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利用近红外光子技术的自由空间调频波识别人类血型的新型光学生物传感器方法。

Novel optical biosensor method to identify human blood types using free-space frequency-modulated wave of NIR photon technology.

作者信息

Sultan Ebraheem, Albahrani Mariam, Alostad Jasem, Ebraheem Hameed K, Alnaser Mahmud, Alkhateeb Nizar

机构信息

Department of Electronic Engineering Technology, College of Technological Studies (CTS), The Public Authority of Applied Education and Training (PAAET), State of Kuwait,

Department of Medical Laboratory Science, College of Allied Medical Science, Kuwait University, State of Kuwait.

出版信息

Med Devices (Auckl). 2018 Dec 27;12:9-20. doi: 10.2147/MDER.S181796. eCollection 2019.

Abstract

BACKGROUND

The free-space broadband frequency-modulated near-infrared (NIR) photon transmission and backscattering mode technique has been used in this paper as an optical biosensor method.

PURPOSE

The purpose is to measure, identify, and extract the optical properties of different blood types.

PATIENTS AND METHODS

The method depends on the measurements of broadband frequencies ranging from 30 up to 1,000 MHz to predict two important parameters related to the incident-modulated signal. Blind samples collected from 30 patients were examined using the optical NIR transmission mode system, and an additional 40 blood samples from random patients were examined using the optical NIR reflection mode system. The study is divided into two stages: The first stage is dedicated to measuring the insertion loss and insertion phase over 30-1,000 MHz in a transmission mode to characterize the behavior of modulated photons as they interact with the blood samples. The second stage is dedicated to performing noninvasive backscattering measurements using the optical band developed to match the first stage results.

RESULTS

In this paper, we have created an indexed database using optical transmission mode measurements, and then mapped it to a reflection noninvasive measurement to identify the blood types. Then for the purpose of device accuracy, we randomly selected 480 new human subjects to measure the false-negative error percentage. This method is novel in terms of using an optical system to measure and identify blood types without collecting blood samples.

CONCLUSION

The novel approach shows a highly accurate method in identifying different blood types instantaneously using optical sensing for both in vitro and in vivo procedures, thereby saving time and effort.

摘要

背景

本文采用自由空间宽带调频近红外(NIR)光子传输和背散射模式技术作为一种光学生物传感器方法。

目的

旨在测量、识别并提取不同血型的光学特性。

患者与方法

该方法依赖于对30至1000兆赫兹宽带频率的测量,以预测与入射调制信号相关的两个重要参数。使用光学近红外传输模式系统对从30名患者采集的盲样本进行检测,并使用光学近红外反射模式系统对另外40名随机患者的血样进行检测。该研究分为两个阶段:第一阶段致力于在传输模式下测量30至1000兆赫兹范围内的插入损耗和插入相位,以表征调制光子与血样相互作用时的行为。第二阶段致力于使用为匹配第一阶段结果而开发的光学波段进行无创背散射测量。

结果

在本文中,我们利用光学传输模式测量创建了一个索引数据库,然后将其映射到反射无创测量以识别血型。然后,为了评估设备的准确性,我们随机选择480名新的受试者来测量假阴性误差百分比。该方法在不采集血样的情况下使用光学系统测量和识别血型方面具有创新性。

结论

这种新方法展示了一种高度准确的方法,可通过光学传感在体外和体内程序中即时识别不同血型,从而节省时间和精力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5a6/6311330/5da4dddb6cd0/mder-12-009Fig1.jpg

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