intensilight epifluorescence source (Nikon)
96
Structured Review
Nikon
intensilight epifluorescence source
Intensilight Epifluorescence Source, supplied by Nikon, used in various techniques. Bioz Stars score: 96/100, based on 1024 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/intensilight+epifluorescence+source/Intensilight/pm24417287__ja411339f_si_001-85-13-16
Average 96 stars, based on 1024 article reviews
Intensilight Epifluorescence Source, supplied by Nikon, used in various techniques. Bioz Stars score: 96/100, based on 1024 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/intensilight+epifluorescence+source/Intensilight/pm24417287__ja411339f_si_001-85-13-16
Average 96 stars, based on 1024 article reviews
intensilight epifluorescence source - by Bioz Stars,
2026-09
96/100 stars
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Related Articles
Microscopy:Article Title: Light-responsive Polymer Particles as Force Clamps for Mechanical Unfolding of Target Molecules Article Snippet: The galvo system was integrated with a Nikon Eclipse Ti microscope driven by the Elements software package. .. The microscope features an Evolve electron multiplying charge coupled device (EMCCD; Photometrics), an Article Title: Supplementary information: Quantum dots encapsulated within phospholipid membranes: phase-dependent structure, photostability, and site-selective functionalization Article Snippet: The microscope was Nikon Eclipse Ti driven by the Elements software package. .. The microscope features an Evolve electron multiplying charge coupled device (CCD; Photometrics), an Article Title: Supporting Information: Titin-Based Nanoparticle Tension Sensors Map High- Magnitude Integrin Forces within Focal Adhesions Article Snippet: A Nikon Eclipse Ti microscope driven by the Elements software package was used for imaging. .. The microscope is equipped with a TIRF launcher with three laser lines: 488 nm (10 mW), 561 (50 mW), and 638 nm (20 mW), an Article Title: Force-Induced Site-Specific Enzymatic Cleavage Probes Reveal That Serial Mechanical Engagement Boosts T Cell Activation Article Snippet: Epi fluorescence microscopy and total internal reelection fluorescence (TIRF) microscopy experiments were performed on a Nikon Eclipse Ti inverted microscope driven by the NIS Elements software. .. The microscope features an Evolve electron-multiplying charge-coupled device (Photometrics), an Article Title: Molecular Compressive Force Sensor for Mapping Forces at the Cell–Substrate Interface Article Snippet: .. The microscope used was NSTORM Nikon microscope (Ti E motorized inverted microscope body), operated by Nikon Elements software, equipped with an Article Title: Nanoparticle Tension Probes Patterned at the Nanoscale: Impact of integrin clustering on force transmission Article Snippet: The microscope was a Nikon Eclipse Ti driven by the Elements software package. .. The microscope features an Evolve electron multiplying charge coupled device (EMCCD; Photometrics), an Article Title: Supporting Information Article Snippet: .. Images were acquired using a Nikon Eclipse Ti epifluorescence microscope equipped with a TIRF launcher with three laser lines: 488 nm (10 mW), 561 nm (50 mW), and 638 nm (20 mW), an Article Title: Quantifying T cell receptor mechanics at membrane junctions using DNA origami tension sensors. Article Snippet: The T cell receptor (TCR) is thought to be a mechanosensor, meaning that it transmits mechanical force to its antigen and leverages the force to amplify the specificity and magnitude of TCR signalling.. Although a variety of molecular probes have been proposed to quantify TCR mechanics, these probes are immobilized on hard substrates, and thus fail to reveal fluid TCR–antigen interactions in the physiological context of cell membranes.. Here we developed DNA origami tension sensors (DOTS) which bear force sensors on a DNA origami breadboard and allow mapping of TCR mechanotransduction at dynamic intermembrane junctions. Fluorescence:Article Title: Force-Induced Site-Specific Enzymatic Cleavage Probes Reveal That Serial Mechanical Engagement Boosts T Cell Activation Article Snippet: Epi fluorescence microscopy and total internal reelection fluorescence (TIRF) microscopy experiments were performed on a Nikon Eclipse Ti inverted microscope driven by the NIS Elements software. .. The microscope features an Evolve electron-multiplying charge-coupled device (Photometrics), an Article Title: Quantifying T cell receptor mechanics at membrane junctions using DNA origami tension sensors. Article Snippet: The T cell receptor (TCR) is thought to be a mechanosensor, meaning that it transmits mechanical force to its antigen and leverages the force to amplify the specificity and magnitude of TCR signalling.. Although a variety of molecular probes have been proposed to quantify TCR mechanics, these probes are immobilized on hard substrates, and thus fail to reveal fluid TCR–antigen interactions in the physiological context of cell membranes.. Here we developed DNA origami tension sensors (DOTS) which bear force sensors on a DNA origami breadboard and allow mapping of TCR mechanotransduction at dynamic intermembrane junctions. Inverted Microscopy:Article Title: Molecular Compressive Force Sensor for Mapping Forces at the Cell–Substrate Interface Article Snippet: .. The microscope used was NSTORM Nikon microscope (Ti E motorized inverted microscope body), operated by Nikon Elements software, equipped with an Software:Article Title: Molecular Compressive Force Sensor for Mapping Forces at the Cell–Substrate Interface Article Snippet: .. The microscope used was NSTORM Nikon microscope (Ti E motorized inverted microscope body), operated by Nikon Elements software, equipped with an |