Software
Links to source codes (e.g. Matlab, C++) and software packages (both commercial and open-source) related to computer vision. If you would like to submit a link, please contact us.
| Background Subtraction Library |
Background Subtraction Library (BGS Library) is an OpenCV C++ Background Subtraction Library. It currently contains the following background subtractors: |
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| CANDLE: Multiphoton Image Filtering |
A new Collaborative Approach for eNhanced Denoising under Low-light Excitation (CANDLE) is introduced for the processing of 3D laser scanning multiphoton microscopy images. |
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| VSG Image Processing & Analysis Toolbox (Matlab) |
VSG Image Processing & Analysis Toolbox The VSG IPA TOOLBOX is a free MATLAB compatible image processing and analysis toolbox which provides high level access to a wide range of image processin |
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| MiaLite |
MiaLite is a general-purpose image segmentation tool using a patent pending, innovative level-set algorithm, which allows you to interactively segment various organs or lesions from 2D or 3D data |
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| Pixastic |
Pixastic is an experimental library which allows you to perform a variety of operations on images using just a bit of JavaScript. |
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| The DLR Camera Calibration Toolbox (DLR CalLab and CalDe) |
The camera calibration toolbox DLR CalDe and DLR CalLab is available for non-commercial purposes and has been recently updated. |
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| Kinect Calibration Toolbox |
The toolbox simultaneously calibrates the Kinect color camera, the Kinect depth camera, an (optional) external high resolution color camera, and the relative pose between them. |
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| NVIDIA CUDA |
CUDA® is a parallel computing platform and programming model invented by NVIDIA. |
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| Scanalyze: a system for aligning and merging range data |
Scanalyze is an interactive computer graphics application for viewing, editing, aligning, and merging range images to produce dense polygon meshes. |
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| Volfill: a hole filler based on volumetric diffusion |
Volfill is a program for filling in holes in dense polygon meshes using an algorithm based on volumetric diffusion. |
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