Literature DB >> 24954280

A 4D neonatal head model for diffuse optical imaging of pre-term to term infants.

Sabrina Brigadoi1, Paul Aljabar2, Maria Kuklisova-Murgasova2, Simon R Arridge3, Robert J Cooper4.   

Abstract

Diffuse optical tomography is most accurate when an individual's MRI data can be used as a spatial prior for image reconstruction and for visualization of the resulting images of changes in oxy- and deoxy-hemoglobin concentration. As this necessitates an MRI scan to be performed for each study, which undermines many of the advantages of diffuse optical methods, the use of registered atlases to model the individual's anatomy is becoming commonplace. Infant studies require carefully age-matched atlases because of the rapid growth and maturation of the infant brain. In this paper, we present a 4D neonatal head model which, for each week from 29 to 44 weeks post-menstrual age, includes: 1) a multi-layered tissue mask which identifies extra-cerebral layers, cerebrospinal fluid, gray matter, white matter, cerebellum and brainstem, 2) a high-density tetrahedral head mesh, 3) surface meshes for the scalp, gray-matter and white matter layers and 4) cranial landmarks and 10-5 locations on the scalp surface. This package, freely available online at www.ucl.ac.uk/medphys/research/4dneonatalmodel can be applied by users of near-infrared spectroscopy and diffuse optical tomography to optimize probe locations, optimize image reconstruction, register data to cortical locations and ultimately improve the accuracy and interpretation of diffuse optical techniques in newborn populations.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Diffuse optical imaging; Diffuse optical tomography; Mesh; NIRS; Neonatal head models; Preterm infants

Mesh:

Year:  2014        PMID: 24954280     DOI: 10.1016/j.neuroimage.2014.06.028

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


  28 in total

1.  How short is short? Optimum source-detector distance for short-separation channels in functional near-infrared spectroscopy.

Authors:  Sabrina Brigadoi; Robert J Cooper
Journal:  Neurophotonics       Date:  2015-05-26       Impact factor: 3.593

2.  Anatomical guidance for functional near-infrared spectroscopy: AtlasViewer tutorial.

Authors:  Christopher M Aasted; Meryem A Yücel; Robert J Cooper; Jay Dubb; Daisuke Tsuzuki; Lino Becerra; Mike P Petkov; David Borsook; Ippeita Dan; David A Boas
Journal:  Neurophotonics       Date:  2015-05-05       Impact factor: 3.593

3.  Functional Imaging of the Developing Brain at the Bedside Using Diffuse Optical Tomography.

Authors:  Silvina L Ferradal; Steve M Liao; Adam T Eggebrecht; Joshua S Shimony; Terrie E Inder; Joseph P Culver; Christopher D Smyser
Journal:  Cereb Cortex       Date:  2015-01-16       Impact factor: 5.357

4.  Geometrically complex 3D-printed phantoms for diffuse optical imaging.

Authors:  Laura A Dempsey; Melissa Persad; Samuel Powell; Danial Chitnis; Jeremy C Hebden
Journal:  Biomed Opt Express       Date:  2017-02-23       Impact factor: 3.732

5.  Near-infrared spectroscopy reveals neural perception of vocal emotions in human neonates.

Authors:  Dandan Zhang; Yu Chen; Xinlin Hou; Yan Jing Wu
Journal:  Hum Brain Mapp       Date:  2019-01-30       Impact factor: 5.038

6.  Investigating the effects of cerebrospinal fluid removal on cerebral blood flow and oxidative metabolism in infants with post-hemorrhagic ventricular dilatation.

Authors:  Peter J McLachlan; Jessica Kishimoto; Mamadou Diop; Daniel Milej; David S C Lee; Sandrine de Ribaupierre; Keith St Lawrence
Journal:  Pediatr Res       Date:  2017-06-14       Impact factor: 3.756

Review 7.  Diffuse optical tomography to investigate the newborn brain.

Authors:  Chuen Wai Lee; Robert J Cooper; Topun Austin
Journal:  Pediatr Res       Date:  2017-05-31       Impact factor: 3.756

8.  Hemodynamic response to burst-suppressed and discontinuous electroencephalography activity in infants with hypoxic ischemic encephalopathy.

Authors:  Maria Chalia; Chuen Wai Lee; Laura A Dempsey; Andrea D Edwards; Harsimrat Singh; Andrew W Michell; Nicholas L Everdell; Reuben W Hill; Jeremy C Hebden; Topun Austin; Robert J Cooper
Journal:  Neurophotonics       Date:  2016-05-02       Impact factor: 3.593

9.  Functional Near Infrared Spectroscopy: Enabling Routine Functional Brain Imaging.

Authors:  Meryem A Yücel; Juliette J Selb; Theodore J Huppert; Maria Angela Franceschini; David A Boas
Journal:  Curr Opin Biomed Eng       Date:  2017-10-06

10.  Correlating functional near-infrared spectroscopy with underlying cortical regions of 0-, 1-, and 2-year-olds using theoretical light propagation analysis.

Authors:  Lin Cai; Eiji Okada; Yasuyo Minagawa; Hiroshi Kawaguchi
Journal:  Neurophotonics       Date:  2021-05-31       Impact factor: 3.593

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