Overview
Mispa HX80 is the 6 Part Hematology Analyser with 3rd Generation Technology using Nucleic Acid Fluorescence Staining + Tri Angle laser scattering with throughput up to 100 T/Hr. Unlike traditional chemistry staining reagents, our specialized fluorescent staining solution targets DNA or RNA, allowing blind dyeing that corresponds to different cell concentrations of nucleic acid. This results in a depth of dying proportional to the DNA/RNA levels – the stronger the nucleic acid presence, the more robust the fluorescent signal. Leveraging this specificity towards nucleic acid, our 3rd Generation technology is exceptionally sensitive in differentiating leukocytes, especially abnormal cells, making it an invaluable asset in clinical diagnostics.
Mispa HX80: 6-Part Cell Counter with Advanced Technology
Discover the MispaHX80, a game-changing Automatic 6 Part cell counter, designed to enhance the efficiency and accuracy of blood analysis in modern laboratories. Its integration of advanced technologies like Nucleic Acid Fluorescence Staining, Flow Cytometry, and Tri-angle Laser Scatter, ensures unparalleled precision in NRBC and WBC 6-Part Differential Analysis. This analyzer is a practical solution for labs requiring high throughput and precise results, with a capacity of 100 CBC+DIFF tests per hour.
The MispaHX80’s compact design and auto loader with a 50 sample capacity make it ideal for laboratories looking to optimize space and workflow efficiency. Its minimal sample volume requirement ensures economical use of resources. The analyzer’s compatibility with Bi-directional LIS (HL7) allows for seamless integration into existing lab systems, enhancing data management and reducing manual errors.
Quality and reliability are paramount with the MispaHX80, certified to ISO 9001:2015 and EN ISO 13485:2016 standards. It’s not just an analyzer; it’s a commitment to accuracy and efficiency in hematology diagnostics, making it an essential tool for laboratories aiming to deliver the highest standard of patient care.
Features:
- 3rd Generation Nucleic Acid Fluorescence Staining + Flowcytometry + Tri-Angle Laser scatter Technology for WBC Differentiation.
- WBC 6 Part differentiation, 29 Reportable parameter and 18 Research parameter with 2 Scattergram and 3 Histrogram
- Throughput up to 100 T/ Hr with Autoloader
- CBC / CBC + DIFF with NRBC
- IG (Immature Granulocyte) as Reportable parameter
- Aspiration Volume 88uL
- Powerful Flagging capability of abnormal samples.
- Whole blood mode, Capillary whole blood mode and Prediluted mode.
- Internal Barcode reader for patient data reading from Tube.
- Handheld barcode for patient and reagent data entry
- Auto sensing of Sample rank and auto adjust for barcoded samples.
- Bi-Directional LIS Facility available.
- 4 Types of Body Fluid can be run (Peritoneal fluid, Cerebrospinal fluid, Pleural fluid, Synovial fluid)
- LW Mode for Low WBC Count.
- 50 Samples can be loaded at a time.
- Automatic Rerun and Reflex function.
- Clinical and Maintenance Flag available
- Enhanced abnormal cell detection capacity with NRBC & IG
- Powerful debug function
- External Compressor Unit will give constant Positive and Negative Pressure
- One clicks to remove error.
- Fluorescence dye with Cassette design for hassle free replacement.
- Simple Daily Operation – Visual and Intuitive software interference
- Convenient data management and easy maintenance.
Technology:
Advanced 3rd Generation Technology Nucleic Acid Fluorescence Staining + Tri-Angle Laser scattering used for WBC Differentiation. Specialized fluorescent staining solution targets DNA or RNA, allowing blind dyeing that corresponds to different cell concentrations of nucleic acid. This results in a depth of dying proportional to the DNA/RNA levels – the stronger the nucleic acid presence, the more robust the fluorescent signal. Leveraging this specificity towards nucleic acid, our 3rd Generation technology is exceptionally sensitive in differentiating leukocytes, especially abnormal cells, making it an invaluable asset in clinical diagnostics.
The fusion of 3rd Generation technology with flow cytometry further elevates its capabilities. Each cell swiftly traverses a channel, subjected to three beams of light gauging size, granularity, and nucleic acid particulars. FSL, SSC, and SFL, measured via Nucleic Acid Fluorescence Staining, Flow Cytometry, Impedance Method & Photometry, yield 29 reportable parameters including 6 WBC differentials and 18 research parameters. IG and NRBC as a reportable parameter.
This enhanced sensitivity extends to detecting atypical lymphocytes and immature granular cells, facilitating the identification of abnormal myeloid and bone marrow cells.










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