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opera phenix plus high throughput microplate confocal imager  (Revvity)


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    Structured Review

    Revvity opera phenix plus high throughput microplate confocal imager
    Opera Phenix Plus High Throughput Microplate Confocal Imager, supplied by Revvity, used in various techniques. Bioz Stars score: 96/100, based on 2570 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/throughput+screening/Opera+Phenix+Plus+high-content+screening+system/pm42033519-108-9-16
    Average 96 stars, based on 2570 article reviews
    opera phenix plus high throughput microplate confocal imager - by Bioz Stars, 2026-10
    96/100 stars

    Images

    Related Articles

    Cytometry:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Microscopy:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Inverted Microscopy:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Confocal Microscopy:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Incubation:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Automated:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Fluorescence Microscopy:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Confocal:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Staining:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Cell Tracking Assay:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Fluorescence:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Imaging:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Oligomer Restriction:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Mouse Assay:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    In Vivo:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Gentle:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Injection:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Immunofluorescence:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Western Blot:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Milk:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    BIA-KA:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    SDS Page:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Brightfield:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Transferring:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Concentration Assay:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Screening:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Widefield:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Software:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    High Content Screening:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Analysis:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t

    Allele-specific Oligonucleotide:

    Article Title: Robotic handling preserves iPSC-derived vascular smooth muscle cell differentiation
    Article Snippet: ondary antibody (1h RT), and DAPI stained. Fluorescence microscopy was performed as indicated using an EVOS cell imaging system (ThermoFisher), or a Nikon Eclipse Ti2-E inverted microscope, or Celigo (Revvity) imaging cytometry. Characterization of differentiation efficiency was quantified by unbiased imaging using an automated confocal microscopy (Opera Phenix, Revvity). Confluence and live cell t



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