Picture for Shin'ya Nishida

Shin'ya Nishida

Modelling Human Visual Motion Processing with Trainable Motion Energy Sensing and a Self-attention Network for Adaptive Motion Integration

May 16, 2023
Figure 1 for Modelling Human Visual Motion Processing with Trainable Motion Energy Sensing and a Self-attention Network for Adaptive Motion Integration
Figure 2 for Modelling Human Visual Motion Processing with Trainable Motion Energy Sensing and a Self-attention Network for Adaptive Motion Integration
Figure 3 for Modelling Human Visual Motion Processing with Trainable Motion Energy Sensing and a Self-attention Network for Adaptive Motion Integration
Figure 4 for Modelling Human Visual Motion Processing with Trainable Motion Energy Sensing and a Self-attention Network for Adaptive Motion Integration
Viaarxiv icon

Unsupervised Learning Optical Flow in Multi-frame Dynamic Environment Using Temporal Dynamic Modeling

Apr 14, 2023
Figure 1 for Unsupervised Learning Optical Flow in Multi-frame Dynamic Environment Using Temporal Dynamic Modeling
Figure 2 for Unsupervised Learning Optical Flow in Multi-frame Dynamic Environment Using Temporal Dynamic Modeling
Figure 3 for Unsupervised Learning Optical Flow in Multi-frame Dynamic Environment Using Temporal Dynamic Modeling
Figure 4 for Unsupervised Learning Optical Flow in Multi-frame Dynamic Environment Using Temporal Dynamic Modeling
Viaarxiv icon

Optimizing Facial Expressions of an Android Robot Effectively: a Bayesian Optimization Approach

Jan 13, 2023
Figure 1 for Optimizing Facial Expressions of an Android Robot Effectively: a Bayesian Optimization Approach
Figure 2 for Optimizing Facial Expressions of an Android Robot Effectively: a Bayesian Optimization Approach
Figure 3 for Optimizing Facial Expressions of an Android Robot Effectively: a Bayesian Optimization Approach
Figure 4 for Optimizing Facial Expressions of an Android Robot Effectively: a Bayesian Optimization Approach
Viaarxiv icon