English

Towards ultra-high resolution 3D reconstruction of a whole rat brain from 3D-PLI data

Computer Vision and Pattern Recognition 2018-07-31 v1

Abstract

3D reconstruction of the fiber connectivity of the rat brain at microscopic scale enables gaining detailed insight about the complex structural organization of the brain. We introduce a new method for registration and 3D reconstruction of high- and ultra-high resolution (64 μ\mum and 1.3 μ\mum pixel size) histological images of a Wistar rat brain acquired by 3D polarized light imaging (3D-PLI). Our method exploits multi-scale and multi-modal 3D-PLI data up to cellular resolution. We propose a new feature transform-based similarity measure and a weighted regularization scheme for accurate and robust non-rigid registration. To transform the 1.3 μ\mum ultra-high resolution data to the reference blockface images a feature-based registration method followed by a non-rigid registration is proposed. Our approach has been successfully applied to 278 histological sections of a rat brain and the performance has been quantitatively evaluated using manually placed landmarks by an expert.

Keywords

Cite

@article{arxiv.1807.11080,
  title  = {Towards ultra-high resolution 3D reconstruction of a whole rat brain from 3D-PLI data},
  author = {Sharib Ali and Martin Schober and Philipp Schlöme and Katrin Amunts and Markus Axer and Karl Rohr},
  journal= {arXiv preprint arXiv:1807.11080},
  year   = {2018}
}

Comments

9 pages, Accepted at 2nd International Workshop on Connectomics in NeuroImaging (CNI), MICCAI'2018