Alert button
Picture for Agata Lapedriza

Agata Lapedriza

Alert button

Analyzing the contribution of different passively collected data to predict Stress and Depression

Add code
Bookmark button
Alert button
Oct 20, 2023
Irene Bonafonte, Cristina Bustos, Abraham Larrazolo, Gilberto Lorenzo Martinez Luna, Adolfo Guzman Arenas, Xavier Baro, Isaac Tourgeman, Mercedes Balcells, Agata Lapedriza

Figure 1 for Analyzing the contribution of different passively collected data to predict Stress and Depression
Viaarxiv icon

On the use of Vision-Language models for Visual Sentiment Analysis: a study on CLIP

Add code
Bookmark button
Alert button
Oct 18, 2023
Cristina Bustos, Carles Civit, Brian Du, Albert Sole-Ribalta, Agata Lapedriza

Figure 1 for On the use of Vision-Language models for Visual Sentiment Analysis: a study on CLIP
Figure 2 for On the use of Vision-Language models for Visual Sentiment Analysis: a study on CLIP
Figure 3 for On the use of Vision-Language models for Visual Sentiment Analysis: a study on CLIP
Figure 4 for On the use of Vision-Language models for Visual Sentiment Analysis: a study on CLIP
Viaarxiv icon

Local Relighting of Real Scenes

Add code
Bookmark button
Alert button
Jul 06, 2022
Audrey Cui, Ali Jahanian, Agata Lapedriza, Antonio Torralba, Shahin Mahdizadehaghdam, Rohit Kumar, David Bau

Figure 1 for Local Relighting of Real Scenes
Figure 2 for Local Relighting of Real Scenes
Figure 3 for Local Relighting of Real Scenes
Figure 4 for Local Relighting of Real Scenes
Viaarxiv icon

Predicting the impact of urban change in pedestrian and road safety

Add code
Bookmark button
Alert button
Feb 03, 2022
Cristina Bustos, Daniel Rhoads, Agata Lapedriza, Javier Borge-Holthoefer, Albert Solé-Ribalta

Figure 1 for Predicting the impact of urban change in pedestrian and road safety
Figure 2 for Predicting the impact of urban change in pedestrian and road safety
Figure 3 for Predicting the impact of urban change in pedestrian and road safety
Figure 4 for Predicting the impact of urban change in pedestrian and road safety
Viaarxiv icon

Incidents1M: a large-scale dataset of images with natural disasters, damage, and incidents

Add code
Bookmark button
Alert button
Jan 11, 2022
Ethan Weber, Dim P. Papadopoulos, Agata Lapedriza, Ferda Ofli, Muhammad Imran, Antonio Torralba

Figure 1 for Incidents1M: a large-scale dataset of images with natural disasters, damage, and incidents
Figure 2 for Incidents1M: a large-scale dataset of images with natural disasters, damage, and incidents
Figure 3 for Incidents1M: a large-scale dataset of images with natural disasters, damage, and incidents
Figure 4 for Incidents1M: a large-scale dataset of images with natural disasters, damage, and incidents
Viaarxiv icon

Explainable, automated urban interventions to improve pedestrian and vehicle safety

Add code
Bookmark button
Alert button
Nov 08, 2021
Cristina Bustos, Daniel Rhoads, Albert Sole-Ribalta, David Masip, Alex Arenas, Agata Lapedriza, Javier Borge-Holthoefer

Figure 1 for Explainable, automated urban interventions to improve pedestrian and vehicle safety
Figure 2 for Explainable, automated urban interventions to improve pedestrian and vehicle safety
Figure 3 for Explainable, automated urban interventions to improve pedestrian and vehicle safety
Viaarxiv icon

Predicting Driver Self-Reported Stress by Analyzing the Road Scene

Add code
Bookmark button
Alert button
Sep 27, 2021
Cristina Bustos, Neska Elhaouij, Albert Sole-Ribalta, Javier Borge-Holthoefer, Agata Lapedriza, Rosalind Picard

Figure 1 for Predicting Driver Self-Reported Stress by Analyzing the Road Scene
Figure 2 for Predicting Driver Self-Reported Stress by Analyzing the Road Scene
Figure 3 for Predicting Driver Self-Reported Stress by Analyzing the Road Scene
Figure 4 for Predicting Driver Self-Reported Stress by Analyzing the Road Scene
Viaarxiv icon

Interpreting Face Inference Models using Hierarchical Network Dissection

Add code
Bookmark button
Alert button
Aug 23, 2021
Divyang Teotia, Agata Lapedriza, Sarah Ostadabbas

Figure 1 for Interpreting Face Inference Models using Hierarchical Network Dissection
Figure 2 for Interpreting Face Inference Models using Hierarchical Network Dissection
Figure 3 for Interpreting Face Inference Models using Hierarchical Network Dissection
Figure 4 for Interpreting Face Inference Models using Hierarchical Network Dissection
Viaarxiv icon

Recognizing Emotions evoked by Movies using Multitask Learning

Add code
Bookmark button
Alert button
Jul 30, 2021
Hassan Hayat, Carles Ventura, Agata Lapedriza

Figure 1 for Recognizing Emotions evoked by Movies using Multitask Learning
Figure 2 for Recognizing Emotions evoked by Movies using Multitask Learning
Figure 3 for Recognizing Emotions evoked by Movies using Multitask Learning
Figure 4 for Recognizing Emotions evoked by Movies using Multitask Learning
Viaarxiv icon