TractSeg - Fast and accurate white matter tract segmentation

05/18/2018
by   Jakob Wasserthal, et al.
0

The individual course of white matter fiber tracts is an important key for analysis of white matter characteristics in healthy and diseased brains. Uniquely, diffusion-weighted MRI tractography in combination with region-based or clustering-based selection of streamlines allows for the in-vivo delineation and analysis of anatomically well known tracts. This, however, currently requires complex, computationally intensive and tedious-to-set-up processing pipelines. TractSeg is a novel convolutional neural network-based approach that directly segments tracts in the field of fiber orientation distribution function (fODF) peaks without requiring tractography, image registration or parcellation. We demonstrate in 105 subjects from the Human Connectome Project that the proposed approach is much faster than existing methods while providing unprecedented accuracy. The code and data are openly available at https://github.com/MIC-DKFZ/TractSeg/ and https://doi.org/10.5281/zenodo.1088277, respectively.

READ FULL TEXT

page 6

page 7

page 14

page 15

page 16

page 17

page 21

research
08/09/2017

Isointense infant brain MRI segmentation with a dilated convolutional neural network

Quantitative analysis of brain MRI at the age of 6 months is difficult b...
research
03/06/2017

Direct White Matter Bundle Segmentation using Stacked U-Nets

The state-of-the-art method for automatically segmenting white matter bu...
research
06/14/2018

Tract orientation mapping for bundle-specific tractography

While the major white matter tracts are of great interest to numerous st...
research
01/29/2019

Combined tract segmentation and orientation mapping for bundle-specific tractography

While the major white matter tracts are of great interest to numerous st...
research
04/06/2019

Mitigating Gyral Bias in Cortical Tractography via Asymmetric Fiber Orientation Distributions

Diffusion tractography in brain connectomics often involves tracing axon...
research
08/21/2023

BundleSeg: A versatile, reliable and reproducible approach to white matter bundle segmentation

This work presents BundleSeg, a reliable, reproducible, and fast method ...
research
05/30/2023

atTRACTive: Semi-automatic white matter tract segmentation using active learning

Accurately identifying white matter tracts in medical images is essentia...

Please sign up or login with your details

Forgot password? Click here to reset