An Accelerometer based EyeGlass to Monitor Food Intake in Free-Living and Lab Environment

Arun Arun, S. Bhadra
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引用次数: 2

Abstract

This paper presents a smart eyeglass to monitor temporalis muscle movement for automatic food intake monitoring. The temple of the eyeglass is equipped with an accelerometer based sensing platform. The eyeglass is evaluated using four different classifiers for detection of chewing events during free-living studies. In addition, the in-lab studies are designed with two classifiers to detect chewing events and differentiate between various consumed foods based on their hardness. The system can achieve 86% accuracy, 82.14% precision, 85.49% recall and 82.23% F1-score for chewing detection in free living. For in lab studies, the system achieves 99.37% accuracy to detect chewing and 88% accuracy to differentiate between food based on hardness. The high accuracy results in both free living and in lab tests indicate that this eyeglass can be a preferable wearable to record food intake habits of people.
一种基于加速度计的眼镜,用于监测自由生活和实验室环境下的食物摄入量
本文提出了一种监测颞肌运动的智能眼镜,用于自动监测食物摄入。眼镜的太阳穴配备了一个基于加速度计的传感平台。在自由生活研究中,使用四种不同的分类器对眼镜进行评估,以检测咀嚼事件。此外,在实验室研究中设计了两个分类器,以检测咀嚼事件,并根据其硬度区分各种消耗的食物。该系统在自由生活咀嚼检测中准确率为86%,精密度为82.14%,召回率为85.49%,f1评分为82.23%。在实验室研究中,该系统检测咀嚼的准确率达到99.37%,根据硬度区分食物的准确率达到88%。自由生活和实验室测试的高精度结果表明,这款眼镜可以成为记录人们饮食习惯的首选穿戴设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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