Kristen Billiar
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Explore the profile of Kristen Billiar including associated specialties, affiliations and a list of published articles.
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15
Citations
160
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Recent Articles
1.
Hiscox C, Li J, Gao Z, Korkin D, Furlong C, Billiar K
ACS Biomater Sci Eng
. 2025 Jan;
11(2):1051-1059.
PMID: 39813060
Mechanical properties of engineered connective tissues are critical for their success, yet modern sensors that measure physical qualities of tissues for quality control are invasive and destructive. The goal of...
2.
Lei Y, Mungai R, Li J, Billiar K
Biofabrication
. 2023 Apr;
15(3).
PMID: 37059087
Heart valve disease is associated with high morbidity and mortality worldwide, resulting in hundreds of thousands of heart valve replacements each year. Tissue engineered heart valves (TEHVs) have the potential...
3.
Jebeli M, Lopez S, Goldblatt Z, McCollum D, Mana-Capelli S, Wen Q, et al.
Acta Biomater
. 2022 Oct;
163:117-130.
PMID: 36306982
Mechanical stress patterns emerging from collective cell behavior have been shown to play critical roles in morphogenesis, tissue repair, and cancer metastasis. In our previous work, we constrained valvular interstitial...
4.
Billiar K, Gaver 3rd D, Barbee K, Singh A, DesJardins J, Pruitt B, et al.
Biomed Eng Educ
. 2022 May;
2(1):1-16.
PMID: 35599985
This paper provides a synopsis of discussions related to the Learning Environments track of the Fourth BME Education Summit held at Case Western Reserve University in Cleveland, Ohio in May...
5.
Lei Y, Bortolin L, Benesch-Lee F, Oguntolu T, Dong Z, Bondah N, et al.
Acta Biomater
. 2021 Sep;
136:124-136.
PMID: 34592445
Heart valve disease is associated with high morbidity and mortality worldwide resulting in hundreds of thousands of heart valve replacements each year. Tissue engineered heart valves (TEHVs) have the potential...
6.
7.
Cirka H, Monterosso M, Diamantides N, Favreau J, Wen Q, Billiar K
Biophys J
. 2016 Apr;
110(8):1845-1857.
PMID: 27119644
Mechanical stimulation is recognized as a potent modulator of cellular behaviors such as proliferation, differentiation, and extracellular matrix assembly. However, the study of how cell-generated traction force changes in response...
8.
Wang L, Wu Z, Yang C, Zheng J, Bach R, Muccigrosso D, et al.
Ann Biomed Eng
. 2014 Sep;
43(1):107-21.
PMID: 25245219
Atherosclerotic plaque progression is believed to be associated with mechanical stress conditions. Patient follow-up in vivo intravascular ultrasound coronary plaque data were acquired to construct fluid-structure interaction (FSI) models with...
9.
Fan R, Tang D, Yang C, Zheng J, Bach R, Wang L, et al.
Biomed Eng Online
. 2014 Mar;
13(1):32.
PMID: 24669780
Background: Atherosclerotic plaque progression and rupture are believed to be associated with mechanical stress conditions. In this paper, patient-specific in vivo intravascular ultrasound (IVUS) coronary plaque image data were used...
10.
Liu H, Canton G, Yuan C, Yang C, Billiar K, Teng Z, et al.
J Biomech Eng
. 2012 Apr;
134(1):011008.
PMID: 22482663
In vivo magnetic resonance image (MRI)-based computational models have been introduced to calculate atherosclerotic plaque stress and strain conditions for possible rupture predictions. However, patient-specific vessel material properties are lacking...