subject: Biomedical Engineering
10.4231/Q0HY-AT09
Ahmed Khaled Soliman
,
Andres Torres
,
Chang Heon Lee
,
Guilherme A. Ribeiro
,
Li-fan Wu
,
Mo Rastgaar
05/16/2022
Estimating gait realtime through 2 wearable sensors and a PCA based linear regression model.
Acceleration Biomedical Engineering Machine Learning Mechanical Engineering PCA Robotics Stepwise Multiple linear Regression Wearable Device
10.4231/FB9P-5991
Jiacheng Zhang
,
Melissa Brindise
,
Michael Markl
,
Pavlos Vlachos
,
Sean Rothenberger
,
Vitaliy Rayz
09/22/2021
Data and source code to enhance the blood flow measurements and the hemodynamic analysis with 4D flow MRI in cerebral aneurysms using multi-modality data and sparse representation.
Biomedical Engineering Cerebral Aneurysm CFD Fluid Mechanics MRI PIV
10.4231/6BAR-6W02
Apekshya Chhetri
,
Ho-Ching Yang
,
Joseph V Rispoli
,
Pratik Kashyap
,
Thomas M Talavage
,
Wenbin Zhu
,
Yukai Zou
08/03/2020
Population-specific brain atlases for early-to-middle adolescent collision-sport athletes in the longitudinal database of Purdue Neurotrauma Group, including cortical and white matter parcellations, a T1-weighted template, and a DTI template.
Adolescents Atlasing Biomedical Engineering Brain Informatics Morphometrics MRI Neuroscience NIfTI Spatial Normalization Statistical Methods Trauma Workflow
10.4231/RTXE-0Q70
Apekshya Chhetri
,
Ho-Ching Yang
,
Joseph V Rispoli
,
Pratik Kashyap
,
Thomas M Talavage
,
Wenbin Zhu
,
Yukai Zou
10/28/2020
Population-specific brain atlases for early-to-middle adolescent collision-sport athletes in the longitudinal database of Purdue Neurotrauma Group, including cortical and white matter parcellations, T1-weighted templates, and a DTI template.
Adolescents Atlasing Biomedical Engineering Brain Informatics Morphometrics MRI Neuroscience NIfTI Spatial Normalization Statistical Methods Trauma Workflow
10.4231/1FQ0-P419
Craig Goergen
,
Elizabeth Niedert
,
Ender Finol
,
Jennifer Anderson
,
Renxiang Tang
,
Riley Holloway
,
Sourav Patnaik
,
Vangelina Osteguin
01/12/2021
This dataset accompanies the Journal of Clinical Medicine article by the same name (https://doi.org/10.3390/jcm10020219) and includes all data discussed therein. Please contact Craig Goergen with any questions at cgoergen@purdue.edu.
abdominal aortic aneurysms Biomedical Engineering elastin pentagalloyl glucose ultrasound
10.4231/R7CC0XX4
Joseph Wallace
,
Matthew R Allen
,
Max A Hammond
,
Thomas Siegmund
06/26/2018
This publication contains a finite element model for the analysis of bone core under consideration of bone tissue heterogeneity and tissue anisotropy.
Biomedical Engineering Bone Finite Element Analysis Mechanical Engineering
10.4231/R7VX0DS0
Matthew C Pharris
,
Tamara L. Kinzer-Ursem
07/30/2018
Code for the basic 4-state competitive binding model that builds on previous work by incorporating an additional competitor for calmodulin along with a number of downstream proteins. Also include is sample code for global sensitivity analysis...
10.4231/4668-DM62
Ho-Ching Yang
,
Joseph V Rispoli
,
Thomas M Talavage
,
Wenbin Zhu
,
Yukai Zou
01/16/2019
A population-specific brain atlas based on the T1-weighted MR scans from 215 adolescent collision-sport athletes in the longitudinal database of Purdue Neurotrauma Group.
Adolescents Atlasing Biomedical Engineering Brain Informatics Morphometrics MRI Neuroscience Spatial Normalization Spatial Warping Statistical Methods Trauma Workflow
10.4231/M5F1-QC84
Benjamin Dickerhoff
,
David Saloner
,
Melissa Brindise
,
Michael Markl
,
Pavlos Vlachos
,
Sean Rothenberger
,
Susanne Schnell
,
Vitaliy Rayz
08/23/2019
Data from a pulsatile volumetric particle velocimetry study using two patient-specific cerebral aneurysm models, processed using Shake the Box (STB). Associated in vivo MRI and CFD datasets are also provided.
Biomedical Engineering Cerebral Aneurysm CFD Experimental Tests Fluid Mechanics Matlab MRI PIV Shake the Box
10.4231/MBPK-D277
Matthew C Pharris
,
Tamara L Kinzer-Ursem
03/11/2019
This model uses a specialized rule-based syntax in MCell 3.3 to model the twelve-subunit CaMKII holoenzyme without inducing combinatorial explosion. The model allows us to explore the regulation of CaMKII activation and autophosphorylation.
Biomedical Engineering Calmodulin Computational Modeling Neuroscience Protein Signaling
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