A multi-chamber culture platform links distinct organ tissues via a shared vascular fluidics circuit to simulate dynamic in vivo conditions.
Elastically deformable polymeric foam members retain excised tissue orientation, preventing deformation that causes inaccurate diagnosis.
A reading unit compares data on histological cassettes and specimen slides to verify correspondence before microtome operation.
A microfluidic platform generates fluid vortices to deliver materials into cells through temporary membrane perforations.
Self-expressed flocculation proteins enable microalgae harvesting without chemical additives, reducing process complexity and production costs.
A fermentation process regulates nitrogen-source concentration to optimize methanotrophic biomass production.
A control device regulates substrate supply to a biogas fermenter based on measured gas volume deviations within defined storage limits.
Sliding sleeves expand and contract a chamber to force washing liquid through a filter, removing contaminants while retaining biological material.
Ultraviolet light stimulates the sensor surface to maintain sensitivity while reducing device complexity and cost.
Helical fluid channels enable cyclic heating and cooling, reducing PCR cycle times while maintaining precise temperature stability.
An elastic filter substrate compresses lattice holes to capture target cells, then restores size to prevent damage during separation.
Image-based detection system using immobilized capture particles to enable rapid multiplex assays without fluid flow.
Capture micro-objects bind biological materials of interest within holding pens for precise assessment.
Applying deep vacuum vaporizes internal moisture to rupture cell walls, reducing energy consumption and equipment costs compared to high-pressure heating.
A disposable bioreactor headplate integrates a stirrer and sensors to enhance mixing within a flexible bag vessel.
An adjustable seal accommodates a rotating drive shaft in a bioreactor mixing container.
Segmented flow channels reduce shear forces while maintaining nutrient exchange to stabilize therapeutic protein expression.
Motorized positioning system tracks motile sperm to automate injection, reducing manual skill requirements and improving efficiency.
Opposing feed and harvest flows flush the perfusion membrane, preventing clogging and extending operational durability without increasing system complexity.
A cell culture device applies ultrasonic vibration to stimulate stem cells and increase exosome secretion.
Exposed waveguide edges and fluorescent markers enable precise alignment while maintaining chip protection.
Phospho-AMPK antibody labeling and flow cytometry analysis replace invasive tissue biopsies to measure metabolic energy status.
An automated petri dish sorting system uses a flat elevator plate to transfer dishes between conveyor and carriers, reducing manual handling errors.
A flow generator moves culture solution from the tank center to the inner wall to circulate microalgae suspension.
A horizontally rocked bioreactor system uses periodic tilting to mix culture media and expose cells to gas phases.
A flow path cassette uses bulging portions and a deformation preventative member to measure internal pressures.
A single-use bioreactor uses baffles with inner fluid compartments to enhance mixing efficiency and temperature control.
Automated cell processing cartridge integrates fluidic manifold and bioreactor module for efficient transduction workflows.
A dialysis bioreactor system continuously replenishes nutrients and removes metabolic waste to support high cell density growth.
Integrates UV irradiation with titanium dioxide photocatalysis into water scrubber columns to degrade dissolved gases.
Segmented design with dynamic covers prevents plugging while maintaining high digestion rates.
Mechanical homogenization isolates stem cells without enzymes, reducing processing time and contamination risks.
Gripping means break frangible weld seams to expand flexible plastic bag compartments, eliminating sterile transfer contamination risks.
A hydrophilic carrier body modified by low-temperature plasma treatment supports specific protein coatings for enhanced cell adhesion.
An incubation apparatus uses image analysis to detect positional displacement and dew condensation inside the temperature-controlled room.
Actuators deform a transparent 3D support structure to apply mechanical stress while optical devices examine embedded cells through the material.
A selective oxygen pump unit transfers gas between enclosed spaces using an electrochemical mechanism.
Synchronizing cell cycles with inducible promoters eliminates unedited cell bias, boosting editing efficiency by three to four times.
A cell detaching apparatus maintains acoustic matching liquid height using a control unit and sinking weight for stable ultrasonic vibration.
A porous membrane enables rapid metabolite diffusion for accurate microbial enumeration while maintaining thermal sterilization reliability.
A multi-beam resonator device tracks resonance frequency and phase angle to monitor viscosity changes in test samples.
Hydro-mincing channels apply shear forces to break down large tissue samples, resolving clogging issues while preserving cell viability during digestion.
Disposable microtiter plates concentrate microorganisms via gravity, eliminating complex equipment needs.
A cryopreservation apparatus introduces DMSO into cell solutions using a syringe pump module and mixing chamber to ensure homogeneous distribution.
Unbalanced mass drives rotation on a suspended growth mat, increasing biomass yield per unit area for anaerobic digestion.
External loop relocates gas injection to reduce mechanical stress on cells while maintaining homogeneous culture conditions.
Standardized modular biology lab system reduces assembly complexity and contamination risks through sealed interfaces and universal robotic handling mechanisms.