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volocity 3d image analysis software  (Revvity)


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    Structured Review

    Revvity volocity 3d image analysis software
    Volocity 3d Image Analysis Software, supplied by Revvity, used in various techniques. Bioz Stars score: 97/100, based on 744 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/volocity+3d+image+analysis+software/Living+Image+Software/pmc10463222-238-7-12
    Average 97 stars, based on 744 article reviews
    volocity 3d image analysis software - by Bioz Stars, 2026-09
    97/100 stars

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    Related Articles

    Software:

    Article Title: Molecular Logic of Synaptic Diversity Between Drosophila Tonic and Phasic Motoneurons
    Article Snippet: Stimulation was applied using an AMPI Master-8 stimulator at 0.3 Hz frequency for a duration of 200 microseconds for an experimental time window of 5 minutes. .. Volocity 3D Image Analysis software (PerkinElmer) was used to acquire and analyze data. ..

    Article Title: Quantum Dot Biomimetic for SARS-CoV-2 to Interrogate Blood–Brain Barrier Damage Relevant to NeuroCOVID Brain Inflammation
    Article Snippet: .. The acquired z-stacks were analyzed using the Volocity 3D Image Analysis software (PerkinElmer). ..

    Article Title: Restoring calcium homeostasis in Purkinje cells arrests neurodegeneration and neuroinflammation in the ARSACS mouse model
    Article Snippet: Stacks of consecutive confocal images of immunofluorescence performed on primary PCs were taken at 0.1 μm intervals using the UltraVIEW Confocal Microscope (PerkinElmer). .. Analyses of soma, dendrite, mitochondria, and ER volume were performed using Volocity 3D Image Analysis Software (version 5.5.1, PerkinElmer). ..

    Article Title: Mechanical force sensing drives extrusion of Enterovirus A71-infected cells from colonic epithelial organoids
    Article Snippet: Organoids were imaged on a LSM 700 confocal microscope (Carl 372 Zeiss) with Zen 2009 software (Carl Zeiss) at 40x or 63x magnification with oil immersion objectives. .. 3D 373 renderings of organoids were generated using Volocity 3D Image Analysis Software (Perkin Elmer). .. 374 Organoids were stained with DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride, Life 375 Technologies, D1306) and Alexa Fluor 660 phalloidin (Invitrogen, A22285) to visualize nuclei and actin.

    Article Title: The Effect of Eicosapentaenoic Acid on Hepatic Metabolism and Intracellular Lipid Droplet Dynamics in An in Vitro Model of Hepatic Steatosis
    Article Snippet: Fluorescent intensity in at least 50 cells per image was analysed using ImageJ software (National Institutes of Health, Bethesda, MD). .. To determine the characteristics of lipid droplets, the 3D confocal image stacks were analysed using Volocity 3D image analysis software (Perkin Elmer, Waltham, MA). ..

    Article Title: Salmonella invasion of a cell is self-limiting due to effector-driven activation of N-WASP
    Article Snippet: .. Volocity 3D Image Analysis Software , Perkin Elmer , RRID: SCR_002668. .. LI-COR Image Studio Software , LI-COR Biosciences , RRID: SCR_015795.

    Article Title: Mechanical force sensing drives extrusion of Enterovirus A71-infected cells from colonic epithelial organoids
    Article Snippet: .. 385 Quantitation of microscopy data 386 Organoid images were viewed using Volocity 3D Image Analysis Software (Perkin Elmer) to gain 387 3D visualization of each organoid. ..

    Article Title: Single-nucleus profiling identifies accelerated oligodendrocyte precursor cell senescence in a mouse model of Down Syndrome
    Article Snippet: All imaging was captured using the Zen Blue software (Carl Zeiss Meditec). .. Digital images obtained from the Zeiss Axio Imager.M2 were then imported to the Volocity 3D Image Analysis Software (PerkinElmer) for subsequent analysis. .. High magnification brightfield images for Olig2/SA-β-gal and Pdgfrα/SA-β-gal analysis were acquired using a 40×/1.3 objective on Nikon Eclipse Ti2-E equipped with a Nikon DS10 color camera, running NIS Elements acquisition software.

    Generated:

    Article Title: Mechanical force sensing drives extrusion of Enterovirus A71-infected cells from colonic epithelial organoids
    Article Snippet: Organoids were imaged on a LSM 700 confocal microscope (Carl 372 Zeiss) with Zen 2009 software (Carl Zeiss) at 40x or 63x magnification with oil immersion objectives. .. 3D 373 renderings of organoids were generated using Volocity 3D Image Analysis Software (Perkin Elmer). .. 374 Organoids were stained with DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride, Life 375 Technologies, D1306) and Alexa Fluor 660 phalloidin (Invitrogen, A22285) to visualize nuclei and actin.

    Quantitation Assay:

    Article Title: Mechanical force sensing drives extrusion of Enterovirus A71-infected cells from colonic epithelial organoids
    Article Snippet: .. 385 Quantitation of microscopy data 386 Organoid images were viewed using Volocity 3D Image Analysis Software (Perkin Elmer) to gain 387 3D visualization of each organoid. ..

    Microscopy:

    Article Title: Mechanical force sensing drives extrusion of Enterovirus A71-infected cells from colonic epithelial organoids
    Article Snippet: .. 385 Quantitation of microscopy data 386 Organoid images were viewed using Volocity 3D Image Analysis Software (Perkin Elmer) to gain 387 3D visualization of each organoid. ..



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    Quorum Technologies volocity 3d image analysis software v 6.5.1
    NCAPD2 and NCAPD3 associate to form SCCs in a L1 RNA dependent manner. ( A ) Reciprocal NCAPD3 and NCAPD2 co-IP/immunoblots were conducted in HT-29 cells to detect an association between NCAPD3 and NCAPD2. Antibody only (i.e. no lysate) and IgG antibody IPs served as negative controls. Each experiment was performed three times and representative blots are shown. ( B ) NCAPG2 co-IP/immunoblot experiments were conducted in HT-29 cells to detect an association with NCAPD2 (middle panel) and with NCAPG (bottom panel). Antibody only (i.e. no lysate) and IgG antibody IPs served as negative controls. Each experiment was performed three times and representative blots are shown. ( C ) Proximity Ligation Assays (PLAs) were performed to detect an association between NCAPD2 and NCAPD3 in HT-29 cells transfected with control (siCTRL) or L1 siRNA (siL1). Single antibody controls were performed in parallel for each experiment. Images were taken using a confocal microscope with a 63x objective; maximum projections are shown. ( D ) <t>Volocity</t> imaging software was used to analyze confocal images and quantify the average number of nuclear and cytoplasmic PLA foci per cell. Each dot represents the average of 50–150 nuclei evaluated from a single image. Images were taken from three independent experiments. ( E ) PLAs were performed to detect associations between NCAPD3 and NCAPG2 in HT-29 cells transfected with siCTRL or siL1 and results were quantified as described in (D). P values were determined by performing unpaired t -tests. * P ≤ 0.05, ** P ≤ 0.01, *** P ≤ 0.001, **** P ≤ 0.0001, ns = not significant. Error bars indicate standard deviations from the mean.
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    Image Search Results


    NCAPD2 and NCAPD3 associate to form SCCs in a L1 RNA dependent manner. ( A ) Reciprocal NCAPD3 and NCAPD2 co-IP/immunoblots were conducted in HT-29 cells to detect an association between NCAPD3 and NCAPD2. Antibody only (i.e. no lysate) and IgG antibody IPs served as negative controls. Each experiment was performed three times and representative blots are shown. ( B ) NCAPG2 co-IP/immunoblot experiments were conducted in HT-29 cells to detect an association with NCAPD2 (middle panel) and with NCAPG (bottom panel). Antibody only (i.e. no lysate) and IgG antibody IPs served as negative controls. Each experiment was performed three times and representative blots are shown. ( C ) Proximity Ligation Assays (PLAs) were performed to detect an association between NCAPD2 and NCAPD3 in HT-29 cells transfected with control (siCTRL) or L1 siRNA (siL1). Single antibody controls were performed in parallel for each experiment. Images were taken using a confocal microscope with a 63x objective; maximum projections are shown. ( D ) Volocity imaging software was used to analyze confocal images and quantify the average number of nuclear and cytoplasmic PLA foci per cell. Each dot represents the average of 50–150 nuclei evaluated from a single image. Images were taken from three independent experiments. ( E ) PLAs were performed to detect associations between NCAPD3 and NCAPG2 in HT-29 cells transfected with siCTRL or siL1 and results were quantified as described in (D). P values were determined by performing unpaired t -tests. * P ≤ 0.05, ** P ≤ 0.01, *** P ≤ 0.001, **** P ≤ 0.0001, ns = not significant. Error bars indicate standard deviations from the mean.

    Journal: Nucleic Acids Research

    Article Title: Condensin I and condensin II proteins form a LINE-1 dependent super condensin complex and cooperate to repress LINE-1

    doi: 10.1093/nar/gkac802

    Figure Lengend Snippet: NCAPD2 and NCAPD3 associate to form SCCs in a L1 RNA dependent manner. ( A ) Reciprocal NCAPD3 and NCAPD2 co-IP/immunoblots were conducted in HT-29 cells to detect an association between NCAPD3 and NCAPD2. Antibody only (i.e. no lysate) and IgG antibody IPs served as negative controls. Each experiment was performed three times and representative blots are shown. ( B ) NCAPG2 co-IP/immunoblot experiments were conducted in HT-29 cells to detect an association with NCAPD2 (middle panel) and with NCAPG (bottom panel). Antibody only (i.e. no lysate) and IgG antibody IPs served as negative controls. Each experiment was performed three times and representative blots are shown. ( C ) Proximity Ligation Assays (PLAs) were performed to detect an association between NCAPD2 and NCAPD3 in HT-29 cells transfected with control (siCTRL) or L1 siRNA (siL1). Single antibody controls were performed in parallel for each experiment. Images were taken using a confocal microscope with a 63x objective; maximum projections are shown. ( D ) Volocity imaging software was used to analyze confocal images and quantify the average number of nuclear and cytoplasmic PLA foci per cell. Each dot represents the average of 50–150 nuclei evaluated from a single image. Images were taken from three independent experiments. ( E ) PLAs were performed to detect associations between NCAPD3 and NCAPG2 in HT-29 cells transfected with siCTRL or siL1 and results were quantified as described in (D). P values were determined by performing unpaired t -tests. * P ≤ 0.05, ** P ≤ 0.01, *** P ≤ 0.001, **** P ≤ 0.0001, ns = not significant. Error bars indicate standard deviations from the mean.

    Article Snippet: Nuclear PLA foci were identified and quantified from 3D images of individual focal planes within z-stacks, using Volocity 3D Image Analysis Software v 6.5.1 (Quorum Technologies Inc. Puslinch, Ontario).

    Techniques: Co-Immunoprecipitation Assay, Western Blot, Ligation, Transfection, Control, Microscopy, Imaging, Software

    NRTI Treatment reduces L1 transcripts and L1 retrotransposition events and decreases cytoplasmic SCC formation. ( A ) HT-29 cells were treated with either DMSO or DMSO containing Zidovudine and Didanosine at the indicated drug concentrations for 10 days then fixed and stained with crystal violet (CV) to measure cell toxicity. Shown are averages from three independent experiments. ( B ) Retrotransposition assays were performed using HT-29 cells that were transfected with pJM101/L1.3 and treated with either DMSO or a combination of the nucleoside reverse transcriptase inhibitors (NRTIs) Zidovudine and Didanosine; each drug was at a final concentration of 50 μM in tissue culture media. Quantification of retrotransposition assays from three independent experiments is shown. ( C ) qRT-PCR analysis of endogenous L1 RNA levels (using a 5′UTR primer pair; See and Methods) in HT-29 cells treated with either DMSO or NRTIs. The average relative transcript levels for three independent experiments are shown. ( D ) PLA was performed to detect an association between NCAPD2 and NCAPD3 in HT-29 cells treated with DMSO or NRTIs at a final concentration of 50μM in tissue culture media. Single antibody controls were performed in parallel for each experiment. Images were taken using a confocal microscope with a 63x objective and maximum projections are shown. Volocity imaging software was used to analyze confocal images as noted in Figure to quantify the average number of nuclear (left chart) and cytoplasmic (right chart) PLA foci per cell. P values were determined by performing unpaired t -tests. * P ≤ 0.05, ** P ≤ 0.01, *** P ≤ 0.001, ns = not significant. Error bars indicate standard deviations from the mean.

    Journal: Nucleic Acids Research

    Article Title: Condensin I and condensin II proteins form a LINE-1 dependent super condensin complex and cooperate to repress LINE-1

    doi: 10.1093/nar/gkac802

    Figure Lengend Snippet: NRTI Treatment reduces L1 transcripts and L1 retrotransposition events and decreases cytoplasmic SCC formation. ( A ) HT-29 cells were treated with either DMSO or DMSO containing Zidovudine and Didanosine at the indicated drug concentrations for 10 days then fixed and stained with crystal violet (CV) to measure cell toxicity. Shown are averages from three independent experiments. ( B ) Retrotransposition assays were performed using HT-29 cells that were transfected with pJM101/L1.3 and treated with either DMSO or a combination of the nucleoside reverse transcriptase inhibitors (NRTIs) Zidovudine and Didanosine; each drug was at a final concentration of 50 μM in tissue culture media. Quantification of retrotransposition assays from three independent experiments is shown. ( C ) qRT-PCR analysis of endogenous L1 RNA levels (using a 5′UTR primer pair; See and Methods) in HT-29 cells treated with either DMSO or NRTIs. The average relative transcript levels for three independent experiments are shown. ( D ) PLA was performed to detect an association between NCAPD2 and NCAPD3 in HT-29 cells treated with DMSO or NRTIs at a final concentration of 50μM in tissue culture media. Single antibody controls were performed in parallel for each experiment. Images were taken using a confocal microscope with a 63x objective and maximum projections are shown. Volocity imaging software was used to analyze confocal images as noted in Figure to quantify the average number of nuclear (left chart) and cytoplasmic (right chart) PLA foci per cell. P values were determined by performing unpaired t -tests. * P ≤ 0.05, ** P ≤ 0.01, *** P ≤ 0.001, ns = not significant. Error bars indicate standard deviations from the mean.

    Article Snippet: Nuclear PLA foci were identified and quantified from 3D images of individual focal planes within z-stacks, using Volocity 3D Image Analysis Software v 6.5.1 (Quorum Technologies Inc. Puslinch, Ontario).

    Techniques: Staining, Transfection, Reverse Transcription, Concentration Assay, Quantitative RT-PCR, Microscopy, Imaging, Software

    The 3′UTR of L1 RNA antagonizes SCC formation. ( A ) HT-29 cells were transfected with the pCEP4 empty vector, pJM101/L1.3 expression vector, or L1 expression vector harboring a 3′UTR deletion (pJM101/L1.3 3′UTRΔ) and Proximity Ligation Assays were performed to detect association between NCAPD2 and NCAPD3. Single antibody controls were performed in parallel for each experiment. Images shown were taken on a confocal microscope with a 63x objective and maximum projections are shown. ( B , C ) Volocity imaging software was used to analyze confocal images as noted in Figure to quantify the average number of nuclear (B) and cytoplasmic (C) PLA foci per cell. Images shown were taken from two independent experiments. P values were determined by performing unpaired t -tests. * P ≤ 0.05, ** P ≤ 0.01, *** P ≤ 0.001, ns = not significant. Error bars indicate standard deviations from the mean.

    Journal: Nucleic Acids Research

    Article Title: Condensin I and condensin II proteins form a LINE-1 dependent super condensin complex and cooperate to repress LINE-1

    doi: 10.1093/nar/gkac802

    Figure Lengend Snippet: The 3′UTR of L1 RNA antagonizes SCC formation. ( A ) HT-29 cells were transfected with the pCEP4 empty vector, pJM101/L1.3 expression vector, or L1 expression vector harboring a 3′UTR deletion (pJM101/L1.3 3′UTRΔ) and Proximity Ligation Assays were performed to detect association between NCAPD2 and NCAPD3. Single antibody controls were performed in parallel for each experiment. Images shown were taken on a confocal microscope with a 63x objective and maximum projections are shown. ( B , C ) Volocity imaging software was used to analyze confocal images as noted in Figure to quantify the average number of nuclear (B) and cytoplasmic (C) PLA foci per cell. Images shown were taken from two independent experiments. P values were determined by performing unpaired t -tests. * P ≤ 0.05, ** P ≤ 0.01, *** P ≤ 0.001, ns = not significant. Error bars indicate standard deviations from the mean.

    Article Snippet: Nuclear PLA foci were identified and quantified from 3D images of individual focal planes within z-stacks, using Volocity 3D Image Analysis Software v 6.5.1 (Quorum Technologies Inc. Puslinch, Ontario).

    Techniques: Transfection, Plasmid Preparation, Expressing, Ligation, Microscopy, Imaging, Software