Literature DB >> 21985910

Construction of a consistent high-definition spatio-temporal atlas of the developing brain using adaptive kernel regression.

Ahmed Serag1, Paul Aljabar, Gareth Ball, Serena J Counsell, James P Boardman, Mary A Rutherford, A David Edwards, Joseph V Hajnal, Daniel Rueckert.   

Abstract

Medical imaging has shown that, during early development, the brain undergoes more changes in size, shape and appearance than at any other time in life. A better understanding of brain development requires a spatio-temporal atlas that characterizes the dynamic changes during this period. In this paper we present an approach for constructing a 4D atlas of the developing brain, between 28 and 44 weeks post-menstrual age at time of scan, using T1 and T2 weighted MR images from 204 premature neonates. The method used for the creation of the average 4D atlas utilizes non-rigid registration between all pairs of images to eliminate bias in the atlas toward any of the original images. In addition, kernel regression is used to produce age-dependent anatomical templates. A novelty in our approach is the use of a time-varying kernel width, to overcome the variations in the distribution of subjects at different ages. This leads to an atlas that retains a consistent level of detail at every time-point. Comparisons between the resulting atlas and atlases constructed using affine and non-rigid registration are presented. The resulting 4D atlas has greater anatomic definition than currently available 4D atlases created using various affine and non-rigid registration approaches, an important factor in improving registrations between the atlas and individual subjects. Also, the resulting 4D atlas can serve as a good representative of the population of interest as it reflects both global and local changes. The atlas is publicly available at www.brain-development.org.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21985910     DOI: 10.1016/j.neuroimage.2011.09.062

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  121 in total

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2.  Probabilistic maps of the white matter tracts with known associated functions on the neonatal brain atlas: Application to evaluate longitudinal developmental trajectories in term-born and preterm-born infants.

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3.  BIRNet: Brain image registration using dual-supervised fully convolutional networks.

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Journal:  Med Image Anal       Date:  2019-03-22       Impact factor: 8.545

Review 4.  Quantitative MRI for studying neonatal brain development.

Authors:  John G Sled; Revital Nossin-Manor
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5.  A Spatio-Temporal Atlas and Statistical Model of the Tongue During Speech from Cine-MRI.

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6.  Early-Emerging Sulcal Patterns Are Atypical in Fetuses with Congenital Heart Disease.

Authors:  Cynthia M Ortinau; Caitlin K Rollins; Ali Gholipour; Hyuk Jin Yun; Mackenzie Marshall; Borjan Gagoski; Onur Afacan; Kevin Friedman; Wayne Tworetzky; Simon K Warfield; Jane W Newburger; Terrie E Inder; P Ellen Grant; Kiho Im
Journal:  Cereb Cortex       Date:  2019-07-22       Impact factor: 5.357

7.  Temporal slice registration and robust diffusion-tensor reconstruction for improved fetal brain structural connectivity analysis.

Authors:  Bahram Marami; Seyed Sadegh Mohseni Salehi; Onur Afacan; Benoit Scherrer; Caitlin K Rollins; Edward Yang; Judy A Estroff; Simon K Warfield; Ali Gholipour
Journal:  Neuroimage       Date:  2017-04-19       Impact factor: 6.556

8.  Construction of a deformable spatiotemporal MRI atlas of the fetal brain: evaluation of similarity metrics and deformation models.

Authors:  Ali Gholipour; Catherine Limperopoulos; Sean Clancy; Cedric Clouchoux; Alireza Akhondi-Asl; Judy A Estroff; Simon K Warfield
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9.  Brain microstructural development at near-term age in very-low-birth-weight preterm infants: an atlas-based diffusion imaging study.

Authors:  Jessica Rose; Rachel Vassar; Katelyn Cahill-Rowley; Ximena Stecher Guzman; David K Stevenson; Naama Barnea-Goraly
Journal:  Neuroimage       Date:  2013-10-01       Impact factor: 6.556

10.  Cross-hemispheric functional connectivity in the human fetal brain.

Authors:  Moriah E Thomason; Maya T Dassanayake; Stephen Shen; Yashwanth Katkuri; Mitchell Alexis; Amy L Anderson; Lami Yeo; Swati Mody; Edgar Hernandez-Andrade; Sonia S Hassan; Colin Studholme; Jeong-Won Jeong; Roberto Romero
Journal:  Sci Transl Med       Date:  2013-02-20       Impact factor: 17.956

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