Capturing physiological hemodynamic flow and mechanosensitive cell signaling in vessel-on-a-chip platforms.

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Bibliographic Details
Title: Capturing physiological hemodynamic flow and mechanosensitive cell signaling in vessel-on-a-chip platforms.
Authors: Martier A; Department of Biomedical Engineering, School of Science and Engineering, Tulane University, New Orleans, LA, United States., Chen Z; Department of Cell and Molecular Biology, School of Science and Engineering, Tulane University, New Orleans, LA, United States., Schaps H; Department of Cell and Molecular Biology, School of Science and Engineering, Tulane University, New Orleans, LA, United States., Mondrinos MJ; Department of Biomedical Engineering, School of Science and Engineering, Tulane University, New Orleans, LA, United States.; Department of Physiology, School of Medicine, Tulane University, New Orleans, LA, United States., Fang JS; Department of Cell and Molecular Biology, School of Science and Engineering, Tulane University, New Orleans, LA, United States.; Department of Physiology, School of Medicine, Tulane University, New Orleans, LA, United States.
Source: Frontiers in physiology [Front Physiol] 2024 Jul 29; Vol. 15, pp. 1425618. Date of Electronic Publication: 2024 Jul 29 (Print Publication: 2024).
Publication Type: Journal Article; Review
Journal Info: Publisher: Frontiers Research Foundation Country of Publication: Switzerland NLM ID: 101549006 Publication Model: eCollection Cited Medium: Print ISSN: 1664-042X (Print) Linking ISSN: 1664042X NLM ISO Abbreviation: Front Physiol Subsets: PubMed not MEDLINE
Database: MEDLINE Ultimate
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