Digital PCR & Copy Number Variation Using the Fluidigm® EP1™ System
The Technology
The high throughput Fluidigm EP1™ System uses the innovative integrated fluidic circuit (IFC).
This platform is ideal for digital PCR and high resolution CNV studies with high sensitivity and flexibility using IFCs called digital arrays™.
The matrix of channels, chambers and valves do the complex work of assembling the arrays.
Benefits of IFCs
Unlike other liquid handling methods, fluids are pressurised into the chip where reaction volumes are controlled
by the internal well geometries. This eliminates the volume variability associated with other procedures.
This results in experiments being conducted with less sample and reagent.
Digital PCR & Copy Number Variation Using Digital Array IFCs
Why Use Fluidigm IFCs for Digital PCR & CNV Studies:
- High Resolution
Easy determination of ratios between two targets
- High Sensitivity
Single molecule sensitivity
- High Throughput
12 - 48 samples per array
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 |
Array Types Available
| Array | 12.765 | 48.770 |
| Number of Samples/Array |
12 |
48 |
| Number of Samples/Array |
765 |
770 |
| Number of Reactions/Array |
9,180 |
36,960 |
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 |
Bioinformatics - Analysis Support
Our experienced bioinformaticians are able to provide a
complete analysis package that can be customised to your specific research needs. Please contact us for further details.
Why Use Source BioScience Geneservice™?
- Personalized project design
- Individual project managers for each project
- Knowledgeable scientists with considerable PCR experience
- Specialist bioinformaticians to handle and interpret data
- Specialist reports supplied
- Fast turnaround times
- Comprehensive, competitive quotes
Other Services Offered on the Fluidigm EP1 System
Contact
Email: DNA
Tel: +44(0)1223 432 608
Fluidigm, EP1, Dynamic Array, Digital Array & NanoFlex are trademarks or registered trademarks of
Fluidigm Corporation in the U.S. and/or other countries. All other trademarks are the property of their
respective owners. For research use only.
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