Dual swirl separators remove heavy inert solids while returning active materials, helping anaerobic digestion decouple HRT from SRT.
A feeder-free, serum-free monolayer platform replaces embryoid bodies to generate uniform, scalable hematopoietic lineages from hiPSCs.
Barcode capture and optional network modules cut manual entry errors while enabling compliant assay result storage and transmission.
Real-time fluorescence monitoring under retained deep-sea pressure improves cell counting and subculture timing for stable high-activity enrichment.
Modular unit-operation stations and preconfigured cartridges automate immune cell culture processing while preserving sterility and preventing cross-contamination.
Maintains in situ deep-sea pressure during enrichment, multi-stage separation, and detection to preserve authentic microbial characteristics.
HICA measured in culture supernatant enables early, non-invasive prediction of cultured cell differentiation without destroying cells.
Pressure-driven filtration and automated imaging enable high-pressure purification, enrichment, and real-time cell counting of deep-sea microbes.
A bent latch sensor clip keeps a flask sensor attached during medium replacement, preserving measurement continuity and reducing contamination risk.
UV-made polymer flocculants enable on-site microalgae harvesting with easier selection, less waste, and better stability than batch preparation.
A gas-permeable membrane vessel maintains constant-volume perfusion to grow dense cell cultures while removing impurities without separate washing.
Defined in vitro culture converts adipose MSCs into autologous HS/PCs without co-culture or exogenous genes, reducing GVHD risk.
Polynomial subtraction removes bottom-surface phase noise in curved concave containers, improving quantitative cell image accuracy.
Upstream measurements automatically set filtration, centrifugation, and chromatography parameters to cut errors, waste, and setup time.
An overspilling reservoir and movable water outlet cut scrubber bulk, ease cleaning and harvesting, and avoid saltwater corrosion.
An extended DO window membrane and fins bring the temperature element into process thermal equilibrium for more accurate bioreactor oxygen sensing.
TREM2 signal activators induce human macrophage differentiation without M-CSF or GM-CSF, preserving proliferation and long-term culture expansion.
A rotary-screen hydrolysis loop removes starch granules from corn slurry to cut viscosity, protect SOD activity, and support stable scale-up.
Blood-based miRNA binding improves lung cancer detection sensitivity and specificity without relying on costly imaging or weak tumor markers.
Continuous NIR probe monitoring avoids sample withdrawal, improving bioreactor process control while reducing analysis time and contamination risk.
High-aspect-ratio microwells retain individual cells during medium exchange, reducing evaporation and migration while supporting metabolite analysis.
A layered semipermeable membrane plate improves small-pore cell seeding, ALI co-culture, and TEER-based barrier measurement in high-throughput tissue models.
Different colored media in a membrane-separated co-culture vessel prevent transfer mix-ups and support accurate post-culture analysis.
An expandable membrane with stretchable and restraining members adapts to lagoon volume changes while limiting methane leakage and rainwater entry.
Integrated PCC capture, purification, and polishing enable continuous therapeutic protein production with high purity and lower batch-process limits.
Multi-stage condensation and heat recovery separate water and ammonia from digestate with lower energy use and fertilizer recovery.
Cells seeded on a porous membrane can be preserved for 30 days or more without liquid nitrogen, reducing handling complexity and cell stress.
A wirelessly actuated hermetic receiver handles Petri dishes in isolators without gloves or robotic arms, cutting contamination risk and complexity.
A closed-loop centrifugation and filtration circuit standardizes fat preparation, cuts contamination risk, and improves graft consistency.
Robot-assisted transfer of nutrient medium carriers and lids automates isolator monitoring while reducing glove damage and contamination risk.
A deterioration index links concentration readings and detection time to separate sensor aging from real culture medium changes.
Gravity-driven splitting replaces peristaltic pumps to divide cell solution evenly, reducing cell loss, damage, and contamination.
A flexible sheet cassette with cutout-based flow path control simplifies biological kit setup, improving pathway accuracy while reducing errors.
A belt with spaced pressure members simplifies tubing assembly while enabling independent multi-channel perfusion in compact high-throughput setups.
Gas-permeable membranes and cell compartments boost high-density AAV culture by improving gas exchange and reducing shear damage.
A deformable carrier mount secures hoses and sensors tool-free while preventing deformation, sharp-edge damage, and vibration wear.
An oxygen sorbent and impermeable outer receptacle lower blood oxygen before storage, reducing oxidative damage and preserving transfusion quality.
Rate-ratio prediction uses partial cell count data to forecast culture transitions when hollow fiber observation is difficult.
Phase-change-separated lyophilized beads enable closed phenotypic AST and amplification in one vessel, cutting test time while preserving accuracy.
Thermal plant CO2 and waste heat are fed into biomass growth modules to produce biofuels while reducing emissions and conserving water and heat.
Controlled turbulence and shear in megakaryocyte culture improve platelet yield and stability while keeping Annexin V levels low.
A mesh with defined pores forms uniform spheroids and turns each pore into a counting site, enabling accurate mass culture without extra equipment.
A buoyant float in the cassette reservoir enables liquid level monitoring and refilling to keep microplate wells stable during long experiments.
Integrated well electrodes and a permeable support sheet enable stable 3D neuronal recording without disturbing culture structure or imaging.
Drying extracellular vesicles onto sterile culture surfaces extends storage life, avoids buffer interference, and supports reproducible parallel cell assays.
Humidified CO2 is fed through a ventilation adapter so culture vessels stay stable in a compact dry incubator without rust or microbial growth.
Generates automated passage and culture instructions to reach a target cell amount by a specified end time for follow-on experiments.
Centrifugation and filtration in a closed circuit purify adipose tissue for reinjection while reducing contamination, manual handling, and variability.
Sheath flows and a 1-10 mm suspension layer prevent electrode-wall retention and field shielding, improving high-concentration electroporation throughput.
Powder-filled collapsible containers cut shipping and storage volume while enabling sterile, on-demand mixing of cell culture media.
Automated predictive models combine clinical data with multiplex immunofluorescence measurements to resolve subjective grading inconsistencies.
A two-stage membrane process separates hydrogen gas from solid organic waste using anaerobic hydrolysis and photofermentation.
Edible hollow fibers support uniform cell growth to resolve the contradiction between tissue-like structure and ease of manufacture.
Disposable spin columns integrate silica carriers and reagents for rapid nucleic acid adsorption.
A microwell array platform assigns spatial coordinates to individual cells for high-throughput monitoring of immune responses.
A sensor unit attached to cell culture containers detects vibration and posture changes via acceleration and gyro sensors.
Upward fluid flow through fiber scaffolds in a bioreactor duct maintains nutrient diffusion while minimizing shear stress on cultured cells.
Segmented lighting zones within a single incubator allow simultaneous distinct culture conditions, eliminating the need for multiple units.
A microfluidic device creates a fluid chamber over a surface to enable traditional cell culture compatibility.
Phase transition cooling separates isoprene from gaseous fermentation byproducts, while modified zeolites adsorb trace impurities to achieve high purity levels.
A modular incubation chamber with a helical coil design enables continuous flow processing for biomolecule purification.
A closed cartridge uses pneumatic pressure to transfer liquids between containers without external pumps.
A method releases hydrogen from a carrier using thermal energy obtained through sewage sludge combustion.
Microfluidic devices combine magnetic and inertial forces to separate particles using removable substrates for cell collection.
A Venturi pump assembly aspirates surface foam via a narrowed throat to eliminate chemical antifoaming agents and prevent reactor yield contamination.
A flexible polyester belt rotates algae biofilm between liquid and gas phases for direct harvesting.
Automated robotic microscopy systems identify fiduciary marks to align samples, resolving the trade-off between throughput and device complexity.