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果蝇标本的自动追踪

Automated Tracking of Drosophila Specimens.

作者信息

Chao Rubén, Macía-Vázquez Germán, Zalama Eduardo, Gómez-García-Bermejo Jaime, Perán José-Ramón

机构信息

University of Valladolid, Paseo del Cauce 59. Valladolid 47011, Spain.

University of Valladolid, Instituto de las Tecnologías Avanzadas de la Producción, Paseo del Cauce 59. Valladolid 47011, Spain.

出版信息

Sensors (Basel). 2015 Aug 6;15(8):19369-92. doi: 10.3390/s150819369.

Abstract

The fruit fly Drosophila Melanogaster has become a model organism in the study of neurobiology and behavior patterns. The analysis of the way the fly moves and its behavior is of great scientific interest for research on aspects such as drug tolerance, aggression or ageing in humans. In this article, a procedure for detecting, identifying and tracking numerous specimens of Drosophila by means of computer vision-based sensing systems is presented. This procedure allows dynamic information about each specimen to be collected at each moment, and then for its behavior to be quantitatively characterized. The proposed algorithm operates in three main steps: a pre-processing step, a detection and segmentation step, and tracking shape. The pre-processing and segmentation steps allow some limits of the image acquisition system and some visual artifacts (such as shadows and reflections) to be dealt with. The improvements introduced in the tracking step allow the problems corresponding to identity loss and swaps, caused by the interaction between individual flies, to be solved efficiently. Thus, a robust method that compares favorably to other existing methods is obtained.

摘要

果蝇黑腹果蝇已成为神经生物学和行为模式研究中的一种模式生物。对果蝇运动方式及其行为的分析,对于研究人类的药物耐受性、攻击性或衰老等方面具有重大的科学意义。本文介绍了一种通过基于计算机视觉的传感系统检测、识别和跟踪大量果蝇样本的方法。该方法能够在每个时刻收集每个样本的动态信息,进而对其行为进行定量表征。所提出的算法主要分三个步骤运行:预处理步骤、检测与分割步骤以及形状跟踪步骤。预处理和分割步骤能够处理图像采集系统的一些局限性以及一些视觉伪像(如阴影和反射)。跟踪步骤中引入的改进措施能够有效解决因果蝇个体之间相互作用导致的身份丢失和交换等问题。因此,获得了一种与其他现有方法相比具有优势的稳健方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfc4/4570375/fe3437fd8dc5/sensors-15-19369-g001.jpg

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