Quick Reader Guide: Authors: Kang, Min-Seok*; Kang, Dongoh; kim, hansaem Description: Graph convolutional Authors: Pengfei Zhang, Cuiling Lan, Wenjun Zeng, Junliang Xing, Jianru Xue, Nanning Zheng Description:

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Authors: Pengfei Zhang, Cuiling Lan, Wenjun Zeng, Junliang Xing, Jianru Xue, Nanning Zheng Description: Authors: Kang, Min-Seok*; Kang, Dongoh; kim, hansaem Description: Graph convolutional Authors: Raphael Memmesheimer (University of Koblenz-Landau)*; Simon Häring (University of Koblenz-Landau); Nick Theisen ...

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Authors: Raphael Memmesheimer (University of Koblenz-Landau)*; Simon Häring (University of Koblenz-Landau); Nick Theisen ...

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  • Authors: Raphael Memmesheimer (University of Koblenz-Landau)*; Simon Häring (University of Koblenz-Landau); Nick Theisen ...
  • Authors: Kang, Min-Seok*; Kang, Dongoh; kim, hansaem Description: Graph convolutional
  • Authors: Pengfei Zhang, Cuiling Lan, Wenjun Zeng, Junliang Xing, Jianru Xue, Nanning Zheng Description:

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Semantics-Guided Neural Networks for Efficient Skeleton-Based Human Action Recognition
Semantics Guided Neural Networks for Efficient Skeleton Based Human Action Recognition
ST-GCN: Spatial Temporal Graph Convolutional Networks for Skeleton-Based Action Recognition
Skeleton based Action recognition using Graph convolution neural networks
Neural Networks Explained in 5 minutes
Skeleton-DML: Deep Metric Learning for Skeleton-Based One-Shot Action Recognition
Skeleton-based Human Action Recognition via Large-kernel Attention Graph Convolutional Network
[CVPR 2024] BlockGCN: Redefining Topology Awareness for Skeleton-Based Action Recognition
Efficient Skeleton-Based Action Recognition via Joint-Mapping strategies
(CVPR2022) InfoGCN: Representation Learning for Human Skeleton-based Action Recognition
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Semantics-Guided Neural Networks for Efficient Skeleton-Based Human Action Recognition

Semantics-Guided Neural Networks for Efficient Skeleton-Based Human Action Recognition

Authors: Pengfei Zhang, Cuiling Lan, Wenjun Zeng, Junliang Xing, Jianru Xue, Nanning Zheng Description:

Semantics Guided Neural Networks for Efficient Skeleton Based Human Action Recognition

Semantics Guided Neural Networks for Efficient Skeleton Based Human Action Recognition

Read more details and related context about Semantics Guided Neural Networks for Efficient Skeleton Based Human Action Recognition.

ST-GCN: Spatial Temporal Graph Convolutional Networks for Skeleton-Based Action Recognition

ST-GCN: Spatial Temporal Graph Convolutional Networks for Skeleton-Based Action Recognition

Read more details and related context about ST-GCN: Spatial Temporal Graph Convolutional Networks for Skeleton-Based Action Recognition.

Skeleton based Action recognition using Graph convolution neural networks

Skeleton based Action recognition using Graph convolution neural networks

Read more details and related context about Skeleton based Action recognition using Graph convolution neural networks.

Neural Networks Explained in 5 minutes

Neural Networks Explained in 5 minutes

Read more details and related context about Neural Networks Explained in 5 minutes.

Skeleton-DML: Deep Metric Learning for Skeleton-Based One-Shot Action Recognition

Skeleton-DML: Deep Metric Learning for Skeleton-Based One-Shot Action Recognition

Authors: Raphael Memmesheimer (University of Koblenz-Landau)*; Simon Häring (University of Koblenz-Landau); Nick Theisen ...

Skeleton-based Human Action Recognition via Large-kernel Attention Graph Convolutional Network

Skeleton-based Human Action Recognition via Large-kernel Attention Graph Convolutional Network

Read more details and related context about Skeleton-based Human Action Recognition via Large-kernel Attention Graph Convolutional Network.

[CVPR 2024] BlockGCN: Redefining Topology Awareness for Skeleton-Based Action Recognition

[CVPR 2024] BlockGCN: Redefining Topology Awareness for Skeleton-Based Action Recognition

Read more details and related context about [CVPR 2024] BlockGCN: Redefining Topology Awareness for Skeleton-Based Action Recognition.

Efficient Skeleton-Based Action Recognition via Joint-Mapping strategies

Efficient Skeleton-Based Action Recognition via Joint-Mapping strategies

Authors: Kang, Min-Seok*; Kang, Dongoh; kim, hansaem Description: Graph convolutional

(CVPR2022) InfoGCN: Representation Learning for Human Skeleton-based Action Recognition

(CVPR2022) InfoGCN: Representation Learning for Human Skeleton-based Action Recognition

Read more details and related context about (CVPR2022) InfoGCN: Representation Learning for Human Skeleton-based Action Recognition.