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machine learning algorithms  (Oxford Instruments)


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    Structured Review

    Oxford Instruments machine learning algorithms
    Machine Learning Algorithms, supplied by Oxford Instruments, used in various techniques. Bioz Stars score: 99/100, based on 44266 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/imaris+machine+learning+algorithm/Imaris/pmc12723385-444-5-10
    Average 99 stars, based on 44266 article reviews
    machine learning algorithms - by Bioz Stars, 2026-09
    99/100 stars

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    Related Articles

    Imaging:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Live Cell Imaging:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Microscopy:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Software:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Patch Clamp:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Fluorescence:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Cell Counting:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Sample Prep:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Incubation:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in

    Mouse Assay:

    Article Title: IFNAR1-dependent metabolic circuit drives pathogenic neutrophil activation in chronic mucosal inflammation.
    Article Snippet: n objectives. For the JC-1 experiment requiring live cell imaging a Nikon Ti2 Spinning disk was used with a 40× air Nikon objective. Images were deconvolved and analyzed using ImageJ (NIH) and Imaris (Oxford Instruments). Data are presented as means ± SEM or SD as indicated in the Figure legend. Each experiment was performed with a minimum of two biological replicates; exact numbers are depicted in



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