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Frank E Fish1, Molly K Gabler-Smith2, Samantha Mulvany3
1Department of Biology, West Chester University, West Chester, Pennsylvania, USA.
Journal of morphology
|September 1, 2025
概括
在海洋底部寻找食物时使用特殊的脑叶. 这些叶片在基板附近产生负升力,有助于捕食物检测和稳定运动.
科学领域:
- 海洋生物学
- 水力学
- 功能形态
背景情况:
- 牛鼻 (Rhinoptera bonasus) 和斑点 (Aetobatus narinari) 是一种在海洋底部食的类鱼类.
- 这两种物种都有脑叶 (前胸的修饰或合的正面) 用于在基板下感知猎物.
研究的目的:
- 在底部食过程中研究牛鼻和斑点的脑叶的水力动力功能.
- 确定脑叶的几何和方向是否有助于被动水力学功能.
主要方法:
- 用CT扫描创建射线头部的物理模型.
- 在这些模型上进行了水测试和流量可视化,以分析水力动力和流量模式.
主要成果:
- 部署脑叶的模型在接近固体表面时产生负升力,而没有部署叶的模型在开放水中产生正升力.
- 视觉流动显示脑叶会产生温图里效应,
- 对两种鱼种类来说,负升力在基板附近增加.
结论:
- 牛鼻和斑点的脑叶是适应水力学产生负升近海洋底部.
- 这种负提升增强了感官感知的基板接触,并抵消了在寻找食物时的投动作,提高了猎物检测效率.
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