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  4. Generating Anatomically Accurate Heart Structures via Neural Implicit Fields
 
conference paper not in proceedings

Generating Anatomically Accurate Heart Structures via Neural Implicit Fields

Yang, Jiancheng  
•
Sedykh, Ekaterina  
•
Adhinarta, Jason
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2024
International Conference on Medical Image Computing and Computer-Assisted Intervention

Implicit functions have significantly advanced shape modeling in diverse fields. Yet, their application within medical imaging often overlooks the intricate interrelations among various anatomical structures, a consideration crucial for accurately modeling complex multi-part structures like the heart. This study presents ImHeart, a latent variable model specifically designed to model complex heart structures. Leveraging the power of learnable templates, ImHeart adeptly captures the intricate relationships between multiple heart components using a unified deformation field and introduces an implicit registration technique to manage the pose variability in medical data. Built on WHS3D dataset of 140 refined whole-heart structures, ImHeart delivers superior reconstruction accuracy and anatomical fidelity. Moreover, we demonstrate the ImHeart can significantly improve heart segmentation from multicenter MRI scans through a retraining pipeline, adeptly navigating the domain gaps inherent to such data.

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Name

ImHeart_MICCAI24_arXiv.pdf

Type

Main Document

Version

http://purl.org/coar/version/c_71e4c1898caa6e32

Access type

openaccess

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N/A

Size

2.95 MB

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Adobe PDF

Checksum (MD5)

78c23b5a67a42edcfa2699d00227849f

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