Hydrodynamic deformation in a microfluidic channel and truncated Fourier analysis reveal high-frequency rheology with less noise.
Carbon barriers block chloride ions from metal interconnects in pore devices, preventing chlorination and preserving electrical contact integrity.
A pre-prepared cartridge combines sample handling, platelet analysis, and cleaning to simplify fluidics and reduce analyzer hardware.
Undefined single-measurement uncertainty is addressed by integrated waveguides and repeated microchannel readings that improve particle discrimination.
Geiger-mode photodiodes, differentiation, comparison, and timestamping preserve photocurrent data while enabling individual-photon analysis.
Fluidic-die sensors classify target and non-target particles, directing rejects to dynamic waste sites to improve substrate occupancy and throughput.
Pump-modulated sheath flow and vacuum-controlled waste removal stabilize fluid resistance and particle velocity in flow cytometers.
Quantile partitioning and two-stage linear regression characterize fluorochrome spillover without error-prone population identification.
Automated particle localization pairs optical imaging with OPTIR absorption measurements to identify sub-20 μm microplastics faster and more reliably.
Multiple sensor blocks extend particle-size coverage while count-uniformity checks simplify calibration and flag sensor failures.