DeepBundle: Fiber Bundle Parcellation with Graph Convolution Neural Networks

06/07/2019
by   Feihong Liu, et al.
0

Parcellation of whole-brain tractography streamlines is an important step for tract-based analysis of brain white matter microstructure. Existing fiber parcellation approaches rely on accurate registration between an atlas and the tractograms of an individual, however, due to large individual differences, accurate registration is hard to guarantee in practice. To resolve this issue, we propose a novel deep learning method, called DeepBundle, for registration-free fiber parcellation. Our method utilizes graph convolution neural networks (GCNNs) to predict the parcellation label of each fiber tract. GCNNs are capable of extracting the geometric features of each fiber tract and harnessing the resulting features for accurate fiber parcellation and ultimately avoiding the use of atlases and any registration method. We evaluate DeepBundle using data from the Human Connectome Project. Experimental results demonstrate the advantages of DeepBundle and suggest that the geometric features extracted from each fiber tract can be used to effectively parcellate the fiber tracts.

READ FULL TEXT
research
07/18/2023

TractCloud: Registration-free tractography parcellation with a novel local-global streamline point cloud representation

Diffusion MRI tractography parcellation classifies streamlines into anat...
research
12/06/2022

Supervised Tractogram Filtering using Geometric Deep Learning

A tractogram is a virtual representation of the brain white matter. It i...
research
07/23/2019

Deformable Registration Using Average Geometric Transformations for Brain MR Images

Accurate registration of medical images is vital for doctor's diagnosis ...
research
07/22/2023

A Stronger Stitching Algorithm for Fisheye Images based on Deblurring and Registration

Fisheye lens, which is suitable for panoramic imaging, has the prominent...
research
07/10/2018

Developing Brain Atlas through Deep Learning

To uncover the organizational principles governing the human brain, neur...
research
08/13/2020

Geometric Deep Learning for Post-Menstrual Age Prediction based on the Neonatal White Matter Cortical Surface

Accurate estimation of the age in neonates is essential for measuring ne...
research
08/07/2023

WarpEM: Dynamic Time Warping for Accurate Catheter Registration in EM-guided Procedures

Accurate catheter tracking is crucial during minimally invasive endovasc...

Please sign up or login with your details

Forgot password? Click here to reset