| Style | Citing Format |
|---|---|
| MLA | Barati Shoorche A, et al.. "Gemo: A Deep Learning Method for Brain Fiber Classification and Tract Segmentation Using Geometrical and Morphological Features." Academic Radiology, vol. , no. , 2026, pp. -. |
| APA | Barati Shoorche A, Makkiabadi B, Farnia P, Raminfard S, Leemans A (2026). Gemo: A Deep Learning Method for Brain Fiber Classification and Tract Segmentation Using Geometrical and Morphological Features. Academic Radiology, (), -. |
| Chicago | Barati Shoorche A, Makkiabadi B, Farnia P, Raminfard S, Leemans A. "Gemo: A Deep Learning Method for Brain Fiber Classification and Tract Segmentation Using Geometrical and Morphological Features." Academic Radiology , no. (2026): -. |
| Harvard | Barati Shoorche A et al. (2026) 'Gemo: A Deep Learning Method for Brain Fiber Classification and Tract Segmentation Using Geometrical and Morphological Features', Academic Radiology, (), pp. -. |
| Vancouver | Barati Shoorche A, Makkiabadi B, Farnia P, Raminfard S, Leemans A. Gemo: A Deep Learning Method for Brain Fiber Classification and Tract Segmentation Using Geometrical and Morphological Features. Academic Radiology. 2026;():-. |
| BibTex | @article{ author = {Barati Shoorche A and Makkiabadi B and Farnia P and Raminfard S and Leemans A}, title = {Gemo: A Deep Learning Method for Brain Fiber Classification and Tract Segmentation Using Geometrical and Morphological Features}, journal = {Academic Radiology}, volume = {}, number = {}, pages = {-}, year = {2026} } |
| RIS | TY - JOUR AU - Barati Shoorche A AU - Makkiabadi B AU - Farnia P AU - Raminfard S AU - Leemans A TI - Gemo: A Deep Learning Method for Brain Fiber Classification and Tract Segmentation Using Geometrical and Morphological Features JO - Academic Radiology VL - IS - SP - EP - PY - 2026 ER - |