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- InVivo BioVivo™
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- BioVivo™ B adv
Optical Imaging and Analysis System for In Vivo Fluorescent and Bioluminescent Signals (Laboratory Animals) BIOVIVO™ B adv
Optical Imaging and Analysis System for In Vivo Fluorescent and Bioluminescent Signals (Laboratory Animals) BIOVIVO™ B adv
- High Sensitivity
Equipped with a specialized back-illuminated cooled CCD camera, designed for in vivo imaging systems. Quantum efficiency reaches 95% at 500-700 nm. The Ultral mode, utilizing multi-stage cooling technology, can reduce the camera temperature to -100 °C, effectively minimizing dark current background noise. This ensures high sensitivity for detecting low-intensity signals, enabling in vivo bioluminescence and fluorescence imaging experiments.
- High Image Clarity
The camera boasts a 4-megapixel resolution, providing detailed, high-quality images without compromising sensitivity.
- High Capture Speed
A high-speed fixed lens with an aperture of f/≤0.9 significantly increases the optical signal collection speed. This reduces image acquisition time, lowers noise levels arising from long exposures, and effectively enhances the signal-to-noise ratio in the final image.
- Full Spectrum
A full-spectrum xenon light source (250–1200 nm) provides fluorescence excitation across a wide spectral range, meeting the excitation needs of a broader array of fluorescent dyes. Compared to LED sources, the xenon lamp offers higher power and excitation intensity, especially in the near-infrared range, where it demonstrates superior efficiency and intensity. This allows for higher quality images in near-infrared in vivo fluorescence imaging.
- High Throughput
Enables simultaneous imaging of 16 mice, meeting the requirements for high-throughput sample screening.
- Multi-Sample Capability
The system features a field of view for imaging at least 400×400 mm. The continuously adjustable height stage is suitable for various animal models, including zebrafish, mice, rats, rabbits, monkeys, and pigs.
- Multifunctionality
Provides the capability for the following types of imaging: high-resolution X-ray imaging, Cherenkov radiation imaging, up-conversion fluorescence imaging, and ultrasound imaging.
- Genetic Research:
Gene therapy, functional genome analysis, gene expression regulation, transgenic animal models.
- Oncology Research:
Tumorigenesis and apoptosis, tumor metastasis, tumor immunology, tumor development mechanisms, and therapy.
- Stem Cell Research:
Stem cell genetics and development, stem cell migration (homing), repair of damaged stem cells, stem cell therapy.
- Pharmaceutical Research:
Screening of new drugs, evaluation of therapeutic efficacy, development of gene-based drugs, drug metabolism and delivery studies.
- Disease Research:
Cardiovascular and cerebrovascular diseases, metabolic disorders, immune diseases, bacterial/viral infections, and inflammatory process studies.
- Materials Research:
Biomaterials, targeted delivery materials, quantum dots, nanoprobes, nanodrug delivery systems.
- Professional Software
The LabEasy™ series software, with its completely redesigned interface, features a simple and intuitive design, allowing users to quickly master its operation and easily perform imaging tasks that meet a wide range of experimental requirements.
Equipped with intelligent AI-based algorithms with deep learning capabilities. The spectral distribution statistical analysis function helps to quickly identify useful signals and separate them from the background. NIST (USA) standard calibration, professional quantitative analysis functions, fast and accurate determination of regions of interest (ROI). Supports quantitative analysis in various units, including CTS, CPS, Ph/s/cm²/sr, nW/cm².








