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AVE-26 Fully Automated Blood Cell Morphology Analyzer


  • AVE-26 Fully Automated Blood Cell Morphology Analyzer
AVE-26 Fully Automated Blood Cell Morphology Analyzer
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Testing items

 

White Blood Cells (WBC): Neutrophils, lymphocytes, monocytes, eosinophils, basophils, calculating the percentage of each cell type, and pre-classifying abnormal white blood cells and immature granulocytes.

Red Blood Cells (RBC):Normal RBCs, large RBCs, small RBCs, spherical RBCs, target-shaped RBCs, and oval-shaped RBCs, calculating the proportion of each cell type, describing RBC morphology, and pre-classifying immature RBCs.

Platelets (PLT):Divided into normal platelets, large/giant platelets, platelet aggregation, with alerts for platelet aggregation exceeding warning values.

Parasites:Can alert to blood parasites (e.g., Plasmodium, filaria, Trypanosoma cruzi, Leishmania donovani, etc.) infections.

Reclassification:After manual review, reclassification of abnormally classified cells or unrecognized cells can be performed.
 

AVE-26 Fully Automated Blood Cell Morphology Analyzer

Detection Principle

Using artificial intelligence and machine vision technology, through specific algorithms and big data analysis for various blood cells, it intelligently identifies, classifies, and counts blood cells and other components. It can be connected to blood cell analyzers, specific protein analyzers, and slide staining machines from various brands to form an automated blood cell analysis production line.

 

Product Features 
 

Core Technologies

 

Positioning and Tracking Technology: Scans under low magnification to locate nucleated cells and other targets, records the exact location, and upon switching to oil immersion, quickly finds the target area using coordinate points for tracking, zooming, and image capturing. This improves detection speed while ensuring no targets are missed.
Automatic Multi-layer Focusing Technology: Automatically performs rapid multi-layer focusing on the specimen and takes layered photos, ensuring fine details of the cellular structure are clearly visible and image quality is guaranteed.
Intelligent Recognition Technology: Leveraging artificial intelligence, this technology simulates the human brain, with autonomous learning and deep learning capabilities. Through extensive image training, it accurately recognizes and classifies various cellular components.
 

 

 

 

 

 

Classic Inheritance

Product Features Simulates classic microscope methods for blood cell morphology detection, automatically capturing images of blood cells and performing recognition, classification, and counting.
Intelligent and Efficient: Automatic specimen transfer, oil droplet addition, image capturing, recognition, and report generation. The entire process is automated, requiring no staff, thus saving labor.
High-Resolution Imaging: Uses a fully automated digital microscope with five-axis linkage, ""Z"" axis focus stability technology, and multi-layer automatic focusing to layer photograph specimens, ensuring both speed and quality in image capture.
Intelligent Recognition: Employs AI to simulate the human brain with autonomous learning and deep learning. It accurately identifies various red blood cells, white blood cells, platelets, and other components through extensive image training.
Standardized Operation: Fully automated, standardized, and regulated operations avoid subjective influences from operators, ensuring consistent and high-quality results.

Real-time Viewable Results

The results are objective and accurate, with high-definition images automatically stored for retrieval and traceability. They can also be used for research, training, and education, enhancing the hospital's overall capabilities.
Remote Service: Provides real-time online services for remote guidance, consultations, and troubleshooting, integrating superior medical resources to enhance service efficiency and quality.
Worry-free After-sales: Quick and convenient scanning for repairs, with prompt response from after-sales personnel to ensure the instrument's normal operation.

 

 

 

 


Solution