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Diagnosis: Intracranial aneurysm Click the following link to view the aneurysm: #Aneurysm 1 This case is from the Lausanne_TOF-MRA_Aneurysm_Cohort. This dataset contains Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) images of patients with intracranial aneurysms. By default, the segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. Note: in the future, we will probably add descriptive aneurysm locations for added educational value. License: Creative Commons Zero (CC0) Citations: Tommaso Di Noto, Guillaume Marie, Sebastien Tourbier, Yasser Alemán-Gómez, Oscar Esteban, Guillaume Saliou, Meritxell Bach Cuadra, Patric Hagmann, and Jonas Richiardi (2022). Lausanne_TOF-MRA_Aneurysm_Cohort. OpenNeuro. [Dataset] doi:10.18112/openneuro.ds003949.v1.0.1 Di Noto, et al. "Towards Automated Brain Aneurysm Detection in TOF-MRA: Open Data, Weak Labels, and Anatomical Knowledge", Neuroinformatics, 2022, https://doi.org/10.1007/s12021-022-09597-0
Diagnosis: Intracranial aneurysm Click the following link to view the aneurysm: #Aneurysm 1 This case is from the Lausanne_TOF-MRA_Aneurysm_Cohort. This dataset contains Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) images of patients with intracranial aneurysms. By default, the segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. Note: in the future, we will probably add descriptive aneurysm locations for added educational value. License: Creative Commons Zero (CC0) Citations: Tommaso Di Noto, Guillaume Marie, Sebastien Tourbier, Yasser Alemán-Gómez, Oscar Esteban, Guillaume Saliou, Meritxell Bach Cuadra, Patric Hagmann, and Jonas Richiardi (2022). Lausanne_TOF-MRA_Aneurysm_Cohort. OpenNeuro. [Dataset] doi:10.18112/openneuro.ds003949.v1.0.1 Di Noto, et al. "Towards Automated Brain Aneurysm Detection in TOF-MRA: Open Data, Weak Labels, and Anatomical Knowledge", Neuroinformatics, 2022, https://doi.org/10.1007/s12021-022-09597-0
Diagnosis: Intracranial aneurysm Click the following link to view the aneurysm: #Aneurysm 1 This case is from the Lausanne_TOF-MRA_Aneurysm_Cohort. This dataset contains Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) images of patients with intracranial aneurysms. By default, the segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. Note: in the future, we will probably add descriptive aneurysm locations for added educational value. License: Creative Commons Zero (CC0) Citations: Tommaso Di Noto, Guillaume Marie, Sebastien Tourbier, Yasser Alemán-Gómez, Oscar Esteban, Guillaume Saliou, Meritxell Bach Cuadra, Patric Hagmann, and Jonas Richiardi (2022). Lausanne_TOF-MRA_Aneurysm_Cohort. OpenNeuro. [Dataset] doi:10.18112/openneuro.ds003949.v1.0.1 Di Noto, et al. "Towards Automated Brain Aneurysm Detection in TOF-MRA: Open Data, Weak Labels, and Anatomical Knowledge", Neuroinformatics, 2022, https://doi.org/10.1007/s12021-022-09597-0
Diagnosis: Intracranial aneurysm Click the following link to view the aneurysm: #Aneurysm 1 This case is from the Lausanne_TOF-MRA_Aneurysm_Cohort. This dataset contains Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) images of patients with intracranial aneurysms. By default, the segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. Note: in the future, we will probably add descriptive aneurysm locations for added educational value. License: Creative Commons Zero (CC0) Citations: Tommaso Di Noto, Guillaume Marie, Sebastien Tourbier, Yasser Alemán-Gómez, Oscar Esteban, Guillaume Saliou, Meritxell Bach Cuadra, Patric Hagmann, and Jonas Richiardi (2022). Lausanne_TOF-MRA_Aneurysm_Cohort. OpenNeuro. [Dataset] doi:10.18112/openneuro.ds003949.v1.0.1 Di Noto, et al. "Towards Automated Brain Aneurysm Detection in TOF-MRA: Open Data, Weak Labels, and Anatomical Knowledge", Neuroinformatics, 2022, https://doi.org/10.1007/s12021-022-09597-0
Diagnosis: Intracranial aneurysm Click the following link to view the aneurysm: #Aneurysm 1 This case is from the Lausanne_TOF-MRA_Aneurysm_Cohort. This dataset contains Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) images of patients with intracranial aneurysms. By default, the segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. Note: in the future, we will probably add descriptive aneurysm locations for added educational value. License: Creative Commons Zero (CC0) Citations: Tommaso Di Noto, Guillaume Marie, Sebastien Tourbier, Yasser Alemán-Gómez, Oscar Esteban, Guillaume Saliou, Meritxell Bach Cuadra, Patric Hagmann, and Jonas Richiardi (2022). Lausanne_TOF-MRA_Aneurysm_Cohort. OpenNeuro. [Dataset] doi:10.18112/openneuro.ds003949.v1.0.1 Di Noto, et al. "Towards Automated Brain Aneurysm Detection in TOF-MRA: Open Data, Weak Labels, and Anatomical Knowledge", Neuroinformatics, 2022, https://doi.org/10.1007/s12021-022-09597-0
Diagnosis: Intracranial aneurysm Click the following link to view the aneurysm: #Aneurysm 1 This case is from the Lausanne_TOF-MRA_Aneurysm_Cohort. This dataset contains Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) images of patients with intracranial aneurysms. By default, the segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. Note: in the future, we will probably add descriptive aneurysm locations for added educational value. License: Creative Commons Zero (CC0) Citations: Tommaso Di Noto, Guillaume Marie, Sebastien Tourbier, Yasser Alemán-Gómez, Oscar Esteban, Guillaume Saliou, Meritxell Bach Cuadra, Patric Hagmann, and Jonas Richiardi (2022). Lausanne_TOF-MRA_Aneurysm_Cohort. OpenNeuro. [Dataset] doi:10.18112/openneuro.ds003949.v1.0.1 Di Noto, et al. "Towards Automated Brain Aneurysm Detection in TOF-MRA: Open Data, Weak Labels, and Anatomical Knowledge", Neuroinformatics, 2022, https://doi.org/10.1007/s12021-022-09597-0
Diagnosis: Intracranial aneurysm Click the following link to view the aneurysm: #Aneurysm 1 This case is from the Lausanne_TOF-MRA_Aneurysm_Cohort. This dataset contains Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) images of patients with intracranial aneurysms. By default, the segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. Note: in the future, we will probably add descriptive aneurysm locations for added educational value. License: Creative Commons Zero (CC0) Citations: Tommaso Di Noto, Guillaume Marie, Sebastien Tourbier, Yasser Alemán-Gómez, Oscar Esteban, Guillaume Saliou, Meritxell Bach Cuadra, Patric Hagmann, and Jonas Richiardi (2022). Lausanne_TOF-MRA_Aneurysm_Cohort. OpenNeuro. [Dataset] doi:10.18112/openneuro.ds003949.v1.0.1 Di Noto, et al. "Towards Automated Brain Aneurysm Detection in TOF-MRA: Open Data, Weak Labels, and Anatomical Knowledge", Neuroinformatics, 2022, https://doi.org/10.1007/s12021-022-09597-0
Diagnosis: Type B Aortic Dissection This case is from Image-TBAD, a dataset providing segmentation of Type-B aortic dissection (TBAD). The segmentations include true lumen (TL), false lumen (FL), and thrombosed false lumen (FLT). By default, the aortic dissection segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. License: Apache 2.0 Citation: Yao Zeyang, Xie Wen, Zhang Jiawei, Dong Yuhao, Qiu Hailong, Yuan Haiyun, Jia Qianjun, Wang Tianchen, Shi Yiyi, Zhuang Jian, Que Lifeng, Xu Xiaowei, Huang Meiping, "ImageTBAD: A 3D Computed Tomography Angiography Image Dataset for Automatic Segmentation of Type-B Aortic Dissection," Frontiers in Physiology, Volume 12, 2021. https://doi.org/10.3389/fphys.2021.732711
Diagnosis: Type B Aortic Dissection This case is from Image-TBAD, a dataset providing segmentation of Type-B aortic dissection (TBAD). The segmentations include true lumen (TL), false lumen (FL), and thrombosed false lumen (FLT). By default, the aortic dissection segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. License: Apache 2.0 Citation: Yao Zeyang, Xie Wen, Zhang Jiawei, Dong Yuhao, Qiu Hailong, Yuan Haiyun, Jia Qianjun, Wang Tianchen, Shi Yiyi, Zhuang Jian, Que Lifeng, Xu Xiaowei, Huang Meiping, "ImageTBAD: A 3D Computed Tomography Angiography Image Dataset for Automatic Segmentation of Type-B Aortic Dissection," Frontiers in Physiology, Volume 12, 2021. https://doi.org/10.3389/fphys.2021.732711
Diagnosis: Type B Aortic Dissection This case is from Image-TBAD, a dataset providing segmentation of Type-B aortic dissection (TBAD). The segmentations include true lumen (TL), false lumen (FL), and thrombosed false lumen (FLT). By default, the aortic dissection segmentations are disabled. To show them, click on the Setting icon in the bottom right of the DicomTube player and select the "With Segmentations" volume preset. License: Apache 2.0 Citation: Yao Zeyang, Xie Wen, Zhang Jiawei, Dong Yuhao, Qiu Hailong, Yuan Haiyun, Jia Qianjun, Wang Tianchen, Shi Yiyi, Zhuang Jian, Que Lifeng, Xu Xiaowei, Huang Meiping, "ImageTBAD: A 3D Computed Tomography Angiography Image Dataset for Automatic Segmentation of Type-B Aortic Dissection," Frontiers in Physiology, Volume 12, 2021. https://doi.org/10.3389/fphys.2021.732711