Related Experiment Videos
Wireless power and data transmission system for a micro implantable intraocular vision aid
N Hijazi1, I Krisch, B J Hosticka
1Gerhard-Mercator University of Duisburg, Germany. hijazi@ims.fhg.de
Biomedizinische Technik. Biomedical Engineering
|November 28, 2002
Summary
This study presents a wireless intraocular vision aid for blind patients with corneal opacification. The system uses radio frequency (RF) for power and near-infrared (NIR) for data transmission, enabling a comfortable, implantable microdisplay.
Area of Science:
- Biomedical Engineering
- Ophthalmology
- Wireless Communication
Background:
- Bilateral corneal opacification causes blindness in patients with intact posterior ocular structures.
- Existing vision aids often require uncomfortable mechanical wiring or lack wireless capabilities.
- A need exists for advanced intraocular devices offering seamless wireless power and data transmission.
Purpose of the Study:
- To describe a novel wireless power and data transmission system for an intraocular vision aid.
- To enable vision restoration for patients with specific types of blindness.
- To provide a comfortable and effective solution through an implantable device.
Main Methods:
- Development of an external unit for image acquisition, coding, and wireless transmission.
- Design of an implantable unit with a CMOS receiver, antenna coil, and LED microdisplay.
- Utilized a 13.56 MHz RF link for wireless power transmission.
- Employed a near-infrared (NIR) optical link for wireless data transmission.
Main Results:
- Successfully demonstrated a functional wireless system for intraocular vision aid.
- Integrated wireless power and data transfer, eliminating the need for mechanical wiring.
- The system is suitable for patients with bilateral corneal opacification and healthy retinas.
Conclusions:
- The described wireless system offers an optimal technical solution for intraocular vision aids.
- This technology has the potential to significantly improve the quality of life for visually impaired patients.
- Further development could lead to more advanced and widely accessible vision restoration technologies.