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  1. 15 Νοε 2019 · The BD BACTEC™ Automated Blood Culture System utilizes fluorescent technology to detect organisms’ growth in the blood culture bottles. The sample to be tested is inoculated into one or more vials and inserted into the BD Bactec fluorescent series instrument for incubation and periodic reading.

  2. Choose the BD BACTEC™ system as part of the integrated, end-to-end BD Bloodstream Infection Solution that seamlessly connects specimen collection, blood culture and antimicrobial susceptibility testing.

  3. 19 Ιουν 2020 · Automated blood culture systems like BacT/ALERT and BACTEC provide continuous monitoring of blood culture specimens to more quickly detect pathogens. They work by monitoring changes in carbon dioxide or fluorescence levels that occur as pathogens metabolize nutrients in the culture bottles.

  4. The BD BACTEC™ FX blood culture system builds on the proven history of previous BD BACTEC™ instrumentation, with advanced fluorescence detection technology, exceptional media performance and instrument reliability—adding vial-activated workflow, advanced ergonomics, blood culture observation and customer-focused data management.

  5. 3 ημέρες πριν · The Bactec anaerobic bottles are equipped with advanced detection systems that monitor metabolic byproducts, allowing for the timely identification of anaerobic bacterial growth. This capability is vital for diagnosing infections caused by anaerobic pathogens such as Clostridium species. The use of anaerobic media in blood culture systems ...

  6. By helping detect positive blood cultures early, the system may also help you more quickly implement therapy to positively affect patient outcomes and reduce lengths of stay. Proven fluorescence technology. with sophisticated algorithms for fast, reliable detection. Ergonomic and intuitive workflow.

  7. The BD BACTEC system provides advanced algorithms for individual bottle types, for special circumstances such as low blood volume, pediatric specimens, or to detect slow growing organisms such as Haemophilus and Neisseria. These algorithms enable rapid detection of pathogens in blood cultures.

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