1. Deep learning-based segmentation from histology allows for automated quantification of calcified cartilage morphology in a rabbit model of post-traumatic osteoarthritis. Issue 1 (April 2020) Authors: Rytky, S.J.; Huang, L.; Tiulpin, A.; Tanska, P.; Herzog, W.; Korhonen, R.K.; Saarakkala, S.J.; Finnilä, M.A. Journal: Osteoarthritis and cartilage Issue: Volume 28:Issue 1(2020)supplement Page Start: S310 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
2. Super-resolution and learned perceptual loss allows high-resolution imaging of trabecular bone with clinical cone beam computed tomography. (April 2021) Authors: Rytky, S.J.; Finnilä, M.A.; Karhula, S.K.; Valkealahti, M.; Lehenkari, P.; Joukainen, A.; Kröger, H.; Korhonen, R.K.; Saarakkala, S.; Niinimäki, J.; Tiulpin, A. Journal: Osteoarthritis and cartilage Issue: Volume 29(2021)Supplement 1 Page Start: S338 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗