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nis elements advanced research software  (Nikon)


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    Structured Review

    Nikon nis elements advanced research software
    Nis Elements Advanced Research Software, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 39515 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/nis+elements+software/NIS-Elements/pmc12907503-295-24-23
    Average 99 stars, based on 39515 article reviews
    nis elements advanced research software - by Bioz Stars, 2026-09
    99/100 stars

    Images

    Related Articles

    Fluorescence:

    Article Title: Low-density neutrophils preferentially infiltrate the skin compared to conventional neutrophils in an experimental psoriasis model.
    Article Snippet: The sections were counterstained with Hoechst dye 33258 (Life Technologies). .. Images were captured using a fluorescence microscope (Nikon Eclipse) and analyzed with NIS Elements software (Nikon) or PhenoImager (Akoya). ..

    Microscopy:

    Article Title: Low-density neutrophils preferentially infiltrate the skin compared to conventional neutrophils in an experimental psoriasis model.
    Article Snippet: The sections were counterstained with Hoechst dye 33258 (Life Technologies). .. Images were captured using a fluorescence microscope (Nikon Eclipse) and analyzed with NIS Elements software (Nikon) or PhenoImager (Akoya). ..

    Article Title: StrataChip: a microphysiological system capturing dynamic keratinocyte fate and mechanical transitions during human epidermal morphogenesis
    Article Snippet: .. Devices were imaged on a Yokogawa CSU-X1 spinning disk confocal custom-modified by Spectral Applied Research on a Nikon Ti-E microscope with a Evolve EMCCD camera (Photometrics) controlled by NIS Elements software (Nikon) ( ). .. A Apochromat 40x long working distance (LWD) numerical aperture (NA) 1.15 water immersion objective was used with 100-mW diode-pumped solid-state (DPSS) 561 nm (Cobolt Jive) laser.

    Software:

    Article Title: Low-density neutrophils preferentially infiltrate the skin compared to conventional neutrophils in an experimental psoriasis model.
    Article Snippet: The sections were counterstained with Hoechst dye 33258 (Life Technologies). .. Images were captured using a fluorescence microscope (Nikon Eclipse) and analyzed with NIS Elements software (Nikon) or PhenoImager (Akoya). ..

    Article Title: StrataChip: a microphysiological system capturing dynamic keratinocyte fate and mechanical transitions during human epidermal morphogenesis
    Article Snippet: Each device was filled with 1X PBS + 1% penicillin/streptomycin (Sigma) and then stored in parafilmed dishes at 4 °C until imaged. .. Confocal microscopy was conducted on a Yokogawa CSU-W1/SoRa spinning disk confocal with an ORCA Fusion BT sCMOS camera (Hamamatsu) controlled through NIS Elements software (Nikon) ( ). ..

    Article Title: Structural dynamics insights into principles underlying the fitness of new broadly potent AAVs
    Article Snippet: .. Images were acquired using the large image acquisition protocols within the NIS Elements software (Nikon Instruments, Lexington, MA). ..

    Article Title: 3D imaging with enhanced transparency, signal-to-background ratios, and antigen detection using HyPer-3D.
    Article Snippet: .. Images were acquired using a Nikon DS-FI3 camera at a resolution of 2880 × 2048 pixels using the NIS Elements software (Nikon). ..

    Article Title: Early Reduction in Mitochondrial Membrane Potential in Synaptic Mitochondria Contribute to Synaptic Pathology in the EAE Mouse Model of Multiple Sclerosis.
    Article Snippet: .. Image acquisition was controlled with the NIS Elements software (Nikon, Düsseldorf, Germany). https://doi.org/10.3390/ijms27062579 ..

    Article Title: Centriolar satellites regulate CEP350 mRNA localization and centrosome amplification
    Article Snippet: .. All images were collected at 25°C using NIS Elements software (Nikon). ..

    Article Title: StrataChip: a microphysiological system capturing dynamic keratinocyte fate and mechanical transitions during human epidermal morphogenesis
    Article Snippet: .. Devices were imaged on a Yokogawa CSU-X1 spinning disk confocal custom-modified by Spectral Applied Research on a Nikon Ti-E microscope with a Evolve EMCCD camera (Photometrics) controlled by NIS Elements software (Nikon) ( ). .. A Apochromat 40x long working distance (LWD) numerical aperture (NA) 1.15 water immersion objective was used with 100-mW diode-pumped solid-state (DPSS) 561 nm (Cobolt Jive) laser.

    Article Title: Stress Granules Buffers Inflammation by Restricting dsRNA-led Mitochondrial Fragmentation
    Article Snippet: .. Image reconstruction and visualization Images were acquired using Nikon’s NIS Elements software. ..

    Confocal Microscopy:

    Article Title: StrataChip: a microphysiological system capturing dynamic keratinocyte fate and mechanical transitions during human epidermal morphogenesis
    Article Snippet: Each device was filled with 1X PBS + 1% penicillin/streptomycin (Sigma) and then stored in parafilmed dishes at 4 °C until imaged. .. Confocal microscopy was conducted on a Yokogawa CSU-W1/SoRa spinning disk confocal with an ORCA Fusion BT sCMOS camera (Hamamatsu) controlled through NIS Elements software (Nikon) ( ). ..



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    A. brasilense AR mutant exhibits elevated levels of intracellular c-di-GMP. Colony morphology of wild-type A. brasilense Sp7 ( A ) and the AR mutant ( B ) expressing a c-di-GMP biosensor (pFY4535). Cultures were grown for five days at 30 °C on Nfb∗ agar supplemented with KNO 3 . The intracellular c-di-GMP concentration is proportional to the expression of TurboRFP (red), resulting in a red colony color. The AR mutant's more intense coloration indicates higher c-di-GMP accumulation than in the WT. Representative fluorescence microscopy of individual WT and AR mutant cells. Images were captured on a Nikon Eclipse TE2000-U microscope using the following excitation/emission wavelengths: 489/519 nm for AmCyan (green) and 553/574 nm for TurboRFP (red). Gray images are intensity surface plots corresponding to the fluorescence emitted by TurboRFP. Images were processed using Nikon <t>NIS</t> <t>Elements</t> <t>software.</t> All images shown are representative of three independent experiments. Scale bars, 10 mm (colonies); 10 μm (individual cells). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
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    A. brasilense AR mutant exhibits elevated levels of intracellular c-di-GMP. Colony morphology of wild-type A. brasilense Sp7 ( A ) and the AR mutant ( B ) expressing a c-di-GMP biosensor (pFY4535). Cultures were grown for five days at 30 °C on Nfb∗ agar supplemented with KNO 3 . The intracellular c-di-GMP concentration is proportional to the expression of TurboRFP (red), resulting in a red colony color. The AR mutant's more intense coloration indicates higher c-di-GMP accumulation than in the WT. Representative fluorescence microscopy of individual WT and AR mutant cells. Images were captured on a Nikon Eclipse TE2000-U microscope using the following excitation/emission wavelengths: 489/519 nm for AmCyan (green) and 553/574 nm for TurboRFP (red). Gray images are intensity surface plots corresponding to the fluorescence emitted by TurboRFP. Images were processed using Nikon <t>NIS</t> <t>Elements</t> <t>software.</t> All images shown are representative of three independent experiments. Scale bars, 10 mm (colonies); 10 μm (individual cells). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
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    Image Search Results


    A. brasilense AR mutant exhibits elevated levels of intracellular c-di-GMP. Colony morphology of wild-type A. brasilense Sp7 ( A ) and the AR mutant ( B ) expressing a c-di-GMP biosensor (pFY4535). Cultures were grown for five days at 30 °C on Nfb∗ agar supplemented with KNO 3 . The intracellular c-di-GMP concentration is proportional to the expression of TurboRFP (red), resulting in a red colony color. The AR mutant's more intense coloration indicates higher c-di-GMP accumulation than in the WT. Representative fluorescence microscopy of individual WT and AR mutant cells. Images were captured on a Nikon Eclipse TE2000-U microscope using the following excitation/emission wavelengths: 489/519 nm for AmCyan (green) and 553/574 nm for TurboRFP (red). Gray images are intensity surface plots corresponding to the fluorescence emitted by TurboRFP. Images were processed using Nikon NIS Elements software. All images shown are representative of three independent experiments. Scale bars, 10 mm (colonies); 10 μm (individual cells). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

    Journal: Biofilm

    Article Title: Inactivation of Cysteine Synthase CysK-A enhances flocculation, biofilm formation, and sensitivity to oxidative stress in Azospirillum brasilense Sp7

    doi: 10.1016/j.bioflm.2025.100335

    Figure Lengend Snippet: A. brasilense AR mutant exhibits elevated levels of intracellular c-di-GMP. Colony morphology of wild-type A. brasilense Sp7 ( A ) and the AR mutant ( B ) expressing a c-di-GMP biosensor (pFY4535). Cultures were grown for five days at 30 °C on Nfb∗ agar supplemented with KNO 3 . The intracellular c-di-GMP concentration is proportional to the expression of TurboRFP (red), resulting in a red colony color. The AR mutant's more intense coloration indicates higher c-di-GMP accumulation than in the WT. Representative fluorescence microscopy of individual WT and AR mutant cells. Images were captured on a Nikon Eclipse TE2000-U microscope using the following excitation/emission wavelengths: 489/519 nm for AmCyan (green) and 553/574 nm for TurboRFP (red). Gray images are intensity surface plots corresponding to the fluorescence emitted by TurboRFP. Images were processed using Nikon NIS Elements software. All images shown are representative of three independent experiments. Scale bars, 10 mm (colonies); 10 μm (individual cells). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

    Article Snippet: Obtained images were processed and analyzed using Nikon NIS Elements software.

    Techniques: Mutagenesis, Expressing, Concentration Assay, Fluorescence, Microscopy, Software

    A. brasilense AR mutant exhibits elevated levels of intracellular c-di-GMP. Colony morphology of wild-type A. brasilense Sp7 ( A ) and the AR mutant ( B ) expressing a c-di-GMP biosensor (pFY4535). Cultures were grown for five days at 30 °C on Nfb∗ agar supplemented with KNO 3 . The intracellular c-di-GMP concentration is proportional to the expression of TurboRFP (red), resulting in a red colony color. The AR mutant's more intense coloration indicates higher c-di-GMP accumulation than in the WT. Representative fluorescence microscopy of individual WT and AR mutant cells. Images were captured on a Nikon Eclipse TE2000-U microscope using the following excitation/emission wavelengths: 489/519 nm for AmCyan (green) and 553/574 nm for TurboRFP (red). Gray images are intensity surface plots corresponding to the fluorescence emitted by TurboRFP. Images were processed using Nikon NIS Elements software. All images shown are representative of three independent experiments. Scale bars, 10 mm (colonies); 10 μm (individual cells). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

    Journal: Biofilm

    Article Title: Inactivation of Cysteine Synthase CysK-A enhances flocculation, biofilm formation, and sensitivity to oxidative stress in Azospirillum brasilense Sp7

    doi: 10.1016/j.bioflm.2025.100335

    Figure Lengend Snippet: A. brasilense AR mutant exhibits elevated levels of intracellular c-di-GMP. Colony morphology of wild-type A. brasilense Sp7 ( A ) and the AR mutant ( B ) expressing a c-di-GMP biosensor (pFY4535). Cultures were grown for five days at 30 °C on Nfb∗ agar supplemented with KNO 3 . The intracellular c-di-GMP concentration is proportional to the expression of TurboRFP (red), resulting in a red colony color. The AR mutant's more intense coloration indicates higher c-di-GMP accumulation than in the WT. Representative fluorescence microscopy of individual WT and AR mutant cells. Images were captured on a Nikon Eclipse TE2000-U microscope using the following excitation/emission wavelengths: 489/519 nm for AmCyan (green) and 553/574 nm for TurboRFP (red). Gray images are intensity surface plots corresponding to the fluorescence emitted by TurboRFP. Images were processed using Nikon NIS Elements software. All images shown are representative of three independent experiments. Scale bars, 10 mm (colonies); 10 μm (individual cells). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

    Article Snippet: Three-dimensional structures were reconstructed using NIS Elements imaging software for Nikon microscopy (Nikon, Japan).

    Techniques: Mutagenesis, Expressing, Concentration Assay, Fluorescence, Microscopy, Software