...
首页> 外文期刊>Journal of Microbiological Methods >Automated counting of bacterial colonies on agar plates based on images captured at near-infrared light
【24h】

Automated counting of bacterial colonies on agar plates based on images captured at near-infrared light

机译:基于近红外光线捕获的图像自动计数琼脂平板上的细菌菌落

获取原文
获取原文并翻译 | 示例
           

摘要

Counting colonies is usually used in microbiological analysis to assess if samples meet microbiological criteria. Although manual counting remains gold standard, the process is subjective, tedious, and time-consuming. Some developed automatic counting methods could save labors and time, but their results are easily affected by uneven illumination and reflection of visible light. To offer a method which counts colonies automatically and is robust to light, we constructed a convenient and cost-effective system to obtain images of colonies at near-infrared light, and proposed an automatic method to detect and count colonies by processing images. The colonies cultured by using raw cows' milk were used as identification objects. The developed system mainly consisted of a visible/near-infrared camera and a circular near-infrared illuminator. The automatic method proposed to count colonies includes four steps, i.e., eliminating noises outside agar plate, removing plate rim and wall, identifying and separating clustered or overlapped colonies, and counting colonies by using connected region labelling, distance transform, and watershed algorithms, etc. A user-friendly graphic user interface was also developed for the proposed method. The relative error and counting time of the automatic counting method were compared with those of manual counting. The results showed that the relative error of the automatic counting method was -7.4%similar to + 8.3%, with average relative error of 0.2%, and the time used for counting colonies on each agar plate was 11-21 s, which was 15-75% of the time used in manual counting, depending on the numbers of colonies on agar plates. The proposed system and automatic counting method demonstrate promising performance in terms of precision, and they are robust and efficient in terms of labor- and time-ssavings.
机译:计数菌落通常用于微生物分析以评估样品是否满足微生物标准。虽然手动计数仍然是黄金标准,但该过程是主观的,乏味,耗时。一些开发的自动计数方法可以节省劳动力和时间,但它们的结果很容易受到不均匀照明和可见光的反射的影响。为了提供一种自动计数殖民地的方法,并且对光线稳健,我们构建了一种方便且经济高效的系统,以在近红外光处获得殖民地的图像,并提出了通过处理图像来检测和计数殖民地的自动方法。使用原料奶牛牛奶培养的菌落被用作识别物体。开发系统主要由可见/近红外相机和圆形近红外照明器组成。用于计数菌落的自动方法包括四个步骤,即消除琼脂板外的噪声,除去板轮辋和壁,通过使用连接区域标记,距离变换和流域算法来识别和分离聚类或重叠的菌落,以及计数菌落。 。还为所提出的方法开发了一个用户友好的图形用户界面。将自动计数方法的相对误差和计数时间与手动计数进行比较。结果表明,自动计数方法的相对误差与+ 8.3%相似,平均相对误差为0.2%,并且每种琼脂板上计数菌落的时间为11-21秒,为15 -75%在手动计数中使用的时间,取决于琼脂平板上的菌落数。所提出的系统和自动计数方法在精度方面表现出具有很大的性能,并且在劳动和时间阶段方面具有稳健和高效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号