Alert button
Picture for Jasmine Collins

Jasmine Collins

Alert button

CommonCanvas: An Open Diffusion Model Trained with Creative-Commons Images

Add code
Bookmark button
Alert button
Oct 25, 2023
Aaron Gokaslan, A. Feder Cooper, Jasmine Collins, Landan Seguin, Austin Jacobson, Mihir Patel, Jonathan Frankle, Cory Stephenson, Volodymyr Kuleshov

Figure 1 for CommonCanvas: An Open Diffusion Model Trained with Creative-Commons Images
Figure 2 for CommonCanvas: An Open Diffusion Model Trained with Creative-Commons Images
Figure 3 for CommonCanvas: An Open Diffusion Model Trained with Creative-Commons Images
Figure 4 for CommonCanvas: An Open Diffusion Model Trained with Creative-Commons Images
Viaarxiv icon

CA$^2$T-Net: Category-Agnostic 3D Articulation Transfer from Single Image

Add code
Bookmark button
Alert button
Jan 05, 2023
Jasmine Collins, Anqi Liang, Jitendra Malik, Hao Zhang, Frédéric Devernay

Figure 1 for CA$^2$T-Net: Category-Agnostic 3D Articulation Transfer from Single Image
Figure 2 for CA$^2$T-Net: Category-Agnostic 3D Articulation Transfer from Single Image
Figure 3 for CA$^2$T-Net: Category-Agnostic 3D Articulation Transfer from Single Image
Figure 4 for CA$^2$T-Net: Category-Agnostic 3D Articulation Transfer from Single Image
Viaarxiv icon

Towards Understanding How Machines Can Learn Causal Overhypotheses

Add code
Bookmark button
Alert button
Jun 16, 2022
Eliza Kosoy, David M. Chan, Adrian Liu, Jasmine Collins, Bryanna Kaufmann, Sandy Han Huang, Jessica B. Hamrick, John Canny, Nan Rosemary Ke, Alison Gopnik

Figure 1 for Towards Understanding How Machines Can Learn Causal Overhypotheses
Figure 2 for Towards Understanding How Machines Can Learn Causal Overhypotheses
Figure 3 for Towards Understanding How Machines Can Learn Causal Overhypotheses
Figure 4 for Towards Understanding How Machines Can Learn Causal Overhypotheses
Viaarxiv icon

Learning Causal Overhypotheses through Exploration in Children and Computational Models

Add code
Bookmark button
Alert button
Feb 21, 2022
Eliza Kosoy, Adrian Liu, Jasmine Collins, David M Chan, Jessica B Hamrick, Nan Rosemary Ke, Sandy H Huang, Bryanna Kaufmann, John Canny, Alison Gopnik

Figure 1 for Learning Causal Overhypotheses through Exploration in Children and Computational Models
Figure 2 for Learning Causal Overhypotheses through Exploration in Children and Computational Models
Figure 3 for Learning Causal Overhypotheses through Exploration in Children and Computational Models
Figure 4 for Learning Causal Overhypotheses through Exploration in Children and Computational Models
Viaarxiv icon

GANmouflage: 3D Object Nondetection with Texture Fields

Add code
Bookmark button
Alert button
Jan 18, 2022
Rui Guo, Jasmine Collins, Oscar de Lima, Andrew Owens

Figure 1 for GANmouflage: 3D Object Nondetection with Texture Fields
Figure 2 for GANmouflage: 3D Object Nondetection with Texture Fields
Figure 3 for GANmouflage: 3D Object Nondetection with Texture Fields
Figure 4 for GANmouflage: 3D Object Nondetection with Texture Fields
Viaarxiv icon

ABO: Dataset and Benchmarks for Real-World 3D Object Understanding

Add code
Bookmark button
Alert button
Oct 12, 2021
Jasmine Collins, Shubham Goel, Achleshwar Luthra, Leon Xu, Kenan Deng, Xi Zhang, Tomas F. Yago Vicente, Himanshu Arora, Thomas Dideriksen, Matthieu Guillaumin, Jitendra Malik

Figure 1 for ABO: Dataset and Benchmarks for Real-World 3D Object Understanding
Figure 2 for ABO: Dataset and Benchmarks for Real-World 3D Object Understanding
Figure 3 for ABO: Dataset and Benchmarks for Real-World 3D Object Understanding
Figure 4 for ABO: Dataset and Benchmarks for Real-World 3D Object Understanding
Viaarxiv icon

Exploring Exploration: Comparing Children with RL Agents in Unified Environments

Add code
Bookmark button
Alert button
May 06, 2020
Eliza Kosoy, Jasmine Collins, David M. Chan, Jessica B. Hamrick, Sandy Huang, Alison Gopnik, John Canny

Figure 1 for Exploring Exploration: Comparing Children with RL Agents in Unified Environments
Figure 2 for Exploring Exploration: Comparing Children with RL Agents in Unified Environments
Figure 3 for Exploring Exploration: Comparing Children with RL Agents in Unified Environments
Viaarxiv icon

Accelerating Training of Deep Neural Networks with a Standardization Loss

Add code
Bookmark button
Alert button
Mar 03, 2019
Jasmine Collins, Johannes Balle, Jonathon Shlens

Figure 1 for Accelerating Training of Deep Neural Networks with a Standardization Loss
Figure 2 for Accelerating Training of Deep Neural Networks with a Standardization Loss
Figure 3 for Accelerating Training of Deep Neural Networks with a Standardization Loss
Figure 4 for Accelerating Training of Deep Neural Networks with a Standardization Loss
Viaarxiv icon

Capacity and Trainability in Recurrent Neural Networks

Add code
Bookmark button
Alert button
Mar 03, 2017
Jasmine Collins, Jascha Sohl-Dickstein, David Sussillo

Figure 1 for Capacity and Trainability in Recurrent Neural Networks
Figure 2 for Capacity and Trainability in Recurrent Neural Networks
Figure 3 for Capacity and Trainability in Recurrent Neural Networks
Figure 4 for Capacity and Trainability in Recurrent Neural Networks
Viaarxiv icon

Protein Secondary Structure Prediction Using Deep Multi-scale Convolutional Neural Networks and Next-Step Conditioning

Add code
Bookmark button
Alert button
Nov 04, 2016
Akosua Busia, Jasmine Collins, Navdeep Jaitly

Figure 1 for Protein Secondary Structure Prediction Using Deep Multi-scale Convolutional Neural Networks and Next-Step Conditioning
Figure 2 for Protein Secondary Structure Prediction Using Deep Multi-scale Convolutional Neural Networks and Next-Step Conditioning
Figure 3 for Protein Secondary Structure Prediction Using Deep Multi-scale Convolutional Neural Networks and Next-Step Conditioning
Figure 4 for Protein Secondary Structure Prediction Using Deep Multi-scale Convolutional Neural Networks and Next-Step Conditioning
Viaarxiv icon