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Need help with my writing homework on Developments in Plastic Optical Fibres and Wearable Technology. Write a 1750 word paper answering;

Need help with my writing homework on Developments in Plastic Optical Fibres and Wearable Technology. Write a 1750 word paper answering; Currently, the market for AR (augmented reality) glasses has grown and it is predicted that it will replace the conventional handheld smartphone interface (Mirza and Sarayeddine, 2013). They provide the advantage of non-obstruction to the user’s line of sight and better navigation ability. With wearable monocular displays like Google GlassTM, immersive AR as Epson MoverioTM and the Samsung galaxy wrist-worn (smartwatch) displays improve employees efficiency by providing clear step by step instructions and timely notifications (accenture.com, n.d.). With tailored applications, google glass has gained way in the healthcare industry, which helps doctors and surgeons in theatres to look up information and enhance their visual capability without necessarily breaking eye contact.

The technology of optical sensors offers high sensitivity in monitoring environmental changes. According to Fidanboylu and Efendioglu, they have widely been used to “monitor a wide range of environmental parameters such as position, vibration, strain, temperature, humidity, viscosity, chemicals, pressure, current, electric field and several other environmental factors” (2009, p.1). Unlike before where cumbersome equipment was used in laboratories to monitor certain bodily processes, modern times benefit from wearable optical sensors highly deployed in healthcare and sports for real-time monitoring of psychological and biological elements (Salvo, 2013). Using wearable textile fiber optic sensors, it’s possible to monitor the heart and respiratory rates of patients and facilitate appropriate health support for detected ailment. The optic sensor is often integrated into a comfortable and wearable smart belt, such that the patient’s heartbeat and breathing movement would exert force, cause a micro bend to the optic sensor and capture the resultant intensity variation based on its output.

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