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Bringing Microfluidics to Life™
   
         

PRODUCTS OVERVIEW
ONIX LIVE CELL IMAGING
Perfusion Control System
Microfluidic Culture Plates
Y16 for Yeast Cells
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3D:M GEL CULTURE ARRAY
 

Y16 Microfluidic Perfusion Chamber for Yeast Cells

The Y16 plate is optimized for time-lapsed imaging of yeast cells with solution exchange on 16 parallel perfusion chambers. The unique microfluidic cell trapping region holds yeast cells in a uniform focal plane for time-lapse cell microscopy during perfusion flow.

 

Key Features:

• 16 separate, parallel flow chambers
• Microfabricated cell trap ensures single focal plane
• Switch between 3 medium solutions
• Perfusion culture on your microscope for 3+ days
• Pipet friendly sample wells
• #1.5 glass bottom for optimal imaging quality

Ordering Info
Instructions
Technical Note


Microfluidic Live Cell Imaging Benefits
 
Multiplexed Perfusion Chamber
Multiplexed Perfusion Chambers
 
Maximize your data throughput by running up to 16 samples simultaneously. Our advanced microfabrication technology gives you unprecedented results along with incredible ease-of-use. Each of the 16 units houses a separate cell sample and 3 upstream exposure solutions.
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focus
Image Quality
 
An innovative microfluidic cell trap maintains yeast cells in a single focal plane, even during budding. The cells are held by an elastic ceiling against a #1.5 thickness optical glass slide for superior time-lapsed imaging quality.
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Y2 Flow Movie
Flow Switching
 
The precisely fabricated microfluidic chambers allow medium to perfuse the trapped cells without affecting focal position. Two upstream solution reservoirs allow rapid switching of the expsoure solution during time-lapsed imaging to monitor real time cell responses.
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Y2 Growth Movie
Long Term Culture
 
The continuous perfusion environment maintains cell health for long periods of time on your microscope stage. Temperature and gas atmosphere can also be controlled with the microfluidic system.
 
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clock
Time Saving
 
Maximize your microscope time by obtaining higher quality images, longer timecourses, parallel units, repeatable experiment conditions, and reduced setup times.
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