通过现场成像揭示了海洋巨型浮游生物的旋转和螺旋
Kelly R Sutherland1, Alejandro Damian-Serrano1, Kevin T Du Clos2
1Oregon Institute of Marine Biology, University of Oregon, Eugene, OR 97405, USA.
Science advances
|May 15, 2024
概括
大型海洋生物,如连锁形成的沙,Iasis cylindrica,使用螺旋式游泳来有效地运动. 这项研究揭示了它们螺旋运动的机制,由协调的动物体推进驱动.
科学领域:
- 海洋生物学 海洋生物学
- 生物力学 生物力学
- 动物的运动 动物的运动
背景情况:
- 螺旋运动在微生物中很常见,增强了稳定性和效率.
- 在较大的生物体 (>1厘米) 中螺旋运动的生物力学尚不清楚.
研究的目的:
- 为了研究螺旋式游泳的机制,在链形成的沙中,Iasis cylindrica.
- 了解分布式推进如何为宏观螺旋运动做出贡献.
主要方法:
- 在开放的海洋中观测Iasis cylindrica.
- 三维成像分析游泳路径和动物体的方向.
- 推进喷气相互作用和方向的分析.
主要成果:
- 圆柱状岩石表现出螺旋式游泳,螺旋性是由斜的动物形方向产生的,产生扭矩.
- 殖民地可以呈现时针方向和反时针方向的旋转.
- 较长的链 (>10个动物体) 从线性轴旋转过渡到螺旋路径.
- 推进喷气是非相互作用的,并优化推力,最大限度地减少破坏力.
结论:
- 在圆柱体中分布式推进使得高效的宏观螺旋运动成为可能.
- 斜的动物体方向是这些生物体扭矩产生和螺旋运动的关键.
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