Biomedical Engineering Reference
In-Depth Information
David, G., Schueren, B. Vd, & Bernfield, M. (1981). Basal lamina formation by normal and trans-
formed mouse mammary epithelial cells duplicated in vitro. Journal of the National Cancer
Institute, 67, 719-728.
Davidson, J. M., Klagsbrun, M., Hill, K. E., Buckley, A., Sullivan, R., Brewer, P. S., & Wood-
ward, S. C. (1985). Accelerated wound repair, cell proliferation, and collagen accumulation are
produced by a cartilage-derived growth factor. The Journal of Cell Biology, 100, 1219-1227.
Davidson, J. M., Giro, G., & Quaglino, D. (1992). Elastin repair. In I. K. Cohen, R. F. Diegelmann,
& W. J. Lindblad (Eds.), Wound healing . Philadelphia: Saunders.
Davison, S. P., McCaffrey, T. V., Porter, M. N., & Manders, E. (1999). Improved nerve regenera-
tion with neutralization of transforming growth factor-b1. The Laryngoscope, 109, 631-635.
Dawber, R., & Shuster, S. (1971). Scanning electron microscopy of dermal fibrous tissue. The
British Journal of Dermatology, 84, 130-134.
Dawson, J. A. (1997). Personal communication with the author.
De Corte, P., Verween, G., Verbeken, G., Rose, T., Jennes, S., De Coninck, A., Roseeuw, D.,
Vanderkelen, A., Kets, E., Haddow, D., & Pirnay, J. P. (2012). Feeder layer- and animal prod-
uct-free culture of neonatal foreskin keratinocytes: Improved performance, usability, quality
and safety. Cell and Tissue Banking, 13, 175-189.
De Filippo, R. E., Yoo, J. J., & Atala, A. (2002). Urethral replacement using cell seeded tabularized
collagen matrices. The Journal of Urology, 168, 1789-1792.
Delecluse, C., Regnier, M., & Prunieras, M. (1974). Studies on guinea pig skin cell cultures II: Ef-
fect of a pif skin extract on DNA synthesis. Acta Dermato-Venereologica, 54, 1-6.
Dellon, A. L., & MacKinnon, S. E. (1988). Basic scientific and clinical applications of peripheral
nerve regeneration. Surgery Annual, 20, 59-100.
de Medinacelli, L., Wyatt, R. J., & Freed, W. J. (1983). Peripheral nerve reconnection: Mechani-
cal, thermal, and ionic conditions that promote the return of function. Experimental Neurology,
81, 469-487.
den Dunnen, W. F. A., Schakenraad, J. M., Zondervan, G. Z., Pennings, A. J., van der Lei, B., &
Robinson, P. H. (1993a). A new PLLA/PCL copolymer for nerve regeneration. Journal of Ma-
terials Science: Materials in Medicine , 4 , 521-525.
den Dunnen, W. F. A., van der Lei, B., Schakenraad, J. M., Blaauw, E. H., Stokroos, I., Pennings,
A. J., & Robinson, P. H. (1993b). Long-term evaluation of nerve regeneration in a biodegrad-
able nerve guide. Microsurgery, 14, 508-515.
den Dunnen, W. F. A., Stickroos, I., Blaauw, E. H., Holwerda, A., Pennings, A. J., Robinson, P. H.,
& Schakenraad, J. M. (1996). Light-microscopic and electron-microscopic evaluation of short-
term nerve regeneration using a biodegradable poly(DL-lactide-e-caprolacton) nerve guide.
Journal of Biomedical Materials Research, 31, 105-115.
Denny-Brown, D. (1946). Importance of neural fibroblasts in the regeneration of nerve. Archives
of Neurology and Psychiatry, 55, 171-215.
Deng, L. X., Deng, P., Ruan, Y., Xu, Z. C., Liu, N. K., Wen, X., Smith, G. M., & Xu, X. M.
(2013). A novel growth-promoting pathway formed by GDNF-overexpressing Schwann cells
promotes propriospinal axonal regeneration, synapse formation, and partial recovery of func-
tion after spinal cord injury. The Journal of Neuroscience, 27, 5655-5667.
Derby, A., Engleman, V. W., Frierdich, G. E., Neises, G., Rapp, S. R., & Roufa, D. G. (1993).
Nerve growth factor facilitates regeneration across nerve gaps: Morphological and behavioral
studies in rat sciatic nerve. Experimental neurology, 119, 176-191.
Desmoulière, A., & Gabbiani, G. (1996). The role of the myofibroblast in wound healing and
fibrocontractive diseases. In R. A. F. Clark (Ed.), The molecular and cellular biology of wound
repair . New York: Plenum.
Desmoulière, A., Genioz, A., Gabbiani, F., & Gabbiani, G. (1993). Transforming growth factor-b1
induces a-smooth muscle actin expression in granulation tissue, myofibroblasts and in quies-
cent and growing cultured fibroblasts. The Journal of Cell Biology, 122, 103-111.
Desmoulière, A., Redard, M., Darby, I., & Gabbiani, G. (1995). Apoptosis mediates the decrease
in cellularity during the transition between granulation tissue and scar. The American Journal
of Pathology, 146, 56-66.
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