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pco.panda 4.2  (Excelitas corp)


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    Structured Review

    Excelitas corp pco.panda 4.2
    Pco.Panda 4.2, supplied by Excelitas corp, used in various techniques. Bioz Stars score: 97/100, based on 322 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/pco%2Epanda+4%2E2/pco%2Epanda+4%2E2/custom%4085108074001%4010%2E1007%2Fs00348-026-04261-8
    Average 97 stars, based on 322 article reviews
    pco.panda 4.2 - by Bioz Stars, 2026-09
    97/100 stars

    Images

    Related Articles

    Injection:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Software:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Marker:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Imaging:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Inverted Microscopy:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Fluorescence:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Microscopy:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Immunostaining:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Hybridization:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Staining:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Clone Assay:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    In Situ:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Derivative Assay:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    Synthesized:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    cDNA Library Assay:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu

    In Situ Hybridization:

    Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape.
    Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. PCO.panda 4.2 and PCO.edge 4.2 cameras are used to capture images from the phase contrast and fuorescence channels with an exposure time of 10 ms at 100 fps, respectively (Movie S1). In the traditional method of defocu



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