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The movement of spermatozoa with helical head: theoretical analysis and experimental results.

机译:螺旋头精子的运动:理论分析和实验结果。

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摘要

The present work is concerned with the study of the swimming of flagellated microscopic organisms with a helical head and a helical pattern of flagellar beating, such as Xenopus sperms. The theoretical approach is similar to that taken by Chang and Wu (1971) in the study of helical flagellar movement. The model used in the present study allows us to determine the velocity of propulsion (U) and the frequency of rotation of the sperm head (fh) as a function of the frequency of the wave of motion (ft) traveling along the tail. The results relative to the case of helical and planar flagellar waves are compared. Our main finding is that the helical shape of the head seems to increase the efficiency of propulsion of the spermatozoon when compared with the more commonly shaped spherical head. Experimentally measured values of fh versus U may be fitted by a linear plot whose slope is much higher than that corresponding to the case of planar flagellar beating. This fact is consistent with an effectively three-dimensional (nonplanar) movement of the flagellar tail. However, the results do not fit those predicted from a circular helix, suggesting that a different shape of the flagellar beating should be considered.
机译:目前的工作涉及游泳的鞭毛微观生物的螺旋头部和鞭毛殴打,如非洲爪蟾精子螺旋模式的游泳。该理论方法类似于Chang和Wu(1971)在研究螺旋鞭毛运动中所采用的方法。本研究中使用的模型使我们能够确定推进速度(U)和精子头部旋转频率(fh)作为沿着尾巴传播的运动波频率(ft)的函数。比较了与螺旋鞭毛和平面鞭毛的情况有关的结果。我们的主要发现是,与更常见的球形头部相比,头部的螺旋形状似乎提高了精子的推进效率。 fh对U的实验测量值可以通过线性图拟合,该线性图的斜率比平面鞭毛殴打的斜率高得多。这个事实与鞭毛尾巴的有效三维运动(非平面)一致。但是,结果与根据圆形螺旋线预测的结果不符,表明应考虑使用不同形状的鞭毛拍打。

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