Free movement of Tritrichomonas foetus in a liquid medium: a video-microscopy study.

L H Monteiro-Leal, M Farina, W de Souza
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引用次数: 14

Abstract

The present paper describes in detail the complex movement of the protozoon Tritrichomonas foetus. By the use of analogue and digital video techniques, we were able to analyze frame by frame the beatings of the anterior flagella and discuss their role in the movement of the cell. We also measured the productive displacement of the cell during one flagellar beating cycle. The obtained data were digitally improved and compared to analogue quantifications. It is shown that during 1 s of recorded movement, T. foetus performs 4 complete anterior flagella beating cycles (with active-like and recovery-like beatings). In each cycle the cell swims +/- 6.5 microns forwards, after the recovery of +/- 1.5 microns of receded movement. These observations led us to conclude that the estimated average speed of T. foetus is 25 microns/s, and that all flagella participate in the cell movement. The recurrent flagellum continuously contribute to the forward movement of the protozoon. The cell also performs rotational movements. The obtained results led us to suggest a model for the movement of T.foetus.

毛滴虫胎儿在液体培养基中的自由运动:视频显微镜研究。
本文详细介绍了毛滴虫胎儿的复杂运动过程。通过使用模拟和数字视频技术,我们能够逐帧分析前鞭毛的跳动,并讨论它们在细胞运动中的作用。我们还测量了一个鞭毛跳动周期内细胞的生产位移。所获得的数据进行了数字改进,并与模拟量化进行了比较。结果表明,在记录的运动的1 s内,T.胎儿完成了4个完整的前鞭毛跳动周期(有活动型和恢复型跳动)。在每个循环中,细胞向前游动+/- 6.5微米,在后退运动+/- 1.5微米后恢复。这些观察结果使我们得出结论,估计T. foetus的平均速度为25微米/秒,并且所有鞭毛都参与细胞运动。反复出现的鞭毛不断地促进原生动物的向前运动。细胞也进行旋转运动。得到的结果使我们提出了一个t .胎儿运动的模型。
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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