Logo Logo
Eine Ebene nach oben
Exportieren als [RSS feed] RSS 1.0 [RSS2 feed] RSS 2.0
Gruppiert nach: Dokumententyp | Veröffentlichungsdatum
Anzahl der Publikationen: 7

Zeitschriftenartikel

Dieckmeyer, Michael; Roy, Abhijit Guha; Senapati, Jyotirmay; Wachinger, Christian; Grundl, Lioba; Döpfert, Jörg; Bertran, Pere Ferrera; Lemke, Andreas; Zimmer, Claus; Kirschke, Jan S. und Hedderich, Dennis M. (2021): Effect of MRI acquisition acceleration via compressed sensing and parallel imaging on brain volumetry. In: Magnetic Resonance Materials in Physics Biology and Medicine, Bd. 34, Nr. 4: S. 487-497

Roy, Abhijit Guha; Siddiqui, Shayan; Poelsterl, Sebastian; Navab, Nassir und Wachinger, Christian (2020): 'Squeeze & excite' guided few-shot segmentation of volumetric images. In: Medical Image Analysis, Bd. 59, 101587

Roy, Abhijit Guha; Navab, Nassir und Wachinger, Christian (2019): Recalibrating Fully Convolutional Networks With Spatial and Channel "Squeeze and Excitation" Blocks. In: IEEE Transactions on Medical Imaging, Bd. 38, Nr. 2: S. 540-549

Paschali, Magdalini; Simson, Walter; Roy, Abhijit Guha; Goebl, Rüdiger; Wachinger, Christian und Navab, Nassir (2019): Manifold Exploring Data Augmentation with Geometric Transformations for Increased Performance and Robustness. In: Information Processing in Medical Imaging, Ipmi 2019, Bd. 11492: S. 517-529

Roy, Abhijit Guha; Conjeti, Sailesh; Navab, Nassir; Wachinger, Christian; Weiner, Michael W. und Aisen, Paul (2019): QuickNAT: A fully convolutional network for quick and accurate segmentation of neuroanatomy. In: Neuroimage, Bd. 186: S. 713-727

Roy, Abhijit Guha; Conjeti, Sailesh; Navab, Nassir und Wachinger, Christian (2019): Bayesian QuickNAT: Model uncertainty in deep whole-brain segmentation for structure-wise quality control. In: Neuroimage, Bd. 195: S. 11-22

Roy, Abhijit Guha; Conjeti, Sailesh; Karri, Sri Phani Krishna; Sheet, Debdoot; Katouzian, Amin; Wachinger, Christian und Navab, Nassir (2017): ReLayNet: retinal layer and fluid segmentation of macular optical coherence tomography using fully convolutional networks. In: Biomedical Optics Express, Bd. 8, Nr. 8: S. 3627-3642

Diese Liste wurde am Sat Apr 20 18:31:05 2024 CEST erstellt.