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Natalie M. Zahr
ORCID
Publication Activity (10 Years)
Years Active: 2007-2022
Publications (10 Years): 5
Top Topics
Deep Learning
Human Brain
Segmentation Scheme
Thalamic Nuclei
Top Venues
CoRR
NeuroImage
Neuroinformatics
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Publications
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Lavanya Umapathy
,
Mahesh Bharath Keerthivasan
,
Natalie M. Zahr
,
Ali Bilgin
,
Manojkumar Saranathan
Convolutional Neural Network Based Frameworks for Fast Automatic Segmentation of Thalamic Nuclei from Native and Synthesized Contrast Structural MRI.
Neuroinformatics
20 (3) (2022)
Ehsan Adeli
,
Qingyu Zhao
,
Natalie M. Zahr
,
Aimee Goldstone
,
Adolf Pfefferbaum
,
Edith V. Sullivan
,
Kilian M. Pohl
Deep learning identifies morphological determinants of sex differences in the pre-adolescent brain.
NeuroImage
223 (2020)
Lavanya Umapathy
,
Mahesh Bharath Keerthivasan
,
Natalie M. Zahr
,
Ali Bilgin
,
Manojkumar Saranathan
A Contrast Synthesized Thalamic Nuclei Segmentation Scheme using Convolutional Neural Networks.
CoRR
(2020)
Mohammed S. Majdi
,
Mahesh Bharath Keerthivasan
,
Brian K. Rutt
,
Natalie M. Zahr
,
Jeffrey J. RodrÃguez
,
Manojkumar Saranathan
Robust Automated Thalamic Nuclei Segmentation using a Multi-planar Cascaded Convolutional Neural Network.
CoRR
(2019)
Ehsan Adeli
,
Dongjin Kwon
,
Qingyu Zhao
,
Adolf Pfefferbaum
,
Natalie M. Zahr
,
Edith V. Sullivan
,
Kilian M. Pohl
Chained regularization for identifying brain patterns specific to HIV infection.
NeuroImage
183 (2018)
Natalie M. Zahr
,
Torsten Rohlfing
,
Adolf Pfefferbaum
,
Edith V. Sullivan
Problem solving, working memory, and motor correlates of association and commissural fiber bundles in normal aging: A quantitative fiber tracking study.
NeuroImage
44 (3) (2009)
Torsten Rohlfing
,
Natalie M. Zahr
,
Edith V. Sullivan
,
Adolf Pfefferbaum
The SRI24 multichannel brain atlas: construction and applications.
Medical Imaging: Image Processing
(2008)
Dirk Mayer
,
Natalie M. Zahr
,
Elfar Adalsteinsson
,
Brian K. Rutt
,
Edith V. Sullivan
,
Adolf Pfefferbaum
In vivo fiber tracking in the rat brain on a clinical 3T MRI system using a high strength insert gradient coil.
NeuroImage
35 (3) (2007)