Alert button
Picture for Nevrez Imamoglu

Nevrez Imamoglu

Alert button

Hyperspectral Image Denoising via Self-Modulating Convolutional Neural Networks

Add code
Bookmark button
Alert button
Sep 15, 2023
Orhan Torun, Seniha Esen Yuksel, Erkut Erdem, Nevrez Imamoglu, Aykut Erdem

Figure 1 for Hyperspectral Image Denoising via Self-Modulating Convolutional Neural Networks
Figure 2 for Hyperspectral Image Denoising via Self-Modulating Convolutional Neural Networks
Figure 3 for Hyperspectral Image Denoising via Self-Modulating Convolutional Neural Networks
Figure 4 for Hyperspectral Image Denoising via Self-Modulating Convolutional Neural Networks
Viaarxiv icon

Attention-Guided Lidar Segmentation and Odometry Using Image-to-Point Cloud Saliency Transfer

Add code
Bookmark button
Alert button
Aug 28, 2023
Guanqun Ding, Nevrez Imamoglu, Ali Caglayan, Masahiro Murakawa, Ryosuke Nakamura

Figure 1 for Attention-Guided Lidar Segmentation and Odometry Using Image-to-Point Cloud Saliency Transfer
Figure 2 for Attention-Guided Lidar Segmentation and Odometry Using Image-to-Point Cloud Saliency Transfer
Figure 3 for Attention-Guided Lidar Segmentation and Odometry Using Image-to-Point Cloud Saliency Transfer
Figure 4 for Attention-Guided Lidar Segmentation and Odometry Using Image-to-Point Cloud Saliency Transfer
Viaarxiv icon

Spherical Vision Transformer for 360-degree Video Saliency Prediction

Add code
Bookmark button
Alert button
Aug 24, 2023
Mert Cokelek, Nevrez Imamoglu, Cagri Ozcinar, Erkut Erdem, Aykut Erdem

Figure 1 for Spherical Vision Transformer for 360-degree Video Saliency Prediction
Figure 2 for Spherical Vision Transformer for 360-degree Video Saliency Prediction
Figure 3 for Spherical Vision Transformer for 360-degree Video Saliency Prediction
Figure 4 for Spherical Vision Transformer for 360-degree Video Saliency Prediction
Viaarxiv icon

ST360IQ: No-Reference Omnidirectional Image Quality Assessment with Spherical Vision Transformers

Add code
Bookmark button
Alert button
Mar 13, 2023
Nafiseh Jabbari Tofighi, Mohamed Hedi Elfkir, Nevrez Imamoglu, Cagri Ozcinar, Erkut Erdem, Aykut Erdem

Figure 1 for ST360IQ: No-Reference Omnidirectional Image Quality Assessment with Spherical Vision Transformers
Figure 2 for ST360IQ: No-Reference Omnidirectional Image Quality Assessment with Spherical Vision Transformers
Figure 3 for ST360IQ: No-Reference Omnidirectional Image Quality Assessment with Spherical Vision Transformers
Figure 4 for ST360IQ: No-Reference Omnidirectional Image Quality Assessment with Spherical Vision Transformers
Viaarxiv icon

RGB-D SLAM Using Attention Guided Frame Association

Add code
Bookmark button
Alert button
Jan 28, 2022
Ali Caglayan, Nevrez Imamoglu, Oguzhan Guclu, Ali Osman Serhatoglu, Weimin Wang, Ahmet Burak Can, Ryosuke Nakamura

Figure 1 for RGB-D SLAM Using Attention Guided Frame Association
Figure 2 for RGB-D SLAM Using Attention Guided Frame Association
Figure 3 for RGB-D SLAM Using Attention Guided Frame Association
Figure 4 for RGB-D SLAM Using Attention Guided Frame Association
Viaarxiv icon

SalFBNet: Learning Pseudo-Saliency Distribution via Feedback Convolutional Networks

Add code
Bookmark button
Alert button
Jan 11, 2022
Guanqun Ding, Nevrez Imamoglu, Ali Caglayan, Masahiro Murakawa, Ryosuke Nakamura

Figure 1 for SalFBNet: Learning Pseudo-Saliency Distribution via Feedback Convolutional Networks
Figure 2 for SalFBNet: Learning Pseudo-Saliency Distribution via Feedback Convolutional Networks
Figure 3 for SalFBNet: Learning Pseudo-Saliency Distribution via Feedback Convolutional Networks
Figure 4 for SalFBNet: Learning Pseudo-Saliency Distribution via Feedback Convolutional Networks
Viaarxiv icon

When CNNs Meet Random RNNs: Towards Multi-Level Analysis for RGB-D Object and Scene Recognition

Add code
Bookmark button
Alert button
Apr 26, 2020
Ali Caglayan, Nevrez Imamoglu, Ahmet Burak Can, Ryosuke Nakamura

Figure 1 for When CNNs Meet Random RNNs: Towards Multi-Level Analysis for RGB-D Object and Scene Recognition
Figure 2 for When CNNs Meet Random RNNs: Towards Multi-Level Analysis for RGB-D Object and Scene Recognition
Figure 3 for When CNNs Meet Random RNNs: Towards Multi-Level Analysis for RGB-D Object and Scene Recognition
Figure 4 for When CNNs Meet Random RNNs: Towards Multi-Level Analysis for RGB-D Object and Scene Recognition
Viaarxiv icon

Salient object detection on hyperspectral images using features learned from unsupervised segmentation task

Add code
Bookmark button
Alert button
Feb 28, 2019
Nevrez Imamoglu, Guanqun Ding, Yuming Fang, Asako Kanezaki, Toru Kouyama, Ryosuke Nakamura

Figure 1 for Salient object detection on hyperspectral images using features learned from unsupervised segmentation task
Figure 2 for Salient object detection on hyperspectral images using features learned from unsupervised segmentation task
Figure 3 for Salient object detection on hyperspectral images using features learned from unsupervised segmentation task
Figure 4 for Salient object detection on hyperspectral images using features learned from unsupervised segmentation task
Viaarxiv icon

An Integration of Bottom-up and Top-Down Salient Cues on RGB-D Data: Saliency from Objectness vs. Non-Objectness

Add code
Bookmark button
Alert button
Jul 04, 2018
Nevrez Imamoglu, Wataru Shimoda, Chi Zhang, Yuming Fang, Asako Kanezaki, Keiji Yanai, Yoshifumi Nishida

Figure 1 for An Integration of Bottom-up and Top-Down Salient Cues on RGB-D Data: Saliency from Objectness vs. Non-Objectness
Figure 2 for An Integration of Bottom-up and Top-Down Salient Cues on RGB-D Data: Saliency from Objectness vs. Non-Objectness
Figure 3 for An Integration of Bottom-up and Top-Down Salient Cues on RGB-D Data: Saliency from Objectness vs. Non-Objectness
Figure 4 for An Integration of Bottom-up and Top-Down Salient Cues on RGB-D Data: Saliency from Objectness vs. Non-Objectness
Viaarxiv icon

Hyperspectral Image Dataset for Benchmarking on Salient Object Detection

Add code
Bookmark button
Alert button
Jul 02, 2018
Nevrez Imamoglu, Yu Oishi, Xiaoqiang Zhang, Guanqun Ding, Yuming Fang, Toru Kouyama, Ryosuke Nakamura

Figure 1 for Hyperspectral Image Dataset for Benchmarking on Salient Object Detection
Figure 2 for Hyperspectral Image Dataset for Benchmarking on Salient Object Detection
Figure 3 for Hyperspectral Image Dataset for Benchmarking on Salient Object Detection
Figure 4 for Hyperspectral Image Dataset for Benchmarking on Salient Object Detection
Viaarxiv icon