| Availability: | |
|---|---|
| Quantity: | |
Semiconductor laser flow cytometry method for WBC differentiation for accurate measurements
Compact design: Compact and space-saving, suitable for veterinary hospitals with limited space.
Several designs reduce reagent consumption and operating costs.
The vet hematology analyzer machine has a high-precision detection technology, which can quickly and accurately measure various biochemical indicators in the sample.
It is simple and easy to operate, even for those without specialized knowledge.
The vet hematology analyzer machine has a fast detection speed and automated operation process, which can complete the testing of many samples quickly. Up to 60 tests per hour.
| Model | HA-610VET | ||||
|---|---|---|---|---|---|
| Basic parameters | Throughput | 60T/H | |||
| Test parameters | 29 Parameters: WBC, Lym%, Mon%, Neu%, Bas%, Eos%, Lym#,Mon#, Neu#, Eos#, Bas#, RBC, HGB, HCT, MCV, MCH, MCHC, RDW-CV, RDW-SD, PLT, MPV, PDW, PCT, P-LCR, P-LCC, LIC%, LIC#, ALY%, ALY# | ||||
| Histogram | 2 Scatter plots, 2 Histograms (including RBC, PLT histograms) | ||||
| Principle technology | Triangular laser scattering and sheath flow methods are used to detect white blood cells, impedance method is used to detect red blood cells and platelets, cyanide-free method is used to detect hemoglobin, and immune scattering turbidimetry is used to detect specific protein concentrations. | ||||
| Aisle | 4 | ||||
| Gemstone hole diameter | RBC/PLT Gem Hole Diameter: 70 um | ||||
| Analysis Methods | CBC, CBC+DIFF, HGB, RBC, WBC | ||||
| HGB lamp wavelength | LED light wavelength 530 nm | ||||
| Sample volume | Whole blood mode: 20ul, pre-diluted mode: 20ul | ||||
| Species of Animals | Dog, Cat, Rabbit, Cattle, Horse, Sheep, Deer, Monkey, Rat, Pig, Ferret, Camel, Tiger, Dolphin, Mouse, Panda | ||||
| software | Calibration | Manual, automatic and fresh blood calibration | |||
| Counting Mode | Whole blood, capillary whole blood, pre-diluted | ||||
| Automatic printing, manual printing | |||||
| LISsystem | support LIS | ||||
| Reagent | Reagent | Standard: diluent: 20L, DIFF Lyse: 500ml, LH Lyse: 100mL | |||
| Enhence cleaner | PB cleaner 50ml | ||||
| Specification | Input | 10.4 inch touch screen, keyboard and mouse | |||
| Output | Built-in printer, supports external printer | ||||
| Printing paper | 57×35 mm | ||||
| Communication | 2 USB ports, 1 Ethernet port | ||||
| Storage | 100,000 results | ||||
| Blockage Clearance | High pressure, high pressure washing | ||||
| Sizes(W×D×H) (mm) | 350x450x430 | ||||
| Shipping Size (W×D×H)(mm) | 570x450x710 | ||||
| N.W./G.W. (kg) | 28/36 | ||||
| Others | Operating temperature | 10-30 °C | |||
| Power supply | 100~240 AC, 50/60 Hz, 200VA | ||||
| Relative humidity | ≤85% | ||||
| Atmospheric pressure | 70.0-106.0kPa | ||||
| Performance | Carryover rate | Parameters | CV | ||
| WBC | ≤ 0.5% | ||||
| RBC | ≤ 0.5% | ||||
| HGB | ≤ 0.6% | ||||
| PLT | ≤ 1.0% | ||||
| Blank | Parameters | Background value | |||
| WBC | ≤ 0.2×109/L | ||||
| RBC | ≤ 0.02×1012/L | ||||
| HGB | ≤ 1 g/L | ||||
| HCT | ≤ 0.5% | ||||
| PLT | ≤10×109/L | ||||
| Accuracy | Project | Whole blood sample CV (CV/absolute deviation d) | Pre-diluted sample CV (CV/absolute deviation d) | Measuring range | |
| WBC | ≤2.0% | ≤4.0% | (4.00~15.00)*109/L | ||
| RBC | ≤1.5% | ≤2.0% | (3.50~6.00)*1012/L | ||
| HGB | ≤1.5% | ≤2.0% | (110~180)g/L | ||
| PLT | ≤4.0% | ≤8.0% | (150~500)*109/L | ||
| Linear | Project | Linear range | Linearity deviation (whole blood mode) | ||
| WBC | (0.00~300.00)*109/L | ±5% | |||
| RBC | (0.00~8.00)*1012/L | ±5% | |||
| HGB | (0~250)g/L | ±2% | |||
| PLT | (0~1000)*109/L | ±8% | |||
Sample Preparation
Place a blood tube containing an anticoagulant (to prevent clotting) into the hematology analyzer.
Dilution and Mixing
The blood is diluted with a specialized buffer to ensure an even distribution of cells and an appropriate concentration, thereby preventing cells from clumping together and causing inaccurate counts. The hematology analyzer mechanically mixes the sample to ensure uniformity before proceeding with the analysis.
Cell Detection and Counting
The hematology analyzer uses one or more techniques (such as impedance analysis) to identify and count blood cells. Taking impedance analysis as an example: the diluted blood flows through a small aperture with electrodes on either side. As each cell passes through, it disrupts the current, generating a voltage pulse. The amplitude of the pulse corresponds to the cell’s volume, and the number of pulses corresponds to the number of cells.
Data Processing
The built-in computing system converts raw signals (such as voltage pulses or light scattering patterns) into usable data. This allows for the calculation of parameters such as red blood cell count, white blood cell count, platelet count, hemoglobin concentration, and mean corpuscular volume. When performing white blood cell differential counts, the instrument classifies cells into different subtypes (such as neutrophils and lymphocytes) based on cell size or chemical properties. The final results are displayed on the screen, printed, or sent to the laboratory information system for storage.