A detector mounted on a slider scans reagent vessels as the drawer extends, replacing multiple fixed sensors to lower device complexity.
Information processing unit sets data acquisition sections for biological particles based on light detection changes.
A multifrequency impedance cytometry system detects probe microparticles using metal oxide Janus particles.
Using a generic antibody on latex particles eliminates analyte-conjugate reagents, reducing non-specific binding and assay complexity.
A rinse liquid supply port on the dispensing nozzle rinse tank enables rapid inner and outer surface cleaning.
Spatial light scatter analysis distinguishes cell aggregates from single cells, resolving measurement precision versus device complexity trade-offs.
A fibrous substance detection method disperses antigen-recognizing substances in solution to enable rapid reaction kinetics.
Alternating current voltage sampling across an integrating capacitor detects lipid bilayer state in nanopore sequencing chips.
Diluting fluid clears residual liquid from vessels before suction, preventing contamination of the flow cell detector and reducing analysis preparation time.
Staggered parallel mixing assemblies synchronize reactor movement across multiple stations to resolve middle-process bottlenecks and increase test throughput.