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使用移动设备进行疫苗二维条形码编码的可行性与局限性

Feasibility and Limitations of Vaccine Two-Dimensional Barcoding Using Mobile Devices.

作者信息

Bell Cameron, Guerinet Julien, Atkinson Katherine M, Wilson Kumanan

机构信息

Ottawa Hospital Research Institute, Clinical Epidemiology Program, Ottawa, ON, Canada.

出版信息

J Med Internet Res. 2016 Jun 23;18(6):e143. doi: 10.2196/jmir.5591.

Abstract

BACKGROUND

Two-dimensional (2D) barcoding has the potential to enhance documentation of vaccine encounters at the point of care. However, this is currently limited to environments equipped with dedicated barcode scanners and compatible record systems. Mobile devices may present a cost-effective alternative to leverage 2D vaccine vial barcodes and improve vaccine product-specific information residing in digital health records.

OBJECTIVE

Mobile devices have the potential to capture product-specific information from 2D vaccine vial barcodes. We sought to examine the feasibility, performance, and potential limitations of scanning 2D barcodes on vaccine vials using 4 different mobile phones.

METHODS

A unique barcode scanning app was developed for Android and iOS operating systems. The impact of 4 variables on the scan success rate, data accuracy, and time to scan were examined: barcode size, curvature, fading, and ambient lighting conditions. Two experimenters performed 4 trials 10 times each, amounting to a total of 2160 barcode scan attempts.

RESULTS

Of the 1832 successful scans performed in this evaluation, zero produced incorrect data. Five-millimeter barcodes were the slowest to scan, although only by 0.5 seconds on average. Barcodes with up to 50% fading had a 100% success rate, but success rate deteriorated beyond 60% fading. Curved barcodes took longer to scan compared with flat, but success rate deterioration was only observed at a vial diameter of 10 mm. Light conditions did not affect success rate or scan time between 500 lux and 20 lux. Conditions below 20 lux impeded the device's ability to scan successfully. Variability in scan time was observed across devices in all trials performed.

CONCLUSIONS

2D vaccine barcoding is possible using mobile devices and is successful under the majority of conditions examined. Manufacturers utilizing 2D barcodes should take into consideration the impact of factors that limit scan success rates. Future studies should evaluate the effect of mobile barcoding on workflow and vaccine administrator acceptance.

摘要

背景

二维(2D)条形码有潜力增强医疗现场疫苗接种情况的记录。然而,目前这仅限于配备专用条形码扫描仪和兼容记录系统的环境。移动设备可能是一种经济高效的替代方案,可用于利用二维疫苗瓶条形码并改善数字健康记录中疫苗产品特定信息。

目的

移动设备有潜力从二维疫苗瓶条形码中获取产品特定信息。我们试图研究使用4种不同手机扫描疫苗瓶上二维条形码的可行性、性能及潜在局限性。

方法

为安卓和iOS操作系统开发了一款独特的条形码扫描应用程序。研究了4个变量对扫描成功率、数据准确性和扫描时间的影响:条形码尺寸、曲率、褪色程度和环境光照条件。两名实验人员各进行4次试验,每次试验10次,总共进行2160次条形码扫描尝试。

结果

在本次评估中进行的1832次成功扫描中,没有产生错误数据。5毫米的条形码扫描速度最慢,不过平均仅慢0.5秒。褪色程度高达50%的条形码成功率为100%,但褪色程度超过60%时成功率下降。与扁平条形码相比,弯曲条形码扫描时间更长,但仅在瓶径为10毫米时观察到成功率下降。光照条件在500勒克斯至20勒克斯之间时,不影响成功率或扫描时间。低于20勒克斯的条件会妨碍设备成功扫描。在所有进行的试验中,不同设备的扫描时间存在差异。

结论

使用移动设备进行二维疫苗条形码扫描是可行的,并且在大多数检测条件下都能成功。使用二维条形码的制造商应考虑限制扫描成功率的因素的影响。未来的研究应评估移动条形码对接种流程和疫苗接种人员接受度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6350/4937181/2fbaab5182d6/jmir_v18i6e143_fig1.jpg

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