Biomedical Engineering Reference
In-Depth Information
Uitto, J., Mauviel, A., & McGrath, J. (1996). The dermal-epidermal basement membrane zone in
cutaneous wound healing. In R. A. F. Clark (Ed.), The molecular and cellular biology of wound
repair . New York: Plenum.
Ushiki, T., & Ide, C. (1986). Three-dimensional architecture of the endoneurium with special ref-
erence to the collagen fibril arrangement in relation to nerve fibers. Archivum Histologicum
Japonicum, 49, 553-563.
Utley, D. S., Lewin, S. L., Cheng, E. T., Verity, A. N., Sierra, D., & Terris, D. J. (1996). Brainder-
ived neurotrophic factor and collagen tubulization enhance functional recovery after peripheral
nerve transection and repair. Archives of Otolaryngology-Head & Neck Surgery, 122, 407-413.
Uzman, B. G., & Villegas, G. M. (1983). Mouse sciatic nerve regeneration through semipermeable
tubes: A quantitative model. Journal of Neuroscience Research, 9, 325-338.
Valenick, L. V., & Schwarzbauer, J. E. (2006). Ligand density and integrin repertoire regulate cel-
lular response to LPA. Matrix biology: Journal of the International Society for. Matrix Biology,
25, 223-231.
Valentin, J. E., Badylak, J. S., McCabe, G. P., & Badylak, S. F. (2006). Extracellular Matrix
Bioscaffolds for Orthopaedic Applications: A Comparative Histologic Study. The Journal of
Bone & Joint Surgery, 88, 2673-2686.
Valentini, R. F. (1995). Nerve guidance channels. In J. D. Bronzino (Ed.), The biomedical engi-
neering handbook . Boca Raton: CRC Press.
Valentini, R. F., Aebischer, P., Winn, S. R., & Galletti, P. M. (1987). Collagen- and laminin-con-
taining gels impede peripheral nerve regeneration through semipermeable nerve guidance
channels. Experimental Neurology, 98, 350-356.
van Beurden, H. E., Von den Hoff, J. W., Torensma, R., Maltha, J. C., & Kuijpers-Jagtman, A. M.
(2005). Myofibroblasts in palatal wound healing: Prospects for the reduction of wound con-
traction after cleft palate repair. Journal of Dental Research, 84, 871-880.
Van De Water, L., Varney, S., & Tomasek, J. J. (2013). Mechanoregulation of the myofibroblast
in wound contraction, scarring, and fibrosis: Opportunities for new therapeutic intervention.
Advances in Wound Care, 2, 122-141.
Van der Rest, M., & Garrone, R. (1991). Collagen family of proteins. FASEB Journal, 5, 2814-
2823.
van Kilsdonk, J. W., van den Bogaard, E. H., Jansen, P. A., Bos, C., Bergers, M., & Schalkwijk, J.
(2013). An in vitro wound healing model for evaluation of dermal substitutes. Wound Repair
and Regeneration, 21, 890-896
van Zuijlen, P. P., Vloemans, J. F., van Trier, A. J., Suijker, M. H., van Unen, E., Groenevelt, F.,
Kreis, R. W., & Middelkoop, E. (2001). Dermal substitution in acute burns and reconstructive
surgery: A subjective and objective long-term follow-up. Plastic and Reconstructive Surgery,
108, 1938-1946.
Vaughan, M. B., Howard, E. W., & Tomasek, J. J. (2000). Transforming growth factor beta1 pro-
motes the morphological and functional differentiation of the myofibroblast. Experimental
Cell Research, 25, 180-189.
Verhaegen, P. D., Schouten, H. J., Tigchelaar-Gutter, W., van Marle, J., van Noorden, C. J., Mid-
delkoop, E., & van Zuijlen, P. P. (2012). Adaptation of the dermal collagen structure of hu-
man skin and scar tissue in response to stretch: An experimental study. Wound Repair and
Regeneration, 20, 658-666.
Vert, M., & Li, S. M. (1992). Bioresorbability and biocompatibility of aliphatic polyesters. Journal
of Materials Science: Materials in Medicine, 3, 432-446.
Vert, M., Christel, P., Chabot, F., & Leray, J. (1984). Bioresorbable plastic materials for bone
surgery. In G. W. Hastings & P. Ducheyne (Eds.), Macromolecular biomaterials . Boca Raton:
CRC Press.
Volkman, R. (1893). Über die Regeneration des quergestreiften Muskelgewebes beim Menschen
und Säugethier. Beitrage Pathologische. Anatomie und Allgemeine Pathologie 12, 233.
Vonderheide, R. H., & Bayne, L. J. (2013). Inflammatory networks and immune surveillance of
pancreatic carcinoma. Current Opinion in Immunology, 25, 200-205.
Search WWH ::




Custom Search