日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Artificial intelligence for personalized management of vestibular schwannoma: a multidisciplinary clinical implementation study

人工智能在个体化前庭神经鞘瘤管理中的应用:一项多学科临床实施研究

Wijethilake, Navodini; Connor, Steve; Oviedova, Anna; Ivory, Marina; Burger, Rebecca; De Leon De Sagun, Jeromel; Hitchings, Amanda; Abougamil, Ahmed; Giannis, Theofanis; Syrris, Christoforos; Chia, Kazumi; Al-Salihi, Omar; Obholzer, Rupert; Jiang, Dan; Maratos, Eleni; Barazi, Sinan; Thomas, Nick; Vercauteren, Tom; Shapey, Jonathan

Magnetic resonance imaging and the evaluation of vestibular schwannomas: a systematic review

磁共振成像在评估前庭神经鞘瘤中的应用:系统评价

Lee, Keng Siang; Wijetilake, Navodini; Connor, Steve; Vercauteren, Tom; Shapey, Jonathan

The Real-World Impact of Vestibular Schwannoma Fully Automated Volume Measures on the Evaluation of Size Change and Clinical Management Outcomes in a Multidisciplinary Meeting Setting

在多学科会议环境中,全自动前庭神经鞘瘤体积测量对评估肿瘤大小变化和临床治疗结果的实际影响

Connor, Steve; Wijethilake, Navodini; Oviedova, Anna; Burger, Rebecca; Ivory, Marina; Vercauteren, Tom; Shapey, Jonathan

Deep learning for automatic segmentation of vestibular schwannoma: a retrospective study from multi-center routine MRI

利用深度学习自动分割前庭神经鞘瘤:一项基于多中心常规MRI的回顾性研究

Kujawa, Aaron; Dorent, Reuben; Connor, Steve; Thomson, Suki; Ivory, Marina; Vahedi, Ali; Guilhem, Emily; Wijethilake, Navodini; Bradford, Robert; Kitchen, Neil; Bisdas, Sotirios; Ourselin, Sebastien; Vercauteren, Tom; Shapey, Jonathan

DEEP-squared: deep learning powered De-scattering with Excitation Patterning

DEEP-squared:基于深度学习的激发模式去散射

Navodini Wijethilake #, Mithunjha Anandakumar #, Cheng Zheng, Peter T C So, Murat Yildirim, Dushan N Wadduwage

Imaging biomarkers associated with extra-axial intracranial tumors: a systematic review

与颅外肿瘤相关的影像学生物标志物:系统评价

Wijethilake, Navodini; MacCormac, Oscar; Vercauteren, Tom; Shapey, Jonathan

De-scattering Deep Neural Network Enables Fast Imaging of Spines through Scattering Media by Temporal Focusing Microscopy

利用时间聚焦显微镜,通过去散射深度神经网络实现对散射介质中棘突的快速成像

Wei, Zhun; Boivin, Josiah R; Xue, Yi; Burnell, Kendyll; Wijethilake, Navodini; Chen, Xudong; So, Peter T C; Nedivi, Elly; Wadduwage, Dushan N