William Wang
Affiliations: | Biomedical Engineering | University of Michigan, Ann Arbor, Ann Arbor, MI |
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Publications
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Jewett ME, Hiraki HL, Wojasiński M, et al. (2023) Rapid magnetically directed assembly of pre-patterned capillary-scale microvessels. Advanced Functional Materials. 33 |
Davidson CD, Midekssa FS, DePalma SJ, et al. (2023) Mechanical Intercellular Communication via Matrix-Borne Cell Force Transmission During Vascular Network Formation. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2306210 |
Hiraki HL, Matera DL, Wang WY, et al. (2022) Fiber density and matrix stiffness modulate distinct cell migration modes in a 3D stroma mimetic composite hydrogel. Acta Biomaterialia |
Wang WY, Kent RN, Huang SA, et al. (2021) Direct comparison of angiogenesis in natural and synthetic biomaterials reveals that matrix porosity regulates endothelial cell invasion speed and sprout diameter. Acta Biomaterialia |
Wang WY, Jarman EH, Lin D, et al. (2021) Dynamic Endothelial Stalk Cell-Matrix Interactions Regulate Angiogenic Sprout Diameter. Frontiers in Bioengineering and Biotechnology. 9: 620128 |
Margolis EA, Cleveland DS, Kong YP, et al. (2021) Stromal cell identity modulates vascular morphogenesis in a microvasculature-on-a-chip platform. Lab On a Chip |
Aliabouzar M, Kripfgans OD, Wang WY, et al. (2020) Stable and transient bubble formation in acoustically-responsive scaffolds by acoustic droplet vaporization: theory and application in sequential release. Ultrasonics Sonochemistry. 72: 105430 |
Li X, Zhang W, Wang WY, et al. (2020) Optical coherence tomography and fluorescence microscopy dual-modality imaging for in vivo single-cell tracking with nanowire lasers. Biomedical Optics Express. 11: 3659-3672 |
Davidson C, Jayco D, Wang W, et al. (2020) Fiber Crimp Confers Matrix Mechanical Nonlinearity, Regulates Endothelial Cell Mechanosensing, and Promotes Microvascular Network Formation. Journal of Biomechanical Engineering |
Aliabouzar M, Davidson CD, Wang WY, et al. (2020) Spatiotemporal control of micromechanics and microstructure in acoustically-responsive scaffolds using acoustic droplet vaporization. Soft Matter |