Biomedical Engineering Reference
In-Depth Information
Constantz, B. R., Ison, I. C., Fulmer, M. T., et al. 1995. Skeletal repair by in situ forma-
tion of the mineral phase of bone. Science 267:1796-9.
Detsch, R., Uhl, F., Deisinger, U., and Ziegler, G. 2008. 3D-Cultivation of bone marrow
stromal cells on hydroxyapatite scaffolds fabricated by dispense-plotting and
negative mould technique. J Mater Sci: Mater Med 19:1491-6.
Dorozhkin, S.V. 2010. Bioceramics of calcium orthophosphates. Biomaterials
31:1465-85.
Erisken, C., Kalyon, D., Wang, H., Örnek-Balance, C., and Xu, J. 2011. Osteochondral
tissue formation through adipose-derived stromal cell differentiation on bio-
mimetic polycaprolactone nanofibrous scaffolds with graded insulin and beta-
glycerophosphate concentrations. Tissue Eng A 17:1239-52.
Espanol, M., Perez, R. A., Montufar, E. B., Marichal, C., Sacco, A., and Ginebra, M. P.
2009. Intrinsic porosity of calcium phosphate cements and its significance for
drug delivery and tissue engineering applications. Acta Biomater 5:2752-62.
Fedorovich, N. E., De Wijn, J. R., Verbout, A. J., Alblas, J., and Dhert, W. J. A. 2008.
Three-dimensional fiber deposition of cell-laden, viable, patterned constructs
for bone tissue printing. Tissue Eng Part A 14:127-33.
Fernandez, E., Ginebra, M. P., Bermodez, O., Boltong, M. G., Driessens, F. C. M., and
Planell, J. A. 1995. Dimensional and thermal behaviour of calcium phosphate
cements during setting compared to PMMA bone cements. J Mater Sci Lett
14:4-5.
Franco, J., Hunger, P., Launey, M. E., Tomsia, A. P., and Saiz, E. 2010. Direct write
assembly of calcium phosphate scaffolds using a water-based hydrogel. Acta
Biomater 6:218-28.
Gelinsky, M. 2009. Mineralised collagen as biomaterial and matrix for bone tissue
engineering. In U. Meyer, T. Meyer, J. Handschel, and H. P. Wiesmann (eds.),
Fundamentals of Tissue Engineering and Regenerative Medicine , 485-493. Springer,
Heidelberg and Berlin.
Gelinsky, M., and Heinemann, S. 2010. Nanocomposites for tissue engineering. In C.
Kumar (ed.), Nanocomposites for Life Sciences , Chapter 11, 405-34. Wiley-VCH,
Weinheim.
Gelinsky, M., Lode, A., Bernhardt, A., and Rösen-Wolff, A. 2011. Stem cell engineering
for regeneration of bone tissue. In G. M. Artmann, J. Hescheler, and S. Minger
(eds.), Stem Cell Engineering , Part 3, 383-99. Springer, Heidelberg and Berlin.
Guo, H., Su, J., Wei, J., Kong, H., and Liu, C. 2009. Biocompatibility and osteogenicity
of degradable Ca-deficient hydroxyapatite scaffolds from calcium phosphate
cement for bone tissue engineering. Acta Biomater 5:268-78.
Hutmacher, D. W., Schantz, T., Zein, I., Ng, K. W., Teoh, S. H., and Tan, K. C. 2001.
Mechanical properties and cell cultural response of polycaprolactone scaffolds
designed and fabricated via fused deposition modeling. J Biomed Mater Res
55:203-16.
Hutmacher, D. W., Sittinger, M., and Risbud, M. V. 2004. Scaffold-based tissue engi-
neering: Rationale for computer-aided design and solid free-form fabrication
systems. Trends Biotechnol 22:354-62.
Jansen, J. A., de Ruijter, J. E., Schaeken, H. G., van der Waerden, J. P. C. M., Planell, J.
A., and Driessens, F. C. M. 1995. Evaluation of tricalcium-phosphate/hydroxy-
apatite cement for tooth replacement: An experimental animal study. J Mater Sci
Mater Med 6:653-7.
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