Biomedical Engineering Reference
In-Depth Information
Acknowledgments
We would like to thank Michel Schweinsberg for his contribution in artwork.
References
[1] Sherwood, C.C., et al., "Evolution of increased glia-neuron ratios in the human frontal
cortex," Proc Natl Acad Sci U S A , Vol. 103, No. 37, 2006, pp. 13606-13611.
[2] Colon-Ramos, D.A., and K. Shen, "Cellular conductors: glial cells as guideposts during
neural circuit development," PLoS Biol , Vol. 6, No. 4, 2008, pp. e112.
[3] Sunderland S., and K. Bradley, "The cross-sectional area of peripheral nerve trunks devoted
to nerve fibres," Brain , Vol. 72, 1949, pp.428-449
[4] Taniuchi, M., H.B. Clark, and E.M. Johnson, Jr., "Induction of nerve growth factor receptor
in Schwann cells after axotomy," Proc Natl Acad Sci U S A , Vol. 83, No. 11, 1986, pp. 4094-
4098.
[5] Sumner, A.J., "Aberrant reinnervation," Muscle Nerve , Vol. 13, No. 9, 1990, pp. 801-803.
[6] Lundborg, G., "A 25-year perspective of peripheral nerve surgery: evolving neuroscientific
concepts and clinical significance," J Hand Surg [Am] , Vol. 25, No. 3, 2000, pp. 391-414.
[7] Richardson, P.M., U.M. McGuinness, and A.J. Aguayo, "Axons from CNS neurons
regenerate into PNS grafts," Nature , Vol. 284, No. 5753, 1980, pp. 264-265.
[8] Tello F., "La influencia del neurotropismo en la regeneracion de los centros nerviosos," Trab
Lab Invest Biol, Vol. 9, 1911, pp. 123-159.
[9] Rossignol, S., et al., "Spinal cord injury: time to move?," J Neurosci , Vol. 27, No. 44, 2007,
pp. 11782-11792.
[10] Liuzzi, F.J., and R.J. Lasek, "Astrocytes block axonal regeneration in mammals by activating
the physiological stop pathway," Science , Vol. 237, No. 4815, 1987, pp. 642-645.
[11] Sellaro, T.L., et al., "Maintenance of hepatic sinusoidal endothelial cell phenotype in vitro
using organ-specific extracellular matrix scaffolds," Tissue Eng , Vol. 13, No. 9, 2007, pp.
2301-2310.
[12] Lutolf, M.P., and J.A. Hubbell, "Synthetic biomaterials as instructive extracellular
microenvironments for morphogenesis in tissue engineering," Nat Biotechnol , Vol. 23, No.
1, 2005, pp. 47-55.
[13] Badylak, S.F., D.O. Freytes, and T.W. Gilbert, "Extracellular matrix as a biological scaffold
material: Structure and function," Acta Biomater , Vol. 5, No. 1, 2009, pp. 1-13.
[14] Chen, Z.L., and S. Strickland, "Laminin gamma1 is critical for Schwann cell differentiation,
axon myelination, and regeneration in the peripheral nerve," J Cell Biol , Vol. 163, No. 4,
2003, pp. 889-899.
[15] Baron-Van Evercooren, A., et al., "Fibronectin promotes rat Schwann cell growth and
motility," J Cell Biol , Vol. 93, No. 1, 1982, pp. 211-216.
[16] Baron-Van Evercooren, A., et al., "Nerve growth factor, laminin, and fibronectin promote
neurite growth in human fetal sensory ganglia cultures," J Neurosci Res , Vol. 8, No. 2-3,
1982, pp. 179-193.
[17] Zhang, Z., et al., "Neurite outgrowth on well-characterized surfaces: preparation and
characterization of chemically and spatially controlled fibronectin and RGD substrates with
good bioactivity," Biomaterials , Vol. 26, No. 1, 2005, pp. 47-61.
[18] Schense, J.C., and J.A. Hubbell, "Three-dimensional migration of neurites is mediated by
adhesion site density and affinity," J Biol Chem , Vol. 275, No. 10, 2000, pp. 6813-6818.
[19] Davis, D.H., et al., "Immobilization of RGD to < 1 1 1 > silicon surfaces for enhanced cell
adhesion and proliferation," Biomaterials , Vol. 23, No. 19, 2002, pp. 4019-4027.
Search WWH ::




Custom Search