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AVE-766 series Urine Formed Elements Analyzer


  • AVE-766 series Urine Formed Elements Analyzer
  • AVE-766 series Urine Formed Elements Analyzer
AVE-766 series Urine Formed Elements Analyzer
AVE-766 series Urine Formed Elements Analyzer
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Testing items

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Physical Properties: Conductivity and osmolality are measured using electrochemical methods, while color and turbidity can be manually input or automatically received from integrated systems.

Dry Chemistry: Utilizes the colorimetric analysis method, where chemical reagents on test strips react with urine components, producing color changes that are measured using a photometric system to determine the concentration of specific analytes.

Morphology: Employs automated morphological microscopy combined with artificial intelligence and machine vision to identify, classify, and count urinary formed elements. Red blood cell morphology is analyzed using phase contrast techniques, generating scatter plots and curve analyses to assist in diagnosis.

Extended Functions: The same morphological and chemical analysis techniques can be adapted for detecting and analyzing pleural fluid, peritoneal fluid, cerebrospinal fluid, gastric fluid, and other bodily fluids.

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AVE-766 series Urine Formed Elements Analyzer

Detection Principle

"Formed Elements: Utilizing artificial intelligence and machine vision technology, the system automatically identifies, classifies, and counts urinary formed elements using an automated morphological microscopy method.

Dry Chemistry: Detects chemical components in urine through colorimetric analysis."
 

 

 

Product feature detail diagram

 

 

Product Features (Detailed Version)

 

Classic

Simulates traditional microscopic examination, capturing real microscopic images of formed elements under both low and high magnification, automatically identifying, classifying, and counting them. The test report includes both images and text for comprehensive analysis.

Safe

Equipped with a fully enclosed urine specimen collection system, ensuring a completely sealed transport process. It supports pneumatic transmission, preventing specimen leakage and hospital environmental contamination.
Once loaded, the system performs direct closed-cap puncture sampling, eliminating aerosol infection risks and enhancing biosafety.

Intelligent

Automatically focuses, adjusts the field of view, and switches between low and high magnification to quickly capture clear images. Users can set the number of images collected as needed.
Powered by artificial intelligence, it mimics human cognitive processes with self-learning and deep learning capabilities. Continuous training on a massive user database enables high cell recognition accuracy, exceeding 95%.

Efficient

Performs full-field scanning under low magnification to determine specimen positivity, enabling rapid negative screening and improving detection efficiency.
Multichannel, time-sharing operation with multi-threaded software control minimizes specimen sedimentation waiting time and accelerates testing.
High-speed microscopy combined with rapid imaging ensures clear image acquisition.
Dual-microscope system operates simultaneously, optimizing space utilization and significantly enhancing efficiency with fast detection speeds.

Comprehensive

Generates reports on all urinary formed elements, extracting subtle features to provide subclassifications of red blood cells, white blood cells, epithelial cells, casts, and crystals, offering enriched diagnostic indicators for clinical use.
Performs precise digital analysis of red blood cell morphology, aiding in the diagnosis of kidney diseases and identifying the source of hematuria.
Automatically detects conductivity and osmolality, offering valuable reference data for diagnosing diabetes insipidus and renal concentration disorders.
Quantifies white blood cells and bacteria, allowing for rapid urinary tract infection assessment and indicating the need for urine culture.

Accurate

Utilizes negative screening and target tracking technology, scanning the full field under low magnification and tracking specific targets under high magnification to refine classification and enhance the detection rate of borderline positive specimens.
Provides reference values for normal populations based on extensive experimental data and statistical analysis from authoritative hospitals, ensuring reliable determination of specimen positivity.

Reliable

Delivers objective and authentic test results with real microscopic images and segmented images, generating comprehensive confirmatory reports.
Supported by original manufacturer-supplied reagents, quality control materials, calibration products, and the AAA source system to ensure testing quality.
Offers a simple and convenient QR code repair request system

 


Solution