首页> 外文期刊>Marine ecology progress series >Hydrodynamic signal perception by the copepod Oithona plumifera
【24h】

Hydrodynamic signal perception by the copepod Oithona plumifera

机译:pe足类Oithona plumifera对水动力信号的感知

获取原文
获取外文期刊封面目录资料

摘要

ABSTRACT: Spatio-temporal hydrodynamic signal fields were quantified for ambush-feeding Oithona plumifera females sensing motile Strobilidium ciliates. First, videotaped Oithona–ciliate encounters were image-analyzed to retrieve ciliate trajectories, O. plumifera attack kinematics and reaction distances to the ciliates. Second, using computational fluid dynamics (CFD), flow disturbances created by swimming ciliates were examined for 5 common ciliary forcing schemes. Third, using the CFD results and measured ciliate trajectories as inputs, a hydrodynamic model was developed to calculate ciliate-generated hydrodynamic signal patterns for observed encounters. Wide variance was found in measured reaction distances. Good correlations existed between measured predator attack kinematics and measured pre-attack prey locations. Moreover, data analysis showed that O. plumifera preferred small attack angles, presumably to enhance capture success. From hydrodynamic modeling, several distinct spatio-temporal hydrodynamic signal patterns were identified, and estimated hydrodynamic signal strengths immediately prior to attack were all above a minimum required signal level but differed substantially in magnitude. These results support the notion that by monitoring and recognizing the spatio-temporal pattern of ciliate-created flow disturbances, O. plumifera can perceive and project the ciliate’s instantaneous location and velocity, and hence precisely time its attack when the ciliate reaches a location where it can most easily be captured. Instead of reacting to a constant signal strength, O. plumifera females adapt their capture behaviors to perceived signal patterns. CFD simulations also revealed species-specific flow patterns and spatial decays in hydrodynamic disturbances created by swimming protists. The predator may use this species-specific information to distinguish among prey species.
机译:摘要:定量分析了时空进水的水力信号场,这些食物是用来灌输摄食运动纤毛纤毛虫的 Oithona plumifera 雌性的。首先,对录像的 Oithona–纤毛虫相遇进行图像分析,以检索纤毛轨迹, O。羽毛的攻击运动学和到纤毛虫的反应距离。其次,使用计算流体动力学(CFD),对5种常见的睫状肌强迫方案检查了游泳纤毛虫产生的流动扰动。第三,使用CFD结果和测得的纤毛轨迹作为输入,开发了水动力模型来计算观察到的相遇中纤毛产生的水动力信号模式。在测量的反应距离中发现很大的差异。在测得的捕食者攻击运动学与测得的攻击前猎物位置之间存在良好的相关性。此外,数据分析显示为 O。 plumifera 首选较小的攻角,以提高捕获成功率。从水动力模型中,可以识别出几种不同的时空水动力信号模式,并且在攻击前即刻估计的水动力信号强度都高于最小所需信号水平,但幅度却大不相同。这些结果支持以下观点:通过监视和识别纤毛虫造成的水流干扰的时空模式。 plumifera 可以感知和投射纤毛的瞬时位置和速度,因此,当纤毛到达最容易捕获的位置时,可以精确地确定其攻击时间。而不是对恒定的信号强度作出反应,而是。羽毛雌性使它们的捕获行为适应感知的信号模式。 CFD模拟还揭示了游泳生物产生的流体动力扰动中特定物种的流型和空间衰减。捕食者可以使用特定物种的信息来区分猎物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号