

    doi: 10.1161/JAHA.124.037637

    Figure Lengend Snippet: Examination of cardiac collagen content and organization: A , Intact midpapillary sections stained with PSR; B , quantification of PSR signal (cardiac fibrosis) and ( C ) scar thickness (n=6–9 biological replicates); D , Computational assessment of scar collagen architecture in SHG‐imaged infarct segments. Left to right, representative master SHG images from postinfarct scar regions (region of interest: 256×256 pixel), CurveAlign‐generated images displaying the spatial distribution (red dots) and direction (green lines) of collagen fiber segments, corresponding CurveAlign sourced heatmaps depicting the relative alignment of collagen fibers across the region (red denotes regions of high alignment), and, lastly, CT‐FIRE extracted fibers overlaid on master SHG images (individual fibers are separated by varying colored lines). From these computational analyses, macrostructural collagen attributes were enumerated and graphed, including ( E ) fiber alignment, ( F ) fiber width, and ( G ) fiber straightness (n=3 biological replicates per sex per group). Data are mean±SEM. Normality was assessed via Shapiro–Wilk test. Parametric unpaired Student's t test or nonparametric Mann–Whitney U test as appropriate. Scale bar=8.14 μm. BCAA indicates branched‐chain amino acid; PSR, picrosirius red; and SHG, second harmonic generation.

    Article Snippet: The regions of interest were subject to computational analyses using MATLAB software packages CurveAlign and CT‐FIRE, as described, to quantify macrostructural attributes of the collagen fiber network (collagen fiber alignment, width, and straightness).

    Techniques: Staining, Generated, MANN-WHITNEY