Built on Technology. Validated by Research.
More than 80 scientific publications demonstrate applications across diagnostics, microscopy, microbiology and cell-based research
Scientific progress is built on evidence. Over the past decade, technologies related to automated microscopy, digital holography, quantitative phase imaging, spectroscopy, and bioanalytical workflows have been applied, evaluated, or further developed in more than 80 scientific publications, patents, conference contributions and academic theses.
From veterinary diagnostics and microbiology to bioprocess development and cell analysis, researchers continue to explore the potential of innovative imaging and analytical technologies in a wide range of applications.
A particularly important milestone is the independent validation of the anvajo vet fluidlab 1 urine sediment analyzer, which was compared against manual microscopy and established automated systems. The study demonstrated the potential of automated image-based diagnostics in veterinary medicine.
At the same time, advances in digital holographic microscopy and quantitative phase imaging are expanding the possibilities for label-free, automated cell analysis. Recent studies have demonstrated applications in cytotoxicity testing, nanoparticle research, microbiology and bioprocess monitoring.
Together, these scientific contributions demonstrate the versatility of modern imaging and analytical approaches and highlight their growing importance across life science research and diagnostic applications
Featured Publications
Product Validation
Seigner et al. (2022)
Comparison of the Anvajo Vet Fluidlab 1 urine sediment analyzer to manual microscopy and Idexx SediVue analysis for analysis of urine samples from cats and dogs
Journal of Veterinary Diagnostic Investigation
Seigner (2023)
Comparison of the Anvajo Vet Fluidlab 1 with manual microscopy and Idexx SediVue Dx for urine sediment analysis in dogs and cats (Doctoral Thesis)
Digital Holography & Quantitative Imaging
Kim et al. (2025)
Characterization of a Single-Capture Bright-Field and Off-Axis Digital Holographic Microscope for Biological Applications
Sensors
Marzi et al. (2024)
Quantitative Phase Imaging as Sensitive Screening Method for Nanoparticle-Induced Cytotoxicity Assessment
Microorganisms
Life Science Applications
Furnica et al. (2025)
Human-like Biofilm Models to Study the Activity of Antifungals Against Aspergillus fumigatus
Microorganisms
Gaugler et al. (2024)
Mimicking CHO Large-Scale Effects in the Single Multicompartment Bioreactor: A new approach to access scale‐up behavior
Biotechnology and Bioengineering
Discover the complete list of scientific publications featuring the fluidlab R-300.

