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Main Authors: Xia, Yuanjie, Khamis, Mohamed, Fernandez, F. Anibal, Heidari, Hadi, Butt, Haider, Ahmed, Zubair, Wilkinson, Tim, Ghannam, Rami
Format: Preprint
Published: 2021
Subjects:
Online Access:https://arxiv.org/abs/2112.10905
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author Xia, Yuanjie
Khamis, Mohamed
Fernandez, F. Anibal
Heidari, Hadi
Butt, Haider
Ahmed, Zubair
Wilkinson, Tim
Ghannam, Rami
author_facet Xia, Yuanjie
Khamis, Mohamed
Fernandez, F. Anibal
Heidari, Hadi
Butt, Haider
Ahmed, Zubair
Wilkinson, Tim
Ghannam, Rami
contents Contact lenses have traditionally been used for vision correction applications. Recent advances in microelectronics and nanofabrication on flexible substrates have now enabled sensors, circuits and other essential components to be integrated on a small contact lens platform. This has opened up the possibility of using contact lenses for a range of human-machine interaction applications including vision assistance, eye tracking, displays and health care. In this article, we systematically review the range of smart contact lens materials, device architectures and components that facilitate this interaction for different applications. In fact, evidence from our systematic review demonstrates that these lenses can be used to display information, detect eye movements, restore vision and detect certain biomarkers in tear fluid. Consequently, whereas previous state-of the-art reviews in contact lenses focused exclusively on biosensing, our systematic review covers a wider range of smart contact lens applications in HMI. Moreover, we present a new method of classifying the literature on smart contact lenses according to their six constituent building blocks, which are the sensing, energy management, driver electronics, communications, substrate and the interfacing modules. Based on recent developments in each of these categories, we speculate the challenges and opportunities of smart contact lenses for human-machine interaction. Moreover, we propose a novel self-powered smart contact lens concept with integrated energy harvesters, sensors and communication modules to enable autonomous operation. Our review is therefore a critical evaluation of current data and is presented with the aim of guiding researchers to new research directions in smart contact lenses.
format Preprint
id arxiv_https___arxiv_org_abs_2112_10905
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle State-of-the-Art in Smart Contact Lenses for Human Machine Interaction
Xia, Yuanjie
Khamis, Mohamed
Fernandez, F. Anibal
Heidari, Hadi
Butt, Haider
Ahmed, Zubair
Wilkinson, Tim
Ghannam, Rami
Human-Computer Interaction
Contact lenses have traditionally been used for vision correction applications. Recent advances in microelectronics and nanofabrication on flexible substrates have now enabled sensors, circuits and other essential components to be integrated on a small contact lens platform. This has opened up the possibility of using contact lenses for a range of human-machine interaction applications including vision assistance, eye tracking, displays and health care. In this article, we systematically review the range of smart contact lens materials, device architectures and components that facilitate this interaction for different applications. In fact, evidence from our systematic review demonstrates that these lenses can be used to display information, detect eye movements, restore vision and detect certain biomarkers in tear fluid. Consequently, whereas previous state-of the-art reviews in contact lenses focused exclusively on biosensing, our systematic review covers a wider range of smart contact lens applications in HMI. Moreover, we present a new method of classifying the literature on smart contact lenses according to their six constituent building blocks, which are the sensing, energy management, driver electronics, communications, substrate and the interfacing modules. Based on recent developments in each of these categories, we speculate the challenges and opportunities of smart contact lenses for human-machine interaction. Moreover, we propose a novel self-powered smart contact lens concept with integrated energy harvesters, sensors and communication modules to enable autonomous operation. Our review is therefore a critical evaluation of current data and is presented with the aim of guiding researchers to new research directions in smart contact lenses.
title State-of-the-Art in Smart Contact Lenses for Human Machine Interaction
topic Human-Computer Interaction
url https://arxiv.org/abs/2112.10905