首页> 外文期刊>Journal of medical engineering & technology >The development of a non-contact screening system for rapid medical inspection at a quarantine depot using a laser Doppler blood-flow meter, microwave radar and infrared thermography.
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The development of a non-contact screening system for rapid medical inspection at a quarantine depot using a laser Doppler blood-flow meter, microwave radar and infrared thermography.

机译:开发了一种非接触式筛查系统,用于使用激光多普勒血流仪,微波雷达和红外热像仪在检疫站进行快速医疗检查。

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摘要

In order to conduct fast screening of passengers with infections such as severe acute respiratory syndrome (SARS) or pandemic influenza at a quarantine depot, we developed a non-contact screening system with self-produced program to conduct a human screening within five seconds, via a linear discriminant function from non-contact derived variables, i.e. palmer pulse derived from a laser Doppler blood-flow meter, respiration rate determined by a 10-GHz microwave radar, and facial temperature measured by thermography. The system evaluation was conducted on seven healthy male subjects (23 +/- 1 years). In order to achieve a pseudo-infection condition, the subjects maintained an ergometer exercise load (100 W, 10 minutes). Before (normal condition) and after (pseudo-infection condition) exercise, a significant linear discriminant function (p < 0.001) was determined to distinguish pseudo-infection condition from normal condition (Mahalanobis D-square = 20.3, classification error rate <5%). The proposed system appears promising for future application in fast screening of infection at a quarantine depot.
机译:为了在检疫站对受严重急性呼吸系统综合症(SARS)或大流行性流感等感染的旅客进行快速筛查,我们开发了一种非接触式筛查系统,该系统具有自行制作的程序,可在五秒钟内通过非接触式变量的线性判别函数,即来自激光多普勒血流仪的帕尔默脉冲,由10 GHz微波雷达确定的呼吸频率以及由热像仪测量的面部温度。系统评估是针对七个健康的男性受试者(23 +/- 1岁)进行的。为了达到假感染条件,受试者保持了测功计的运动负荷(100 W,10分钟)。在运动前(正常状态)和运动后(假性感染状态),确定了显着的线性判别函数(p <0.001)以区分假性感染状态和正常状态(马哈拉诺比斯D平方= 20.3,分类错误率<5%) )。拟议的系统看起来很有希望用于将来在检疫仓库快速筛查感染。

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