Comparative resilience and precision of digitized optical counting using ImageJ during routine mosquito (Diptera: Culicidae) sample processing.

IF 2.1 3区 农林科学 Q1 ENTOMOLOGY
Ayla Faraji, Kelsey A Fairbanks, Ary Faraji, Christopher S Bibbs
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引用次数: 0

Abstract

Surveillance is integral for the targeted and effective function of integrated vector management. However, the scale of surveillance efforts can be prohibitive on manpower, given the large number of traps set, collected, processed, and enumerated. For many public health agencies, the sheer effort of weekly trapping, combined with the processing of numerous traps, is a major capacity challenge. To reduce employee fatigue and increase throughput, estimation methods are used in a diagnostic capacity to determine threshold numbers of mosquitoes (Diptera: Culicidae) for operational decision-making. Historically, volume and mass measures correlated to a known number of mosquitoes are the oldest and most widely used within mosquito control programs. Image processing methods using digital counting software, such as ImageJ, have not been tested rigorously in the context of high throughput usage experienced in mosquito operations. We stress-tested volume, mass, and image processing methods using sample calibrations from early in the year and applied them throughout a mosquito active season. We additionally tested resilience with samples that had been frozen, desiccated, old, or from an excessively large trap collection. Furthermore, we compared magnitudes of error after intentionally deviating from best practices. In all cases, mass and volume encountered significant errors. In contrast, the digitized-optical counting method was resilient to going long periods of use without recalibrating, handling different species compositions, and processing aged or damaged samples. If a program has limited logistical power, the aforementioned image-processing method confers the best balance of accuracy and expediency for time-sensitive workloads and efficient operational decision making.

在常规蚊子(双翅目:Culicidae)样本处理过程中使用 ImageJ 进行数字化光学计数的复原力和精确度比较。
监测是病媒综合管理有针对性和有效功能的组成部分。然而,鉴于设置、收集、处理和列举的陷阱数量众多,监测工作的规模可能会使人力望而却步。对许多公共卫生机构来说,单是每周诱捕的工作量,再加上处理大量诱捕器,是一项重大的能力挑战。为了减少员工疲劳和提高吞吐量,在诊断能力中使用估计方法来确定蚊子(双翅目:库蚊科)的阈值数量,以供操作决策。从历史上看,与已知蚊子数量相关的体积和质量测量是蚊子控制计划中最古老和最广泛使用的方法。使用数字计数软件(如ImageJ)的图像处理方法尚未在蚊子操作中高通量使用的背景下经过严格测试。我们使用年初的样本校准对体积、质量和图像处理方法进行了压力测试,并在整个蚊子活跃季节应用这些方法。我们还用冷冻、干燥、老化或从超大陷阱收集的样品测试了弹性。此外,我们比较了故意偏离最佳实践后的误差大小。在所有情况下,质量和体积都遇到了严重的错误。相比之下,数字化光学计数方法在不需要重新校准、处理不同物种组成和处理老化或损坏样品的情况下,可以长时间使用。如果程序的后勤能力有限,上述图像处理方法可以为时间敏感的工作负载和有效的操作决策提供准确性和方便性的最佳平衡。
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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来源期刊
Journal of Insect Science
Journal of Insect Science 生物-昆虫学
CiteScore
3.70
自引率
0.00%
发文量
80
审稿时长
7.5 months
期刊介绍: The Journal of Insect Science was founded with support from the University of Arizona library in 2001 by Dr. Henry Hagedorn, who served as editor-in-chief until his death in January 2014. The Entomological Society of America was very pleased to add the Journal of Insect Science to its publishing portfolio in 2014. The fully open access journal publishes papers in all aspects of the biology of insects and other arthropods from the molecular to the ecological, and their agricultural and medical impact.
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