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All Outputs (8)

INVESTIGATION OF CELL AGGREGATE SIZE AND POTENTIAL BONE GROWTH WITH BONE CELL LINE AND HUMAN MESENCHYMAL STEM CELLS (2023)
Conference Proceeding
Deegan, A., Lawlor, L., Yang, X., & Yang, Y. (2023). INVESTIGATION OF CELL AGGREGATE SIZE AND POTENTIAL BONE GROWTH WITH BONE CELL LINE AND HUMAN MESENCHYMAL STEM CELLS. . https://doi.org/10.1302/1358-992x.2023.8.041

Our previous research has demonstrated that minor adjustments to in vitro cellular aggregation parameters, i.e. alterations to aggregate size, can influence temporal and spatial mineral depositions within maturing bone cell nodules. What remains uncl... Read More about INVESTIGATION OF CELL AGGREGATE SIZE AND POTENTIAL BONE GROWTH WITH BONE CELL LINE AND HUMAN MESENCHYMAL STEM CELLS.

Online Monitoring Of Mechanical Properties Of 3D Tissue Engineered Constructs For Quality Assessment (2016)
Conference Proceeding
El Haj, A. J., Reinwald, Y., Baganinchi, P., Gamal, W., & Yang, Y. (2016). Online Monitoring Of Mechanical Properties Of 3D Tissue Engineered Constructs For Quality Assessment.

Introduction: Monitoring the maturation of engineered tissues prior to implantation into the patient is important for defining quality and manufacturing criteria. Key properties include scaffold integrity and mechanical properties. Novel non-invasive... Read More about Online Monitoring Of Mechanical Properties Of 3D Tissue Engineered Constructs For Quality Assessment.

Engineering In Vitro Differentiation Microenvironments to Study Heart Valve Calcification (2015)
Conference Proceeding
Yang, Y., Bhunia, S., Kontronias, R., Qamar, S., Srinivasan, L., Ipek, T., …Lyu, L. (2015). Engineering In Vitro Differentiation Microenvironments to Study Heart Valve Calcification.

Valvular calcification is one of the most common cardiac conditions affecting the elderly population. The reasons behind the calcification process and the cellular mechanisms involved are not well understood. Valve interstitial cells (VICs) are predo... Read More about Engineering In Vitro Differentiation Microenvironments to Study Heart Valve Calcification.

4-D Hippocampus Measurements of Neurite Growth in vitro (2014)
Conference Proceeding
Dempsey, K., Lam, K., Smith, W., Collins, D., Jones, D. M., Yang, Y., & Richardson, J. (2014). 4-D Hippocampus Measurements of Neurite Growth in vitro. . https://doi.org/10.1109/cit.2014.160

Current research in neural tissue engineering relies heavily on in vivo animal models of neurological injury. This has a number of major drawbacks. Using innovative imaging technologies and allied data analytics, this paper presents our current work... Read More about 4-D Hippocampus Measurements of Neurite Growth in vitro.