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Development of an Image-Based Algorithm for the Motility Characterizations of the Nematode Caenorhabditis Elegans

机译:基于图像的动态特性算法的开发乳头虫杆菌的运动性质

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The nematode Caenorhabditis (C.) elegans has been widely used as a model animal for fundamental biological research. In order to investigate the effect of exercise on degenerative behaviors of C. elegans, such as physiological (lifespan, progeny) and biomechanical (propulsion, total power and swimming gait) properties, we developed a flow visualization technique to characterize the motility of C. elegans. Quantifying the motility of micro-organisms is always essential in understanding their biomechanical properties. Up to date, however, the direct measurement of the motility of C. elegans remains a big challenge due to lack of proper tools. Therefore, a simple image-based algorithm using a micro-particle image velocimetry (μPIV) for deriving the kinetic power and propulsive force of the nematode C. elegans was developed in this study. For the measurement, each worm was confined in a 0.5 uL droplet which was sandwiched between two glass slides separated by two tapes. The motility of the confined worm was derived from the fluid motion according to the law of conservation of energy. The experimental result showed that our measured values appear to be in good agreements with the prior data. The image-based algorithm was proven to be a simple and automated measure for characterizing the dynamic motility of micro-swimmers. The study will eventually provide valuable information for treating and preventing degenerative diseases in higher animals.
机译:Nematode Caenorhabditis(C.)elegans已被广泛用作基本生物研究的模型动物。为了探讨运动对秀丽隐杆线虫的退行性行为的影响,如生理(寿命,后代)和生物力学(推进,总动力和游泳步态)的特性,我们开发了一种流动可视化技术,以表征C的动力。 elegans。量化微生物的动力在理解其生物力学性质方面始终是必不可少的。然而,迄今为止,由于缺乏适当的工具,直接测量C.杆状字体的动机仍然是一个很大的挑战。因此,在本研究中开发了使用用于导出线杆线虫的动力学功率和推进力的微粒子图像速度(μPIV)的简单图像的算法。对于测量,每个蠕虫局限于0.5μl液滴中,该液滴夹在两个胶带中分开的两个玻璃载玻片之间。根据能量守恒定律,狭窄蠕虫的动力来自流体动作。实验结果表明,我们的测量值似乎与先前数据符合良好的协议。被证明的基于图像的算法是一种简单而自动化的测量,用于表征微放游泳者的动态运动。该研究最终将提供有价值的信息来治疗和预防高等动物的退行性疾病。

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