Strong overlap with paper title keywords · Community adoption signal (118 stars)
- Stars
- 118
- Last push
- Jan 23, 2020 (2383d ago)
Risk flags
- No push in 12+ months
- No CI pipeline detected
- No tagged releases
Fred Hohman, Haekyu Park, Caleb Robinson, Duen Horng Chau
Paper appears method- or tooling-adjacent to AI workflows with partial ecosystem coverage.
Deep learning is increasingly used in decision-making tasks. However, understanding how neural networks produce final predictions remains a fundamental challenge. Existing work on interpreting neural network predictions for images often focuses on explaining predictions for single images or neurons. As predictions are often computed from millions of weights that are optimized over millions of images, such explanation ...
s can easily miss a bigger picture. We present Summit, an interactive system that scalably and systematically summarizes and visualizes what features a deep learning model has learned and how those features interact to make predictions. Summit introduces two new scalable summarization techniques: (1) activation aggregation discovers important neurons, and (2) neuron-influence aggregation identifies relationships among such neurons. Summit combines these techniques to create the novel attribution graph that reveals and summarizes crucial neuron associations and substructures that contribute to a model's outcomes. Summit scales to large data, such as the ImageNet dataset with 1.2M images, and leverages neural network feature visualization and dataset examples to help users distill large, complex neural network models into compact, interactive visualizations. We present neural network exploration scenarios where Summit helps us discover multiple surprising insights into a prevalent, large-scale image classifier's learned representations and informs future neural network architecture design. The Summit visualization runs in modern web browsers and is open-sourced.
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Deep learning is increasingly used in decision-making tasks.
hussius/deeplearning-biology is the closest maintained adjacent implementation (Matches contextual method/domain keyword: deep learning). It is not paper-verified; validate algorithm and evaluation setup against the paper before trusting reported metrics. Community adoption signal: 2150 GitHub stars.
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Expect multi-day setup/compute for meaningful reproduction based on current guidance.
Evidence graph: 3 refs, 3 links.
Utility signals: depth 50/100, grounding 75/100, status medium.
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Strong overlap with paper title keywords · Community adoption signal (118 stars)
Risk flags
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These are not paper-verified. Use them as reference points when no direct implementation is available.
Matches contextual method/domain keyword: deep learning
Matches contextual method/domain keyword: deep learning
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19
Citations
66
References
Tasks
Summit, Computer science, Deep learning, Interpretability, Visualization, Artificial neural network, Automatic summarization, Scalability
Methods
None detected
Domains
Artificial intelligence, Machine learning
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