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epifluorescence ti eclipse microscope  (Nikon)


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    Nikon epifluorescence ti eclipse microscope
    Epifluorescence Ti Eclipse Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 57092 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/epifluorescence ti eclipse microscope/product/Nikon
    Average 99 stars, based on 57092 article reviews
    epifluorescence ti eclipse microscope - by Bioz Stars, 2026-04
    99/100 stars

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    Analysis of PDNP effect on neurite outgrowth. a) Representative <t>epifluorescence</t> images (tubulin β‐III in green, nuclei in blue), b) median neurite length (** p < 0.01), and c) neurite/cell ratio (*** p < 0.001) for cultures in Earth gravity regimen. d) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), e) median neurite length (** p < 0.01), and f) neurite/cell ratio (*** p < 0.001) for cultures in simulated microgravity.
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    Analysis of PDNP effect on neurite outgrowth. a) Representative <t>epifluorescence</t> images (tubulin β‐III in green, nuclei in blue), b) median neurite length (** p < 0.01), and c) neurite/cell ratio (*** p < 0.001) for cultures in Earth gravity regimen. d) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), e) median neurite length (** p < 0.01), and f) neurite/cell ratio (*** p < 0.001) for cultures in simulated microgravity.
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    Analysis of PDNP effect on neurite outgrowth. a) Representative <t>epifluorescence</t> images (tubulin β‐III in green, nuclei in blue), b) median neurite length (** p < 0.01), and c) neurite/cell ratio (*** p < 0.001) for cultures in Earth gravity regimen. d) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), e) median neurite length (** p < 0.01), and f) neurite/cell ratio (*** p < 0.001) for cultures in simulated microgravity.
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    Analysis of PDNP effect on neurite outgrowth. a) Representative <t>epifluorescence</t> images (tubulin β‐III in green, nuclei in blue), b) median neurite length (** p < 0.01), and c) neurite/cell ratio (*** p < 0.001) for cultures in Earth gravity regimen. d) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), e) median neurite length (** p < 0.01), and f) neurite/cell ratio (*** p < 0.001) for cultures in simulated microgravity.
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    Nikon eclipse ti e epifluorescent microscope
    Analysis of PDNP effect on neurite outgrowth. a) Representative <t>epifluorescence</t> images (tubulin β‐III in green, nuclei in blue), b) median neurite length (** p < 0.01), and c) neurite/cell ratio (*** p < 0.001) for cultures in Earth gravity regimen. d) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), e) median neurite length (** p < 0.01), and f) neurite/cell ratio (*** p < 0.001) for cultures in simulated microgravity.
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    Average 99 stars, based on 1 article reviews
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    Analysis of PDNP effect on neurite outgrowth. a) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), b) median neurite length (** p < 0.01), and c) neurite/cell ratio (*** p < 0.001) for cultures in Earth gravity regimen. d) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), e) median neurite length (** p < 0.01), and f) neurite/cell ratio (*** p < 0.001) for cultures in simulated microgravity.

    Journal: Small Science

    Article Title: Polydopamine‐Based Antioxidant Countermeasures Against Spaceflight‐Induced Neurodegeneration

    doi: 10.1002/smsc.202500510

    Figure Lengend Snippet: Analysis of PDNP effect on neurite outgrowth. a) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), b) median neurite length (** p < 0.01), and c) neurite/cell ratio (*** p < 0.001) for cultures in Earth gravity regimen. d) Representative epifluorescence images (tubulin β‐III in green, nuclei in blue), e) median neurite length (** p < 0.01), and f) neurite/cell ratio (*** p < 0.001) for cultures in simulated microgravity.

    Article Snippet: After three DPBS rinses, cells were imaged with a Nikon Eclipse Ti epifluorescence microscope (10× objective), and image analysis was performed with ImageJ.

    Techniques: