Non-Invasive Glucose Monitoring based on Single Wavelength using Augmented Reality

R. Rajalakshmi, A. Sweatha, S. Vasumithra, P. G
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Abstract

Surgeons are constantly looking for new technologies to enhance their operations in the environment. Because blood must be extracted via a skin prick, BGM (Blood Glucose Monitoring) approaches are invasive. However, researchers are working to make BGM non-invasive by employing NIR (near-infrared) rays. NIR technology has flaws that prevent it from being used in healthcare settings, such as light ray absorption in human tissue, larger SNR (signal-to-noise ratio), and poor accuracy. Applications to stay augmented reality (AR) are being examined for their potential use by surgeons as it becomes increasingly readily available, cheap, and accessible. The insertion of artificial data into any number of senses to help a user accomplish tasks with greater efficiency is recognized as augmented reality (AR).
基于增强现实的单波长无创血糖监测
外科医生一直在寻找新技术来提高他们在环境中的手术能力。由于血液必须通过皮肤穿刺提取,因此BGM(血糖监测)方法是侵入性的。然而,研究人员正在努力通过使用近红外射线使BGM非侵入性。近红外技术存在缺陷,无法用于医疗保健环境,例如人体组织中的光线吸收、较大的信噪比(信噪比)和较差的准确性。随着增强现实技术变得越来越容易获得、便宜和容易获得,外科医生正在研究增强现实(AR)应用程序的潜在用途。将人工数据插入任意数量的感官以帮助用户更高效地完成任务被认为是增强现实(AR)。
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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