Biomedical Engineering Reference
In-Depth Information
Rice, W. L., D. L. Kaplan, and I. Georgakoudi 2010. Two-photon microscopy for non-invasive, quantitative
monitoring of stem cell differentiation. Plos One 5:e10075-1-e10075-13.
Ross, P., R. Mayer, and M. Benziman 1991. Cellulose biosynthesis and function in bacteria. Microbiological
Reviews 55:35-58.
Schenke-Layland, K. 2008. Non-invasive multiphoton imaging of extracellular matrix structures. Journal
of Biophotonics 1:451-62.
Schoen, F. J. 2004. Tissue engineering. In Biomaterials Science , eds. B. D. Ratner, A. S. Hoffman, F. J.
Schoen and J. E. Lemons. San Diego: Elsevier Academic Press.
Sengupta, D. and S. C. Heilshorn 2010. Protein-engineered biomaterials: Highly tunable tissue engineer-
ing scaffolds. Tissue Engineering Part B-Reviews 16:285-93.
Shao, Z. F., J. Mou, D. M. Czajkowsky, J. Yang, and J. Y. Yuan 1996. Biological atomic force microscopy:
What is achieved and what is needed. Advances in Physics 45:1-86.
Stoller, P., B. M. Kim, A. M. Rubenchik, K. M. Reiser, and L. B. Da Silva 2002. Polarization-dependent
optical second-harmonic imaging of a rat-tail tendon. Journal of Biomedical Optics 7:205-14.
Svedberg, F., C. Brackmann, T. Hellerer, and A. Enejder 2010. Nonlinear microscopy with fiber laser con-
tinuum excitation. Journal of Biomedical Optics 15:026026-1-026026-4.
Tang, S., J. Liu, T. B. Krasieva, Z. P. Chen, and B. J. Tromberg 2009. Developing compact multiphoton sys-
tems using femtosecond fiber lasers. Journal of Biomedical Optics 14:030508-1-030508-3.
Werkmeister, E., N. de Isla, P. Netter, J. F. Stoltz, and D. Dumas 2010. Collagenous extracellular matrix
of cartilage submitted to mechanical forces studied by second harmonic generation microscopy.
Photochemistry and Photobiology 86:302-10.
Weska, R. F., G. M. Nogueira, W. C. Vieira, and M. M. Beppu 2009. Porous silk fibroin membrane as
a potential scaffold for bone regeneration. Key Engineering Material Volume 396-398 Bioceramics
21:187-90.
Williams, R. M., W. R. Zipfel, and W. W. Webb 2005. Interpreting second-harmonic generation images of
collagen I fibrils. Biophysical Journal 88:1377-86.
Wolf, K., S. Alexander, V. Schacht et al. 2009. Collagen-based cell migration models in vitro and in vivo .
Seminars in Cell & Developmental Biology 20:931-41.
Yang, Y., F. Ding, H. Wu et al. 2007. Development and evaluation of silk fibroin-based nerve grafts used
for peripheral nerve regeneration. Biomaterials 28:5526-35.
Yeh, A. T., B. S. Kao, W. G. Jung et al. 2004. Imaging wound healing using optical coherence tomogra-
phy and multiphoton microscopy in an in vitro skin-equivalent tissue model. Journal of Biomedical
Optics 9:248-53.
Yu, C. H., S. P. Tai, C. T. Kung et al. 2007. In vivo and ex vivo imaging of intra-tissue elastic fibers using
third-harmonic-generation microscopy. Optics Express 15:11167-77.
Zaborowska, M., A. Bodin, H. Backdahl et al. 2010. Microporous bacterial cellulose as a potential scaffold
for bone regeneration. Acta Biomaterialia 6:2540-47.
Zeugolis, D. I., S. T. Khew, E. S. Y. Yew et al. 2008. Electro-spinning of pure collagen nano-fibres—Just an
expensive way to make gelatin? Biomaterials 29:2293-305.
Zhou, J. A., C. B. Cao, X. L. Ma, and J. Lin 2010. Electrospinning of silk fibroin and collagen for vascular
tissue engineering. International Journal of Biological Macromolecules 47:514-19.
Zipfel, W. R., R. M. Williams, and W. W. Webb 2003. Nonlinear magic: Multiphoton microscopy in the
biosciences. Nature Biotechnology 21:1369-77.
Search WWH ::




Custom Search