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David W. Kaczka
ORCID
Publication Activity (10 Years)
Years Active: 2011-2021
Publications (10 Years): 7
Top Topics
Simulation Study
Ct Scans
Convolutional Neural Networks
Fully Automated
Top Venues
CoRR
Medical Image Anal.
IEEE Trans. Medical Imaging
Int. J. Model. Identif. Control.
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Publications
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Xinzi He
,
Jia Guo
,
Xuzhe Zhang
,
Hanwen Bi
,
Sarah E. Gerard
,
David W. Kaczka
,
Amin Motahari
,
Eric A. Hoffman
,
Joseph M. Reinhardt
,
R. Graham Barr
,
Elsa D. Angelini
,
Andrew Laine
Recursive Refinement Network for Deformable Lung Registration between Exhale and Inhale CT Scans.
CoRR
(2021)
Bakir Hajdarevic
,
Jacob Herrmann
,
Andrea Fonseca Da Cruz
,
David W. Kaczka
System identification of proportional solenoid valve dynamics.
Int. J. Model. Identif. Control.
34 (2) (2020)
Sarah E. Gerard
,
Jacob Herrmann
,
David W. Kaczka
,
Guido Musch
,
Ana Fernandez-Bustamante
,
Joseph M. Reinhardt
Multi-resolution convolutional neural networks for fully automated segmentation of acutely injured lungs in multiple species.
Medical Image Anal.
60 (2020)
Sarah E. Gerard
,
Jacob Herrmann
,
Yi Xin
,
Kevin T. Martin
,
Emanuele Rezoagli
,
Davide Ippolito
,
Giacomo Bellani
,
Maurizio Cereda
,
Junfeng Guo
,
Eric A. Hoffman
,
David W. Kaczka
,
Joseph M. Reinhardt
CT Image Segmentation for Inflamed and Fibrotic Lungs Using a Multi-Resolution Convolutional Neural Network.
CoRR
(2020)
Sarah E. Gerard
,
Jacob Herrmann
,
David W. Kaczka
,
Joseph M. Reinhardt
Transfer Learning for Segmentation of Injured Lungs Using Coarse-to-Fine Convolutional Neural Networks.
RAMBO+BIA+TIA@MICCAI
(2018)
Reza Amini
,
Jacob Herrmann
,
David W. Kaczka
Intratidal Overdistention and Derecruitment in the Injured Lung: A Simulation Study.
IEEE Trans. Biomed. Eng.
64 (3) (2017)
Jacob Herrmann
,
Eric A. Hoffman
,
David W. Kaczka
Frequency-Selective Computed Tomography: Applications During Periodic Thoracic Motion.
IEEE Trans. Medical Imaging
36 (8) (2017)
Ashley A. Colletti
,
Reza Amini
,
David W. Kaczka
Simulating ventilation distribution in heterogenous lung injury using a binary tree data structure.
Comput. Biol. Medicine
41 (10) (2011)