Publisher
Springer International Publishing
Reference17 articles.
1. Sen, B., Xie, Z., Case, N., Styner, M., Rubin, C.T., Rubin, J.: Mechanical signal influence on mesenchymal stem cell fate is enhanced by incorporation of refractory periods into the loading regimen. J. Biomech. 44(4), 593–599 (2011)
2. Tirkkonen, L., Halonen, H., Hyttinen, J., Kuokkanen, H., Sievänen, H., Koivisto, A.M., Mannerström, B., Sándor, G.K., Suuronen, R., Miettinen, S., Haimi, S.: The effects of vibration loading on adipose stem cell number, viability and differentiation towards bone-forming cells. J. R. Soc. Interface 8(65), 1736–1747 (2011)
3. Zhang, C., Li, J., Zhang, L., Zhou, Y., Hou, W., Quan, H., Li, X., Chen, Y., Yu, H.: Effects of mechanical vibration on proliferation and osteogenic differentiation of human periodontal ligament stem cells. Arch. Oral. Biol. 57(10), 1395–1407 (2012)
4. Uzer, G., Pongkitwitoon, S., Ete Chan, M., Judex, S.: Vibration induced osteogenic commitment of mesenchymal stem cells is enhanced by cytoskeletal remodeling but not fluid shear. J. Biomech. 46(13), 2296–2302 (2013)
5. Chen, X., He, F., Zhong, D.Y., Luo, Z.P.: Acoustic-frequency vibratory stimulation regulates the balance between osteogenesis and adipogenesis of human bone marrow-derived mesenchymal stem cells. Biomed. Res. Int. 2015, 540731 (2015)
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