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Kibo Ote

Showing results (1-10 of 20) with videos related to

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Radiological Physics and Technology|February 8, 2022
Deep-learning-based fast TOF-PET image reconstruction using direction informationKibo Ote, Fumio Hashimoto
Physics in Medicine and Biology|April 19, 2024
ReconU-Net: a direct PET image reconstruction using U-Net architecture with back projection-induced skip connectionFumio Hashimoto, Kibo Ote
Physics in Medicine and Biology|January 31, 2022
Unbiased TOF estimation using leading-edge discriminator and convolutional neural network trained by single-source-position waveformsYuya Onishi, Fumio Hashimoto, Kibo Ote, et al.
IEEE Transactions on Medical Imaging|December 18, 2023
Whole Reconstruction-Free System Design for Direct Positron Emission Imaging From Image Generation to Attenuation CorrectionYuya Onishi, Fumio Hashimoto, Kibo Ote, et al.
Physics in Medicine and Biology|July 5, 2023
Fully 3D implementation of the end-to-end deep image prior-based PET image reconstruction using block iterative algorithmFumio Hashimoto, Yuya Onishi, Kibo Ote, et al.
IEEE Transactions on Medical Imaging|April 6, 2023
List-Mode PET Image Reconstruction Using Deep Image PriorKibo Ote, Fumio Hashimoto, Yuya Onishi, et al.
Radiological Physics and Technology|August 3, 2024
Two-step optimization for accelerating deep image prior-based PET image reconstructionFumio Hashimoto, Yuya Onishi, Kibo Ote, et al.
Annals of Nuclear Medicine|April 3, 2021
Deep learning-based attenuation correction for brain PET with various radiotracersFumio Hashimoto, Masanori Ito, Kibo Ote, et al.
Annals of Nuclear Medicine|May 8, 2024
Animal PET scanner with a large field of view is suitable for high-throughput scanning of rodentsYuki Tomonari, Yuya Onishi, Fumio Hashimoto, et al.
Physics in Medicine and Biology|June 26, 2026
Tracer-agnostic diffusion model-based CT-free attenuation correction for brain PET: Comprehensive evaluation across 14 tracersYuya Onishi, Kibo Ote, Masanori Ito, et al.
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
Radiological Physics and Technology|February 8, 2022
Deep-learning-based fast TOF-PET image reconstruction using direction informationKibo Ote, Fumio Hashimoto
Physics in Medicine and Biology|April 19, 2024
ReconU-Net: a direct PET image reconstruction using U-Net architecture with back projection-induced skip connectionFumio Hashimoto, Kibo Ote
Physics in Medicine and Biology|January 31, 2022
Unbiased TOF estimation using leading-edge discriminator and convolutional neural network trained by single-source-position waveformsYuya Onishi, Fumio Hashimoto, Kibo Ote, et al.
IEEE Transactions on Medical Imaging|December 18, 2023
Whole Reconstruction-Free System Design for Direct Positron Emission Imaging From Image Generation to Attenuation CorrectionYuya Onishi, Fumio Hashimoto, Kibo Ote, et al.
Physics in Medicine and Biology|July 5, 2023
Fully 3D implementation of the end-to-end deep image prior-based PET image reconstruction using block iterative algorithmFumio Hashimoto, Yuya Onishi, Kibo Ote, et al.
IEEE Transactions on Medical Imaging|April 6, 2023
List-Mode PET Image Reconstruction Using Deep Image PriorKibo Ote, Fumio Hashimoto, Yuya Onishi, et al.
Radiological Physics and Technology|August 3, 2024
Two-step optimization for accelerating deep image prior-based PET image reconstructionFumio Hashimoto, Yuya Onishi, Kibo Ote, et al.
Annals of Nuclear Medicine|April 3, 2021
Deep learning-based attenuation correction for brain PET with various radiotracersFumio Hashimoto, Masanori Ito, Kibo Ote, et al.
Annals of Nuclear Medicine|May 8, 2024
Animal PET scanner with a large field of view is suitable for high-throughput scanning of rodentsYuki Tomonari, Yuya Onishi, Fumio Hashimoto, et al.
Physics in Medicine and Biology|June 26, 2026
Tracer-agnostic diffusion model-based CT-free attenuation correction for brain PET: Comprehensive evaluation across 14 tracersYuya Onishi, Kibo Ote, Masanori Ito, et al.
Pageof 2