Brain age estimation using multi-feature-based networks

X Liu, I Beheshti, W Zheng, Y Li, S Li, Z Zhao… - Computers in Biology …, 2022 - Elsevier
Studying brain aging improves our understanding in differentiating typical and atypical
aging. Directly utilizing traditional morphological features for brain age estimation did not …

Brain age estimation using multi-feature-based networks

X Liu, I Beheshti, W Zheng, Y Li, S Li, Z Zhao, Z Yao… - 2022 - ir.lzu.edu.cn
摘要Studying brain aging improves our understanding in differentiating typical and atypical
aging. Directly utilizing traditional morphological features for brain age estimation did not …

Brain age estimation using multi-feature-based networks

X Liu, I Beheshti, W Zheng, Y Li, S Li, Z Zhao, Z Yao… - 2022 - dl.acm.org
Studying brain aging improves our understanding in differentiating typical and atypical
aging. Directly utilizing traditional morphological features for brain age estimation did not …

Brain age estimation using multi-feature-based networks.

X Liu, I Beheshti, W Zheng, Y Li, S Li… - Computers in Biology …, 2022 - europepmc.org
Studying brain aging improves our understanding in differentiating typical and atypical
aging. Directly utilizing traditional morphological features for brain age estimation did not …

Brain age estimation using multi-feature-based networks

X Liu, I Beheshti, W Zheng, Y Li, S Li… - … in biology and …, 2022 - pubmed.ncbi.nlm.nih.gov
Studying brain aging improves our understanding in differentiating typical and atypical
aging. Directly utilizing traditional morphological features for brain age estimation did not …

Brain age estimation using multi-feature-based networks

X Liu, I Beheshti, W Zheng, Y Li, S Li, Z Zhao, Z Yao… - 2022 - ir.lzu.edu.cn
摘要Studying brain aging improves our understanding in differentiating typical and atypical
aging. Directly utilizing traditional morphological features for brain age estimation did not …