Biomedical Engineering Reference
In-Depth Information
8. Smith, G. and D. A. Atchison (1997). The eye. The Eye and Visual Optical Instru-
ments . Cambridge, Cambridge University Press: 291-316.
9. Margalit, E., M. Maia, et al. (2002). “Retinal prosthesis for the blind.” Survey of
Ophthalmology 47 (4): 335-356.
10. Margalit, E., J. D. Weiland, et al. (2003). “Visual and electrical evoked response
recorded from subdural electrodes implanted above the visual cortex in normal
dogs under two methods of anesthesia.” Journal of Neuroscience Methods 123 (2):
129-137.
11. Sachs, H. G., K. Kobuch, et al. (2000). “Subretinal implantation of electrodes for
acute in vivo stimulation of the retina to evoke cortical responses in minipig.”
Investigative Ophthalmology & Visual Science 41 (4): S102-S102.
12. Stett, A., W. Barth, et al. (2000). “Electrical multisite stimulation of the isolated
chicken retina.” Vision Research 40 (13): 1785-1795.
13. Zrenner, E., F. Gekeler, et al. (2001). “Subretinal microphotodiode arrays to replace
degenerated photoreceptors?” Ophthalmologe 98 (4): 357-363.
14. Palanker, D., A. Vankov, et al. (2005). “Design of a high resolution optoelectronic
retinal prosthesis.” Journal of Neural Engineering 2 : S105-S120.
15. Palanker, D., P. Huie, et al. (2004). “Migration of retinal cells through a perforated
membrane: implications for a high-resolution prosthesis.” Invest Ophthalmol Vis Sci
45 (9): 3266-3270.
16. Palanker, D., P. Huie, et al. (2004). Attracting retinal cells to electrodes for
high-resolution stimulation . SPIE, Ophthalmic Technologies, San Jose, CA, SPIE,
vol. 5314.
17. Coppola, D. and D. Purves (1996). “The extraordinarily rapid disappearance of
entopic images.” Proc Natl Acad Sci USA 93 (15): 8001-8004.
18. Coburn, B. (1989). “Neural modeling in electrical-stimulation.” Critical Reviews in
Biomedical Engineering 17 (2): 133-178.
19. Yang, X. L. and S. M. Wu (1997). “Response sensitivity and voltage gain of the rod
and cone bipolar cell synapses in dark-adapted tiger salamander retina.” Journal of
Neurophysiology 78 (5): 2662-2673.
20. Berntson, A. and W. R. Taylor (2000). “Response characteristics and receptive field
widths of on-bipolar cells in the mouse retina.” Journal of Physiology-London 524 (3):
879-889.
21. Malmivuo, J. and R. Plonsey (1995). Hodgkin-Huxley membrane model. Bioelec-
tromagnetism . New York, Oxford University Press: 74-93.
22. Hibino, M., H. Itoh, et al. (1993). “Time courses of cell electroporation as revealed
by submicrosecond imaging of transmembrane potential.” Biophysical Journal 64 (6):
1789-1800.
23. Greenberg, R. J., T. J. Velte, et al. (1999). “A computational model of electrical stimu-
lation of the retinal ganglion cell.” Ieee Transactions on Biomedical Engineering
46 (5): 505-514.
24. Jensen, R. J., O. R. Ziv, et al. (2005). “Thresholds for activation of rabbit retinal
ganglion cells with relatively large, extracellular microelectrodes.” Investigative
Ophthalmology & Visual Science 46 (4): 1486-1496.
25. Aurian-Blajeni, B., X. Beebe, et al. (1989). “Impedance of hydrated iridium oxide
electrodes.” Electrochimica Acta 34 (6): 795-802.
26. Weiland, J. D., D. J. Anderson, et al. (2002). “In vitro electrical properties for
iridium oxide versus titanium nitride stimulating electrodes.” Ieee Transactions on
Biomedical Engineering 49 (12): 1574-1579.
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