microfludic flow control system Search Results


90
FLUIGENT Inc microfluidic flow controller mfcstm-ez
Microfluidic Flow Controller Mfcstm Ez, supplied by FLUIGENT Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/microfluidic+flow+control+system+mfcs+ez/pm31825206-71-2-7
Average 90 stars, based on 1 article reviews
microfluidic flow controller mfcstm-ez - by Bioz Stars, 2026-09
90/100 stars
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90
MicroFluidic Systems flow pumps
Flow Pumps, supplied by MicroFluidic Systems, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/flow+pumps/10__1039_slash_c6an02445a-223-9-7
Average 90 stars, based on 1 article reviews
flow pumps - by Bioz Stars, 2026-09
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94
Elveflow Inc 10 channel distributor valve
10 Channel Distributor Valve, supplied by Elveflow Inc, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/MUX+Distribution+Microfluidic+Valve/pmc11074114-250-10-15
Average 94 stars, based on 1 article reviews
10 channel distributor valve - by Bioz Stars, 2026-09
94/100 stars
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90
ThalesNano Inc h-cube microfluidic flow reactor
H Cube Microfluidic Flow Reactor, supplied by ThalesNano Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/h+cube+microfluidic+flow+reactor/10__1016_slash_j__ica__2023__121613-56-6-10
Average 90 stars, based on 1 article reviews
h-cube microfluidic flow reactor - by Bioz Stars, 2026-09
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90
FLUIGENT Inc system of microfluidic devices lineup flow ez
Experimental setup: (1) falcon tubes equipped with massive aluminum caps for pressurization containing the solutions, (2) flow controller (LineUP Flow EZ, Fluigent Smart <t>Microfluidics</t> 1000mbar), (3) flow units (0–500 μL/min), (4) regulator, (5) air drier, (6) air pump (1 bar, 230 V, 50 Hz), (7) Zeiss microscope and digital video camera (Axis 223 M), (8) computer, and (9) microchip.
System Of Microfluidic Devices Lineup Flow Ez, supplied by FLUIGENT Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/microfluidic+flow+control+system/pmc12139034-120-11-16
Average 90 stars, based on 1 article reviews
system of microfluidic devices lineup flow ez - by Bioz Stars, 2026-09
90/100 stars
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90
FLUIGENT Inc pressure-driven microfluidic pump mfcs-ez
(A) Design of the <t>microfluidic</t> chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.
Pressure Driven Microfluidic Pump Mfcs Ez, supplied by FLUIGENT Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/microfluidic+pump+mfcs+ez/bio_rxiv__859124-108-8-11
Average 90 stars, based on 1 article reviews
pressure-driven microfluidic pump mfcs-ez - by Bioz Stars, 2026-09
90/100 stars
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93
Microfluidic ChipShop microfluidic droplet generator
(A) Design of the <t>microfluidic</t> chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.
Microfluidic Droplet Generator, supplied by Microfluidic ChipShop, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/Droplet+Generator+Chip/10__1016_slash_j__ijmultiphaseflow__2025__105277-44-13-18
Average 93 stars, based on 1 article reviews
microfluidic droplet generator - by Bioz Stars, 2026-09
93/100 stars
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90
MicroFluidic Systems cross-flow microfiltration device
(A) Design of the <t>microfluidic</t> chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.
Cross Flow Microfiltration Device, supplied by MicroFluidic Systems, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/cross+flow+microfiltration+device/pmc04538600-197-23-20
Average 90 stars, based on 1 article reviews
cross-flow microfiltration device - by Bioz Stars, 2026-09
90/100 stars
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96
Elveflow Inc elveflow ob1 flow controller
(A) Design of the <t>microfluidic</t> chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.
Elveflow Ob1 Flow Controller, supplied by Elveflow Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/Elveflow+OB1+Mk4+Microfluidic+Flow+Controller/bio_rxiv__2022__08__17__504250-62-17-17
Average 96 stars, based on 1 article reviews
elveflow ob1 flow controller - by Bioz Stars, 2026-09
96/100 stars
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95
Elveflow Inc microfluidic flow sensors
(A) Design of the <t>microfluidic</t> chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.
Microfluidic Flow Sensors, supplied by Elveflow Inc, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/MFS+Microfluidic+Thermal+Flow+Sensor/pmc09954565-71-10-14
Average 95 stars, based on 1 article reviews
microfluidic flow sensors - by Bioz Stars, 2026-09
95/100 stars
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96
Darwin Microfluidics elveflow ob1 mk4 microfluidic flow controller
(A) Design of the <t>microfluidic</t> chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.
Elveflow Ob1 Mk4 Microfluidic Flow Controller, supplied by Darwin Microfluidics, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/Elveflow+OB1+Mk4+Microfluidic+Flow+Controller/custom%40lvf-ob1-4-4444%4010%2E46298%2Fmbj%2E14489
Average 96 stars, based on 1 article reviews
elveflow ob1 mk4 microfluidic flow controller - by Bioz Stars, 2026-09
96/100 stars
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90
Becton Dickinson microfluidic flow cytometer
(A) Design of the <t>microfluidic</t> chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.
Microfluidic Flow Cytometer, supplied by Becton Dickinson, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/microfludic+flow+control+system/microfluidic+flow+cytometer/pm37619268-98-11-17
Average 90 stars, based on 1 article reviews
microfluidic flow cytometer - by Bioz Stars, 2026-09
90/100 stars
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Image Search Results


Experimental setup: (1) falcon tubes equipped with massive aluminum caps for pressurization containing the solutions, (2) flow controller (LineUP Flow EZ, Fluigent Smart Microfluidics 1000mbar), (3) flow units (0–500 μL/min), (4) regulator, (5) air drier, (6) air pump (1 bar, 230 V, 50 Hz), (7) Zeiss microscope and digital video camera (Axis 223 M), (8) computer, and (9) microchip.

Journal: Langmuir

Article Title: Effect of Monoethylene Glycol on the Nucleation and Growth of Calcium Carbonate from Supersaturated Solutions in Microchannels of Varying Wettability

doi: 10.1021/acs.langmuir.5c01363

Figure Lengend Snippet: Experimental setup: (1) falcon tubes equipped with massive aluminum caps for pressurization containing the solutions, (2) flow controller (LineUP Flow EZ, Fluigent Smart Microfluidics 1000mbar), (3) flow units (0–500 μL/min), (4) regulator, (5) air drier, (6) air pump (1 bar, 230 V, 50 Hz), (7) Zeiss microscope and digital video camera (Axis 223 M), (8) computer, and (9) microchip.

Article Snippet: The fluids were injected into the microchannel using the system of microfluidic devices (LineUP Flow EZ, Fluigent Smart Microfluidics 1000 mbar) ( )., The crystallization of calcium carbonate took place in Y-junction microchannels of 0.2 μL volume between the Y-junctions (Dolomite, Royston, U.K.).

Techniques: Microscopy, MicroChIP Assay

(A) Design of the microfluidic chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.

Journal: bioRxiv

Article Title: Biophysical characterization reveals the similarities of liposomes produced using microfluidics and electroformation

doi: 10.1101/859124

Figure Lengend Snippet: (A) Design of the microfluidic chip used to produce the liposomes. The chip has three inlets for the inner (IA) and outer aqueous (OA) and the lipid-octanol (LO) phases, respectively. The vesicles are formed at a six-way junction (I) and flow along the channel to the outlet where they can be extracted or imaged directly. (B) Schematic of the OLA junction, where liposome formation occurs. The IA fluid stream is flanked by two channels with the lipid-carrying LO phase. The OA flows pinch off double emulsion droplets. The double emulsion self-assembles downstream into a vesicle with a 1-octanol pocket attached to it, which later buds off. We propose that the lipid ratio of the lipid-octanol mixture inserted into the microfluidic chip is maintained in the GUVs produced with OLA.

Article Snippet: The liquid flows were controlled with a pressure-driven microfluidic pump (MFCS-EZ, Fluigent, Le Kremlin-Bicêtre, France) equipped with a Fluiwell-4C reservoir kit.

Techniques: Liposomes, Double Emulsion, Produced