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海星精子鞭毛的机械刺激。

Mechanical stimulation of starfish sperm flagella.

作者信息

Okuno M, Hiramoto Y

出版信息

J Exp Biol. 1976 Oct;65(2):401-13. doi: 10.1242/jeb.65.2.401.

Abstract
  1. The responses of starfish sperm flagella to mechanical stimulation with a microneedle were analysed. Flagellar movement was recorded by high-speed microcinematography and by stroboscopic observation. 2. The amplitude of the bending wave of a flagellum was restricted over its entire length when the microneedle was brought near to the flagellum at its proximal region. Beyond the restricted part, the amplitude of the wave, and the bend angle, became smaller than those of a normally beating flagellum, while the curvature was practically unchanged. 3. When the tip of the microneedle was in contact with the flagellum, propagation of the bending wave beyond the microneedle was inhibited. The part of the flagellum between the base and the microneedle continued beating in some cases and stopped beating in other cases. The flagellum beyond the arrested part stopped beating and remained straight. When the microneedle was removed, the bending wave which existed in the part of the flagellum proximal to the microneedle, or the wave which was passively formed de novo at the time of the removal of the microneedle, propagated over the arrested part towards the tip. 4. A flagellum amputated by a microneedle in a medium containing ATP continued beating with a small amplitude, small curvature, small bend angle and low frequency. When the amputated flagellum was passively bent by a microneedle at the region near the point of amputation, this bend propagated towards the tip with a constant bend angle. 5. The beating frequency of the flagellum could be modulated by the application of a rhythmic external force generated by vibrating a microneedle near the flagellum. The beating was completely synchronized with vibration of the microneedle in the frequency range from 23 Hz to 43 Hz.
摘要
  1. 分析了海星精子鞭毛对微针机械刺激的反应。通过高速显微电影摄影术和频闪观测记录鞭毛运动。2. 当微针靠近鞭毛近端区域时,鞭毛弯曲波的振幅在其整个长度上受到限制。在受限部分之外,波的振幅和弯曲角度比正常跳动的鞭毛小,而曲率实际上没有变化。3. 当微针尖端与鞭毛接触时,弯曲波在微针之外的传播受到抑制。鞭毛基部和微针之间的部分在某些情况下继续跳动,在其他情况下停止跳动。被阻止部分之外的鞭毛停止跳动并保持伸直。当移除微针时,存在于微针近端鞭毛部分的弯曲波,或在移除微针时被动重新形成的波,会越过被阻止部分向尖端传播。4. 在含有ATP的介质中被微针切断的鞭毛继续以小振幅、小曲率、小弯曲角度和低频率跳动。当被切断的鞭毛在切断点附近的区域被微针被动弯曲时,这种弯曲会以恒定的弯曲角度向尖端传播。5. 通过在鞭毛附近振动微针产生有节奏的外力,可以调节鞭毛的跳动频率。在23赫兹至43赫兹的频率范围内,跳动与微针的振动完全同步。

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