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mrc 1024 es confocal laser scanning microscope  (Bio-Rad)


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    Bio-Rad mrc 1024 es confocal laser scanning microscope
    Mrc 1024 Es Confocal Laser Scanning Microscope, supplied by Bio-Rad, 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/mrc-1024+laser+scanning+confocal+microscope/mrc+1024+confocal+microscope/pmc11054682-39-18-26
    Average 90 stars, based on 1 article reviews
    mrc 1024 es confocal laser scanning microscope - by Bioz Stars, 2026-09
    90/100 stars

    Images

    Related Articles

    Fluorescence:

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations.
    Article Snippet: Biological effects of high fluence low-power (HFLP) lasers have been reported for some time, yet the molecular mechanisms procuring cellular responses remain obscure.. A better understanding of the effects of HFLP lasers on living cells will be instrumental for the development of new experimental and therapeutic strategies.. Therefore, we investigated sub-cellular mechanisms involved in the laser interaction with human hepatic cell lines.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Cells were stained with 1 μM JC-1 probe, irradiated with different laser wavelengths, and imaged using Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: The accompanying decrease in fluorescence intensity was analyzed by Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Synthetic dimeric cinchona alkaloids against cancer
    Article Snippet: After 24 hr of culture, cells were costained with a rabbit polyclonal antitubulin antibody (Green Fluorescence) and the DNA-specific dye Toto-3 (Blue Fluorescence) and examined by laser scanning confocal microscopy using a Bio-Rad MRC-1024 Laser Scanning Confocal Microscope equipped with a Kr/Ar laser (Bio-Rad, Hercules, Calif., USA) mounted on a Nikon Eclipse E800 upright microscope with high numerical aperture objectives (Nikon, Melville, N.Y., USA), as described ((Uckun, F. M. et al., Proc.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Subsequently images were captured using Bio-Rad MRC-1024 laser scanning confocal microscope (Bio-Rad, Cambridge, MA, US).

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: After experimental laser treatment, cellular media were replaced by media containing 5 μM thioflavin T for 30 min. Thioflavin T fluorescence intensities were assessed using Bio-Rad MRC-1024 laser scanning confocal microscope with 450/485-nm excitation/emission filters set as previously described [ 36 ].

    Article Title: Expression and Membrane Topology of Anopheles gambiae Odorant Receptors in Lepidopteran Insect Cells
    Article Snippet: The cells were finally mounted with p-phenyl-diamine (optional staining with DAPI) and observed with a BioRad MRC-1024 laser scanning confocal microscope.

    Confocal Microscopy:

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations.
    Article Snippet: Biological effects of high fluence low-power (HFLP) lasers have been reported for some time, yet the molecular mechanisms procuring cellular responses remain obscure.. A better understanding of the effects of HFLP lasers on living cells will be instrumental for the development of new experimental and therapeutic strategies.. Therefore, we investigated sub-cellular mechanisms involved in the laser interaction with human hepatic cell lines.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Cells were stained with 1 μM JC-1 probe, irradiated with different laser wavelengths, and imaged using Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: The accompanying decrease in fluorescence intensity was analyzed by Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Synthetic dimeric cinchona alkaloids against cancer
    Article Snippet: After 24 hr of culture, cells were costained with a rabbit polyclonal antitubulin antibody (Green Fluorescence) and the DNA-specific dye Toto-3 (Blue Fluorescence) and examined by laser scanning confocal microscopy using a Bio-Rad MRC-1024 Laser Scanning Confocal Microscope equipped with a Kr/Ar laser (Bio-Rad, Hercules, Calif., USA) mounted on a Nikon Eclipse E800 upright microscope with high numerical aperture objectives (Nikon, Melville, N.Y., USA), as described ((Uckun, F. M. et al., Proc.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Subsequently images were captured using Bio-Rad MRC-1024 laser scanning confocal microscope (Bio-Rad, Cambridge, MA, US).

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: After experimental laser treatment, cellular media were replaced by media containing 5 μM thioflavin T for 30 min. Thioflavin T fluorescence intensities were assessed using Bio-Rad MRC-1024 laser scanning confocal microscope with 450/485-nm excitation/emission filters set as previously described [ 36 ].

    Article Title: Expression and Membrane Topology of Anopheles gambiae Odorant Receptors in Lepidopteran Insect Cells
    Article Snippet: The cells were finally mounted with p-phenyl-diamine (optional staining with DAPI) and observed with a BioRad MRC-1024 laser scanning confocal microscope.

    Microscopy:

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations.
    Article Snippet: Biological effects of high fluence low-power (HFLP) lasers have been reported for some time, yet the molecular mechanisms procuring cellular responses remain obscure.. A better understanding of the effects of HFLP lasers on living cells will be instrumental for the development of new experimental and therapeutic strategies.. Therefore, we investigated sub-cellular mechanisms involved in the laser interaction with human hepatic cell lines.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Cells were stained with 1 μM JC-1 probe, irradiated with different laser wavelengths, and imaged using Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: The accompanying decrease in fluorescence intensity was analyzed by Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Synthetic dimeric cinchona alkaloids against cancer
    Article Snippet: After 24 hr of culture, cells were costained with a rabbit polyclonal antitubulin antibody (Green Fluorescence) and the DNA-specific dye Toto-3 (Blue Fluorescence) and examined by laser scanning confocal microscopy using a Bio-Rad MRC-1024 Laser Scanning Confocal Microscope equipped with a Kr/Ar laser (Bio-Rad, Hercules, Calif., USA) mounted on a Nikon Eclipse E800 upright microscope with high numerical aperture objectives (Nikon, Melville, N.Y., USA), as described ((Uckun, F. M. et al., Proc.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Subsequently images were captured using Bio-Rad MRC-1024 laser scanning confocal microscope (Bio-Rad, Cambridge, MA, US).

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: After experimental laser treatment, cellular media were replaced by media containing 5 μM thioflavin T for 30 min. Thioflavin T fluorescence intensities were assessed using Bio-Rad MRC-1024 laser scanning confocal microscope with 450/485-nm excitation/emission filters set as previously described [ 36 ].

    Article Title: Expression and Membrane Topology of Anopheles gambiae Odorant Receptors in Lepidopteran Insect Cells
    Article Snippet: The cells were finally mounted with p-phenyl-diamine (optional staining with DAPI) and observed with a BioRad MRC-1024 laser scanning confocal microscope.

    Staining:

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations.
    Article Snippet: Biological effects of high fluence low-power (HFLP) lasers have been reported for some time, yet the molecular mechanisms procuring cellular responses remain obscure.. A better understanding of the effects of HFLP lasers on living cells will be instrumental for the development of new experimental and therapeutic strategies.. Therefore, we investigated sub-cellular mechanisms involved in the laser interaction with human hepatic cell lines.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Cells were stained with 1 μM JC-1 probe, irradiated with different laser wavelengths, and imaged using Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: The accompanying decrease in fluorescence intensity was analyzed by Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Synthetic dimeric cinchona alkaloids against cancer
    Article Snippet: After 24 hr of culture, cells were costained with a rabbit polyclonal antitubulin antibody (Green Fluorescence) and the DNA-specific dye Toto-3 (Blue Fluorescence) and examined by laser scanning confocal microscopy using a Bio-Rad MRC-1024 Laser Scanning Confocal Microscope equipped with a Kr/Ar laser (Bio-Rad, Hercules, Calif., USA) mounted on a Nikon Eclipse E800 upright microscope with high numerical aperture objectives (Nikon, Melville, N.Y., USA), as described ((Uckun, F. M. et al., Proc.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Subsequently images were captured using Bio-Rad MRC-1024 laser scanning confocal microscope (Bio-Rad, Cambridge, MA, US).

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: After experimental laser treatment, cellular media were replaced by media containing 5 μM thioflavin T for 30 min. Thioflavin T fluorescence intensities were assessed using Bio-Rad MRC-1024 laser scanning confocal microscope with 450/485-nm excitation/emission filters set as previously described [ 36 ].

    Article Title: Expression and Membrane Topology of Anopheles gambiae Odorant Receptors in Lepidopteran Insect Cells
    Article Snippet: The cells were finally mounted with p-phenyl-diamine (optional staining with DAPI) and observed with a BioRad MRC-1024 laser scanning confocal microscope.

    Imaging:

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations.
    Article Snippet: Biological effects of high fluence low-power (HFLP) lasers have been reported for some time, yet the molecular mechanisms procuring cellular responses remain obscure.. A better understanding of the effects of HFLP lasers on living cells will be instrumental for the development of new experimental and therapeutic strategies.. Therefore, we investigated sub-cellular mechanisms involved in the laser interaction with human hepatic cell lines.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Cells were stained with 1 μM JC-1 probe, irradiated with different laser wavelengths, and imaged using Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: The accompanying decrease in fluorescence intensity was analyzed by Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Synthetic dimeric cinchona alkaloids against cancer
    Article Snippet: After 24 hr of culture, cells were costained with a rabbit polyclonal antitubulin antibody (Green Fluorescence) and the DNA-specific dye Toto-3 (Blue Fluorescence) and examined by laser scanning confocal microscopy using a Bio-Rad MRC-1024 Laser Scanning Confocal Microscope equipped with a Kr/Ar laser (Bio-Rad, Hercules, Calif., USA) mounted on a Nikon Eclipse E800 upright microscope with high numerical aperture objectives (Nikon, Melville, N.Y., USA), as described ((Uckun, F. M. et al., Proc.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Subsequently images were captured using Bio-Rad MRC-1024 laser scanning confocal microscope (Bio-Rad, Cambridge, MA, US).

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: After experimental laser treatment, cellular media were replaced by media containing 5 μM thioflavin T for 30 min. Thioflavin T fluorescence intensities were assessed using Bio-Rad MRC-1024 laser scanning confocal microscope with 450/485-nm excitation/emission filters set as previously described [ 36 ].

    Article Title: Expression and Membrane Topology of Anopheles gambiae Odorant Receptors in Lepidopteran Insect Cells
    Article Snippet: The cells were finally mounted with p-phenyl-diamine (optional staining with DAPI) and observed with a BioRad MRC-1024 laser scanning confocal microscope.

    Irradiation:

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations.
    Article Snippet: Biological effects of high fluence low-power (HFLP) lasers have been reported for some time, yet the molecular mechanisms procuring cellular responses remain obscure.. A better understanding of the effects of HFLP lasers on living cells will be instrumental for the development of new experimental and therapeutic strategies.. Therefore, we investigated sub-cellular mechanisms involved in the laser interaction with human hepatic cell lines.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Cells were stained with 1 μM JC-1 probe, irradiated with different laser wavelengths, and imaged using Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: The accompanying decrease in fluorescence intensity was analyzed by Bio-Rad MRC-1024 laser scanning confocal microscope.

    Article Title: Synthetic dimeric cinchona alkaloids against cancer
    Article Snippet: After 24 hr of culture, cells were costained with a rabbit polyclonal antitubulin antibody (Green Fluorescence) and the DNA-specific dye Toto-3 (Blue Fluorescence) and examined by laser scanning confocal microscopy using a Bio-Rad MRC-1024 Laser Scanning Confocal Microscope equipped with a Kr/Ar laser (Bio-Rad, Hercules, Calif., USA) mounted on a Nikon Eclipse E800 upright microscope with high numerical aperture objectives (Nikon, Melville, N.Y., USA), as described ((Uckun, F. M. et al., Proc.

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: Subsequently images were captured using Bio-Rad MRC-1024 laser scanning confocal microscope (Bio-Rad, Cambridge, MA, US).

    Article Title: Light-induced modulation of the mitochondrial respiratory chain activity: possibilities and limitations
    Article Snippet: After experimental laser treatment, cellular media were replaced by media containing 5 μM thioflavin T for 30 min. Thioflavin T fluorescence intensities were assessed using Bio-Rad MRC-1024 laser scanning confocal microscope with 450/485-nm excitation/emission filters set as previously described [ 36 ].

    Article Title: Expression and Membrane Topology of Anopheles gambiae Odorant Receptors in Lepidopteran Insect Cells
    Article Snippet: The cells were finally mounted with p-phenyl-diamine (optional staining with DAPI) and observed with a BioRad MRC-1024 laser scanning confocal microscope.



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