DeepParcellation: A novel deep learning method for robust brain magnetic resonance imaging parcellation in older East Asians

  • Lim, Eun-Cheon
  • Choi, Uk-Su
  • Choi, Kyu Yeong
  • Lee, Jang Jae
  • Sung, Yul-Wan
  • 외 4명
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초록

Accurate parcellation of cortical regions is crucial for distinguishing morphometric changes in aged brains, particularly in degenerative brain diseases. Normal aging and neurodegeneration precipitate brain structural changes, leading to distinct tissue contrast and shape in people aged >60 years. Manual parcellation by trained radiologists can yield a highly accurate outline of the brain; however, analyzing large datasets is laborious and expensive. Alternatively, newly-developed computational models can quickly and accurately conduct brain parcellation, although thus far only for the brains of Caucasian individuals. To develop a computational model for the brain parcellation of older East Asians, we trained magnetic resonance images of dimensions 256 x 256 x 256 on 5,035 brains of older East Asians (Gwangju Alzheimer's and Related Dementia) and 2,535 brains of Caucasians. The novel N-way strategy combining three memory reduction techniques inception blocks, dilated convolutions, and attention gates was adopted for our model to overcome the intrinsic memory requirement problem. Our method proved to be compatible with the commonly used parcellation model for Caucasians and showed higher similarity and robust reliability in older aged and East Asian groups. In addition, several brain regions showing the superiority of the parcellation suggest that DeepParcellation has a great potential for applications in neurodegenerative diseases such as Alzheimer's disease.

키워드

deep learningbrain3D MRIparcellationDeepParcellation
제목
DeepParcellation: A novel deep learning method for robust brain magnetic resonance imaging parcellation in older East Asians
저자
Lim, Eun-CheonChoi, Uk-SuChoi, Kyu YeongLee, Jang JaeSung, Yul-WanOgawa, SeijiKim, Byeong ChaeLee, Kun HoGim, Jungsoo
DOI
10.3389/fnagi.2022.1027857
발행일
2022-12
유형
Article
저널명
Frontiers in Aging Neuroscience
14