Biomedical Engineering Reference
In-Depth Information
57. Stieglitz T, Haberer W, Lau C, Goertz M. Development of an Inductively Coupled
Epiretinal Vision Prosthesis. 26th Annual International Conference of the IEE EMBS.
San Francisco, CA, USA, 2004.
58. Schwahn HN, Gekeler F, Kohler K, et al. Studies on the feasibility of a subretinal
visual prosthesis: data from Yucatan micropig and rabbit. Graefes Arch Clin Exp
Ophthalmol 2001; 239(12):961-7.
59. Peyman G, Chow AY, Liang C, et al. Subretinal semiconductor microphotodiode
array. Ophthalmic Surg Lasers 1998; 29(3):234-41.
60. Chow AY, Pardue MT, Chow VY, et al. Implantation of silicon chip microphotodiode
arrays into the cat subretinal space. IEEE Trans Neural Syst Rehabil Eng 2001;
9(1):86-95.
61. Chow AY, Chow VY, Packo KH, et al. The artificial silicon retina microchip
for the treatment of vision loss from retinitis pigmentosa. Arch Ophthalmol 2004;
122(4):460-9.
62. Sachs HG, Gabel VP. Retinal replacement-the development of microelectronic
retinal prostheses-experience with subretinal implants and new aspects. Graefes Arch
Clin Exp Ophthalmol 2004; 242(8):717-23.
Search WWH ::




Custom Search