Creative Analysis

SimplePCI


SimplePCI is a 32-bit program designed to meet the increasing demand for low cost, high speed software, that is flexible and easy to use.


SimplePCI modular design is structured to suit many applications. 

The modules are:


SimplePCI core application

Automated Image Capture (AIC)

Deconvolution Nearest neighbor No Neighbor (DNN)

Image Processing and Analysis (IPA)

Dynamic Intensity Analysis (DIA)

Motion Tracking and Analysis (MTA)


C·IMAGING Systems


C-imagning Systems are designed and engineered to provide a cost effective, efficient integration of powerful hardware, with carefully optimized software. The systems quickly and easily solve your particular imaging needs.


Live Cell Time-Lapse and Analysis System

Time-Lapse Intensity Analysis System

Fluorescence Ratio Analysis System


Semen Analysis


Semen software combines real-time digital capture with high speed cell tracking.

Advanced tracking algorithms are applied to accurately detect cells, even in sub-optimal lighting conditions 

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Intuitive

We create easy-to-use products.

Adaptable

We build modular solutions.

Durable

We craft long-lasting goods.


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Select the product for which you would like more information from the following choices:
SimplePCIDNN Module
DIA ModuleIPA Module
AIC ModuleMTA Module
 
Describe your application requirements, questions or comments in the space provided below.
 
 

Life Science


SimplePCI image analysis software provides an easy solution to solving image analysis applications, including:


  1. Simultaneous multi-sites time-lapse capture
  2. Time-lapse replay and analysis
  3. Fluorescence capture and display (GFP, BFP)
  4. Combination fluorescence & bright field acquisition
  5. High speed image sequence streaming
  6. Calcium Imaging with single, dual or triple probe analysis
  7. Motion analysis
  8. In-situ hybridization using grain counting techniques
  9. Quantitative autoradiography
  10. Immunostain analysis
  11. Muscle fiber morphology
  12. Neural process density (arborization)
  13. Vessel morphometry and angiogenesis
  14. 3-D reconstruction with flexible montage of serial sections
  1. Fluorescence in-situ hybridization

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