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The USC ROS packages project offers algorithms and drivers for the robotics projects underway in the labs at the University of Southern California. These packages are for use with the ROS software infrastructure (http://ros.sourceforge.net/).
PROJECT MOVED: see http://www.vmtk.org for up-to-date information.
Libraries and tools for 3D reconstruction, geometric analysis, mesh generation and surface data analysis in image-based blood vessel modeling.
** MAIN SITE IS NOW: https://github.com/NIFTI-Imaging/nifti_clib **
niftilib is a collection of i/o routines for the nifti1 neuroimage data format. C (nifticlib), Java (niftijlib), Matlab (niftimatlib), and Python (pynifti) code is available. For nifti format info see: http://nifti.nimh.nih.gov/
Transform your applications and workflows into powerful agentic systems at global scale.
Gemini Enterprise Agent Platform lets you rapidly build, scale, govern and optimize production-ready agents grounded in your organization's data. The platform enables developers to build custom or pre-built agents for virtually any use case. New customers get $300 in free credits.
Python FFTW as the name suggests are Python bindings to the FFTW3 C-library from http://www.fftw.org. They use numpy and python ctypes, and often offer about twice the performance compared to the fft routines included in numpy.
naga EDA devotes to provide useful electronic design tools in C++ and, especially, Python. The current release contains naga.Verilog, a Verilog parser. Please visit project homepage http://naga-eda.org for more information
This is the RoboCup Mixed Reality Project: a standard research and educational platform integrating cutting edge and low cost watch technology into a miniature multi-robot system which mixes reality and simulation.
PyMOL Plugins aims to provide many plugins for the PyMOL software.
You can find further informations about PyMOL on this website:
http://www.pymol.org/
Translates OpenFOAM (Open Source CFD Toolbox, see http://sourceforge.net/projects/foam) data into MED format (see http://www.code-aster.org/outils/med). The initial goal to develop this utility was to be able integrate OpenFOAM functionality with SALOME
Improved version of the LibNumTh library (http://libnumth.sourceforge.net/), reimplementing
its methods to work concurrently in a SMP environment.
In addition, it is extended with support for linear algebra and numerical methods mechanisms.
Add-ons to the ECMWF GRIB API.
This project is about developing and maintaining add-ons to the GRIB API, like language bindings or documentation.
The main GRIB API page is at http://www.ecmwf.int/products/data/software/grib_api.html
The Open Source Health Information Platform is a Python implementation of openEHR electronic health record specifications http://www.openehr.org. Project website : http://launchpad.net/oship Analytics are at: http://www.ohloh.net/projects/oship
Visit [http://www.gmfg.buffalo.edu] GMFG website for More information. A user guide for TITAN is made available on GMFG website. We strongly recommend all the users to register with GMFG website for future updates
The Liberlab project aimed in 2004-2006 to promote scientific experimentation through the creation and use of a digital lab at a very low cost (15 €/$). Don't link to old site (URL squatting). See archive (http://sites.google.com/site/liberlabsite)
boost_graph tried to wrap the C++ Boost Graph library in Python, providing graph algorithms like Breadth First Search, DFS, Shortest Path, Topological sort. This project is dead (http://bayleshanks.com/pamv1)
A generic game engine built on top of libksd (http://libksd.sourceforge.net/) using the Atlas (http://www.worldforge.org/website/protocols/) for the network protocol.
PyXPA is a Python interface to the XPA library (http://hea-www.harvard.edu/RD/xpa/ developed by the SAO/HEAD R&D Group (http://hea-www.harvard.edu/RD/)).
Packaging code for SnapPea, a program for creating and studying hyperbolic 3-manifolds.
This is for packaging ONLY. SnapPea itself (and its successor SnapPy) can be found at: http://www.math.uic.edu/t3m/SnapPy/