Abstract
Given that vision is the sense providing most information to the human being, any affection related to it significantly reduces the quality of life of the patients. Computing is showing to be a promising approach to provide therapies for patients suffering from low vision or even blindness. We describe some specific tools based on software and hardware solutions oriented to the development of this kind of aids. We present a system performing bioinspired image processing on a portable equipment, including a neuromorphic coding module that generates spike event patterns corresponding to information obtained from the processed images. These events drive a computer-controlled platform for neural stimulation of the visual cortex, intended for eliciting the perception of patterns of phosphenes in the visual field of blind subjects.
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References
World Health Organization: Prevention of avoidable blindness and visual impairment (2005), http://www.who.int/gb/ebwha/pdf_files/EB117/B117_35-en.pdf
Humayun, M.S.: Visual perception in a blind subject with a chronic microelectronic retinal prosthesis. Vision Res. 43(24), 2573–2581 (2003)
Veraart, C.: Visual sensations produced by optic nerve stimulation using an implanted self-sizing spiral cuff electrode. Brain Res. 813, 181–186 (1998)
Dobelle, W.H.: Artificial Vision for the Blind by Connecting a Television Camera to the Visual Cortex. Asaio J. 46, 3–9 (2000)
Troyk, P., et al.: A Model for Intracortical Visual Prosthesis Research. Artif. Organs. 11, 1005–1015 (2003)
Fernández, E., Pelayo, F., Romero, S., Bongard, M., Marin, C., Alfaro, A., Merabet, L.: Development of a cortical visual neuroprosthesis for the blind: The relevance of neuroplasticity. J. of Neural Eng. 12, R1–R12 (2005)
Cortivis website, http://cortivis.umh.es
Romero, S., Morillas, C., Martínez, A., Pelayo, F., Fernández, E.: A Research Platform for Visual Neuroprostheses. In: Computational Intelligence Symposium, SICO 2005, pp. 357–362 (2005)
Morillas, C., Romero, S., Martínez, A., Pelayo, F., Reyneri, L., Bongard, M., Fernández, E.: A Neuroengineering suite of Computational Tools for Visual Prostheses. Neurocomputing 70(16-18), 2817–2827 (2007)
The Mathworks website, http://www.mathworks.com
Gerstner, W., Kistler, W.: Spiking Neuron Models. Cambridge University Press, Cambridge (2002)
Normann, R.: A neural interface for a cortical vision prosthesis. Vision Res. 39, 2577–2587 (1999)
Normann, R.A., Warren, D.J., Ammermuller, J., Fernandez, E., Guillory, S.: High-resolution spatio-temporal mapping of visual pathways using multi-electrode arrays. Vision Res. 41, 1261–1275 (2001)
Martínez, A., Reyneri, L.M., Pelayo, F.J., Romero, S., Morillas, C.A., Pino, B.: Automatic generation of bio-inspired retina-like processing hardware. In: Cabestany, J., Prieto, A.G., Sandoval, F. (eds.) IWANN 2005. LNCS, vol. 3512, pp. 527–533. Springer, Heidelberg (2005)
Morillas, C., Pelayo, F., Cobos, J.P., Prieto, A., Romero, S.: Bio-inspired Image Processing For Vision Aids. In: 1st International Conference on Bio-inspired Systems and Signal Processing, vol. 2, pp. 63–69 (2008)
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Romero, S., Morillas, C., Cobos, J.P., Pelayo, F., Prieto, A., Fernández, E. (2008). Computer Aids for Visual Neuroprosthetic Devices. In: Fred, A., Filipe, J., Gamboa, H. (eds) Biomedical Engineering Systems and Technologies. BIOSTEC 2008. Communications in Computer and Information Science, vol 25. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-540-92219-3_7
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DOI: https://doi.org/10.1007/978-3-540-92219-3_7
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