![Intelligent Systems Center](/sites/default/files/2023-12/IMG-ISC-Main-Dec2023.jpg)
Intelligent Systems Center
Research Tools
Open-Source Software
![Environments and Testing Frameworks](/sites/default/files/2023-08/IMG-Environments-Testing-Frameworks-cropped.jpg)
This collection of repositories consists of highly configurable environments for developing reinforcement learning agents that continually learn, as well as metrics for continual learning.
![Illustration of Brain](/sites/default/files/2023-08/IMG-SABER-cropped.jpg)
SABER (Scalable Analytics for Brain Exploration Research) is a library of containerized tools and a workflow deployment system for enabling processing of large neuroimaging datasets.
![Miniature Insect Connectome](/sites/default/files/2023-08/IMG-SEISMIC-cropped.jpg)
This repository is meant to include code supporting the paper “Continuous State Estimation from Synapse Constrained Connectivity,” presented at WCCI2022, and available online at IEEE Xplore and arXiv.
![TrojAI graphic](/sites/default/files/2023-08/IMG-TrojAI-cropped.jpg)
A repository to quickly generate synthetic data and associated trojaned deep learning models.
Competitions
![Reconnaissance Blind Chess](/sites/default/files/2023-08/IMG-Reconnaissance-Blind-Chess-cropped.jpg)
Reconnaissance Blind Chess (RBC) is a chess variant designed for new research in artificial intelligence. RBC includes imperfect information, long-term strategy, explicit observations, and almost no common knowledge. These features appear in real-world scenarios and challenge even state-of-the-art algorithms. Each RBC player controls traditional chess pieces but cannot directly see the locations of their opponent's pieces. Rather, a player learns partial information each turn by privately sensing a chosen 3×3 area of the board.
Datasets
![Connectomes](/sites/default/files/2023-08/IMG-Connectomes-Brain-Maturation-cropped.jpg)
Eight high-resolution electron microscopy volumes of C. elegans brains at different stages of development, spanning birth to adulthood.
![Cortical circuits within visual cortex of mouse](/sites/default/files/2023-08/IMG-Functional-Connectomics-cropped.jpg)
High-resolution electron microscopy, segmentation, and morphological reconstruction of cortical circuits within the visual cortex of mouse.
![X-ray microtomography](/sites/default/files/2023-08/IMG-Mesocale-Neuroanatomy-2016-cropped.jpg)
Mouse-Dyer3
![Micro-computed tomography data](/sites/default/files/2023-08/IMG-Mesocale-Neuroanatomy-2017-cropped.jpg)
The images provided are micro-computed tomography data collected from 2-BM at Argonne National Laboratory.
![Organellese, compartments, cells, circuits, and activity in mouse visual cortex](/sites/default/files/2023-08/IMG-Reconstruction-Neocortex-cropped.jpg)
High-resolution electron microscopy, segmentation, and morphological reconstruction of cortical circuits within the visual cortex of mouse.