Quickly and Easily Measure Caspase-8 Activity
Cellometer Vision CBA Analysis SystemActivation of Caspase-8 is the first step in the extrinsic apoptosis pathway. Though apoptosis is still reversible at this stage, Caspase-8 activation is frequently used as an early indicator of apoptosis.
Measure GFP-Positive Cells to Determine Transfection Efficiency
Cellometer Vision CBA Analysis SystemWith the Cellometer Vision CBA, just 20µl of sample is added to the Cellometer Counting Chamber. Imaging and analysis of GFP expression is completed in less than 60 seconds.
Cellometer Auto 2000 Cell Analyzer Demonstration
Cellometer Auto 2000 Cell CounterThis demonstration of the Cellometer Auto 2000 operation shows how quickly the automated system delivers total cell count, concentration and mean diameter from only 20µl of sample. Results also include a cell size histogram and percent viability.
Overview of Cellometer Auto 2000 Assays
Cellometer Auto 2000 Cell CounterPerform two-color fluorescence to count live and dead primary cells from peripheral blood, cord blood, and bone marrow. Accurately measure PBMCs, stem cells, splenocytes, tumor lysates, and nucleated cells in samples containing debris and red blood cells in 30 seconds using sample-specific assays and a simple touch screen.
Improve Cell Counting Speed and Accuracy
Cellometer Auto T4 Cell CounterAccurate cell concentration and viability calculations are critical for successful cell-based assays and flow cytometry analysis. The accuracy and reproducibility of the Cellometer Auto T4 Cell Counter have been demonstrated in thousands of labs, including the top ten pharmaceutical companies.
Assessment of Mitochondrial Membrane Potential using Image-Based Cytometry
Cellometer Vision CBA Analysis SystemPerform apoptosis analysis based on changes in mitochondrial membrane potential with only 20µl of sample. See how image-based analysis simplifies cell-based assays. In just a few clicks, acquire cell images and obtain colorized scatter plots and data tables. Easily compare control and experimental samples using a simple, accurate, image-based method.
Image-based Cell Cycle Analysis
Cellometer Vision CBA Analysis SystemPerform cell cycle analysis with only 20µl of sample. See how image-based analysis simplifies cell-based assays. In just a few clicks, acquire cell images and obtain comprehensive plots and tables displaying cell population by phase. Easily switch between users and experiments with no set-up, washing, or potential clogging.
Image-based Analysis of Apoptosis with Annexin V-FITC / PI
Cellometer Vision CBA Analysis SystemSimplify apoptosis experiments with image-based analysis. Colorized data plots easily identify apoptotic and necrotic cells. Manually adjust gating with instant updates to data tables. View brightfield and fluorescent images for confirmation of results. Easily switch between users and experiments with no set-up, washing, or potential clogging.
1-step Yeast Concentration & Viability Determination
Cellometer Auto X4 Cell CounterAutomatically generate yeast concentration and viability data from a single sample. See how brightfield and fluorescent imaging simplifies and enhances yeast fermentation monitoring with 1-click image capture and calculation of yeast concentration, % viability, and cell size. Save time and improve data quality and reproducibility vs. manual counting.
Viability of Fragile Hepatocytes using Image-Based Cytometry
Cellometer Vision Analysis SystemPrimary hepatocytes are a critical component of studies involving liver disease, drug metabolism, and toxicology. Because hepatocytes do not proliferate in culture and display a rapid decline in viability and loss of liver-specific functions under sub-optimal culture conditions, the ability to monitor hepatocytes using a small number of cells is critical. Obtain live/dead cell count, concentration, mean cell diameter and % cell viability for hepatocytes in just 60 seconds from only 20µl of sample using a gentle, non-fluidic analysis method for the most accurate results.
Measuring Live Cell Concentration and Viability of Human PBMC
Cellometer Vision Analysis SystemCellometer Vision is a line of simple to use, automated cell analyzers with diverse functions. It combines bright field microscopy and multi-channel fluorescence images to generate cell count and fluorescence data. This video demonstration features the Cellometer Vision to measure live cell concentration and viability of human PBMC.
Cellometer Auto X4: Measuring Algae Cell Concentration
Cellometer Auto X4 Cell CounterCellometer Auto X4 is a line of simple to use, automated cell counters with fluorescence detection. It combines bright field microscopy with fluorescence to identify selected cells. This video demonstration features the Cellometer Auto X4 to measure algae cell concentration from a pond water sample.
Primary Cell Concentration & Viability using Cellometer Auto 2000 Cell Viability Counter
Cellometer Auto 2000 Cell CounterPerform two-color fluorescence to count live and dead primary cells from peripheral blood, cord blood, and bone marrow. Accurately measure PBMCs, stem cells, splenocytes, tumor lysates, and nucleated cells in samples containing debris and red blood cells in 30 seconds using sample-specific assays and a simple touch screen.
Yeast Cell Concentration & Viability in Corn Mash
Cellometer Vision Analysis SystemCellometer Vision is a line of simple to use, automated cell analyzers with diverse functions. It combines bright field microscopy and multi-channel fluorescence images to generate cell count and fluorescence data. This video demonstration features the Cellometer Vision to measure yeast cell concentration and viability in a highly viscous corn mash sample.
Dual-fluorescent AO/PI Assay for Cell Concentration and Viability
Cellometer Assay PrincipalA Cellometer assay principal illustration of a dual-fluorescent AO/PI assay for cell concentration and viability. This assay is most suitable for primary cell samples which contain debris and unwanted non-nucleated cell types.
Dual-fluorescent AO/EB Assay for Cell Concentration and Viability
Cellometer Assay PrincipalA Cellometer assay principal illustration of a dual-fluorescent AO/EB assay for cell concentration and viability. This assay is most suitable for primary cell samples such as white blood cells, splenocytes and lymphocytes which contain debris and unwanted non nucleated cell types such as red blood cells.
Dual-fluorescent CalceinAM/PI Assay for Cell Concentration and Viability
Cellometer Assay PrincipalA Cellometer assay principal illustration of a dual-fluorescent CalceinAM/PI assay for cell concentration and viability Calcein-AM penetrates the cell membrane of both living and dead cells. Once inside a living cell, Calcein-AM is hydrolyzed by cellular esterases into the cell membrane-impermeable Calcein. PI is only permeable to dead cells.
Save and Export Data
Cellometer FeaturesKeeping records of your research is critical. With the click of a button, Cellometer instantly saves counting results, cell images, graphs and data to a clipboard, local or network location.
Sample Adjustment Calculator
Cellometer FeaturesThe Cellometer Sample Adjustment Calculator is a unique feature that saves time and reduces human error. This tool automatically calculates the number of cells in the sample and allows you to change the original sample volume to meet desired target cell concentration.
Cell Size Measurement
Cellometer FeaturesUnlike manual counting, Cellometer measures both individual and mean cell sizes, and can generate size distribution histograms for all counted cells. Multiple histograms can be overlaid for determining changes in cell sizes over time.
Import Cell Type
Cellometer FeaturesThe Cellometer import cell type feature uses the Nexcelom Cell Library that contains optimized counting parameters for more than 300 difference cell types. Users can import any selected cell type by browsing the Nexcelom Cell Library. Cellometer application specialist will optimize counting parameters for your cell type, free of charge.



