axio-vision 4.7.1 release software (Carl Zeiss)
90
Structured Review
Carl Zeiss
axio-vision 4.7.1 release software
Axio Vision 4.7.1 Release Software, supplied by Carl Zeiss, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/axio-vision+4%2E7%2E1+release+software/AxioVision+4+Module+Interactive+Measurement/pm32928416-86-24-28
Average 90 stars, based on 1 article reviews
Axio Vision 4.7.1 Release Software, supplied by Carl Zeiss, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/axio-vision+4%2E7%2E1+release+software/AxioVision+4+Module+Interactive+Measurement/pm32928416-86-24-28
Average 90 stars, based on 1 article reviews
axio-vision 4.7.1 release software - by Bioz Stars,
2026-09
90/100 stars
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Fluorescence:Article Title: Dielectrophoretic Capture of E. coli Cells at Nanoelectrode Arrays Article Snippet: A filter set with excitation wavelength of 540–552 nm and emission wavelength of 567–647 nm ( Article Title: AC dielectrophoretic manipulation and electroporation of vaccinia virus using carbon nanoelectrode arrays. Article Snippet: This paper reports the capture and detection of vaccinia virus particles based on AC dielectrophoresis (DEP) and electrochemical impedance measurements employing an embedded vertically aligned carbon nanofiber (VACNF) nanoelectrode array (NEA) versus a macroscopic indiumtin-oxide (ITO) transparent electrode in a “points-and-lid” configuration.. The nano-DEP device was fabricated by bonding two SU-8 covered electrodes patterned using photolithography.. The bottom electrode contains a 200 × 200 m active region on a randomly distributed NEA and the top electrode contains a microfluidic channel in SU-8 spin-coated on ITO to guide the flow of the virus solution. Article Title: SERS-active Au@Ag core-shell nanorod (Au@AgNR) tags for ultrasensitive bacteria detection and antibiotic-susceptibility testing. Article Snippet: Axio Cam MRm was used to record fluorescence videos at an exposure time of 0.7 s with 152 a multi-dimensional acquisition mode in the Article Title: Manipulation of bacteriophages with dielectrophoresis on carbon nanofiber nanoelectrode arrays. Article Snippet: The fluorescence videos were recorded with an exposure time of 0.2–0.5 s and 0–1.0 s waiting time per frame using multidimensional acquisition mode in the Article Title: Integration of a nanostructured dielectrophoretic device and a surface-enhanced Raman probe for highly sensitive rapid bacteria detection. Article Snippet: This work reports a synergistic approach for the concentration, detection and kinetic monitoring of pathogens through the integration of nanostructured dielectrophoresis (DEP) with nanotaglabelled Surface Enhanced Raman Scattering (SERS).. A nanoelectrode array made of embedded Vertically Aligned Carbon Nanofibers (VACNFs) at the bottom of a microfluidic chip was used to effectively capture and concentrate nanotag-labelled E. coli DHα5 cells into a 200 μm x 200 μm area on which a Raman laser probe was focused.. The SERS nanotags were based on iron oxide-gold (IO-Au) core-shell nanoovals (NOVs) of ~50 nm in size, which were coated with a QSY21 Raman reporter and attached to E. coli through specific immunochemistry. Software:Article Title: Dielectrophoretic Capture of E. coli Cells at Nanoelectrode Arrays Article Snippet: A filter set with excitation wavelength of 540–552 nm and emission wavelength of 567–647 nm ( Article Title: AC dielectrophoretic manipulation and electroporation of vaccinia virus using carbon nanoelectrode arrays. Article Snippet: This paper reports the capture and detection of vaccinia virus particles based on AC dielectrophoresis (DEP) and electrochemical impedance measurements employing an embedded vertically aligned carbon nanofiber (VACNF) nanoelectrode array (NEA) versus a macroscopic indiumtin-oxide (ITO) transparent electrode in a “points-and-lid” configuration.. The nano-DEP device was fabricated by bonding two SU-8 covered electrodes patterned using photolithography.. The bottom electrode contains a 200 × 200 m active region on a randomly distributed NEA and the top electrode contains a microfluidic channel in SU-8 spin-coated on ITO to guide the flow of the virus solution. Article Title: SERS-active Au@Ag core-shell nanorod (Au@AgNR) tags for ultrasensitive bacteria detection and antibiotic-susceptibility testing. Article Snippet: Axio Cam MRm was used to record fluorescence videos at an exposure time of 0.7 s with 152 a multi-dimensional acquisition mode in the Article Title: Manipulation of bacteriophages with dielectrophoresis on carbon nanofiber nanoelectrode arrays. Article Snippet: The fluorescence videos were recorded with an exposure time of 0.2–0.5 s and 0–1.0 s waiting time per frame using multidimensional acquisition mode in the Article Title: Integration of a nanostructured dielectrophoretic device and a surface-enhanced Raman probe for highly sensitive rapid bacteria detection. Article Snippet: This work reports a synergistic approach for the concentration, detection and kinetic monitoring of pathogens through the integration of nanostructured dielectrophoresis (DEP) with nanotaglabelled Surface Enhanced Raman Scattering (SERS).. A nanoelectrode array made of embedded Vertically Aligned Carbon Nanofibers (VACNFs) at the bottom of a microfluidic chip was used to effectively capture and concentrate nanotag-labelled E. coli DHα5 cells into a 200 μm x 200 μm area on which a Raman laser probe was focused.. The SERS nanotags were based on iron oxide-gold (IO-Au) core-shell nanoovals (NOVs) of ~50 nm in size, which were coated with a QSY21 Raman reporter and attached to E. coli through specific immunochemistry. |