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加利福尼亚海狮(Zalophus californianus)在复杂动态感觉运动任务中触须控制的特征描述。

Characterisation of whisker control in the California sea lion (Zalophus californianus) during a complex, dynamic sensorimotor task.

作者信息

Milne Alyx O, Grant Robyn A

机构信息

Division of Biology and Conservation Ecology, Conservation, Evolution and Behaviour Research Group, Manchester Metropolitan University, Manchester, UK.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2014 Oct;200(10):871-9. doi: 10.1007/s00359-014-0931-1. Epub 2014 Aug 20.

Abstract

Studies in pinniped whisker use have shown that their whiskers are extremely sensitive to tactile and hydrodynamic signals. While pinnipeds position their whiskers on to objects and have some control over their whisker protractions, it has always been thought that head movements are more responsible for whisker positioning than the movement of the whiskers themselves. This study uses ball balancing, a dynamic sensorimotor skill that is often used in human and robotic coordination studies, to promote sea lion whisker movements during the task. For the first time, using tracked video footage, we show that sea lion whisker movements respond quickly (26.70 ms) and mirror the movement of the ball, much more so than the head. We show that whisker asymmetry and spread are both altered to help sense and control the ball during balancing. We believe that by designing more dynamic sensorimotor tasks we can start to characterise the active nature of this specialised sensory system in pinnipeds.

摘要

对鳍足类动物触须使用的研究表明,它们的触须对触觉和流体动力信号极其敏感。虽然鳍足类动物会将触须放置在物体上,并对触须的伸出有一定控制,但人们一直认为,相较于触须自身的运动,头部运动对触须定位的作用更大。本研究采用球平衡任务,这是一种常用于人类和机器人协调研究的动态感觉运动技能,以促进海狮在任务过程中的触须运动。我们首次利用跟踪视频 footage 表明,海狮触须运动反应迅速(26.70毫秒),且能镜像球的运动,比头部运动的镜像程度要高得多。我们还表明,在平衡过程中,触须的不对称性和展开度都会发生改变,以帮助感知和控制球。我们相信,通过设计更多动态感觉运动任务,我们能够开始描述鳍足类动物这种特殊感觉系统的主动特性。

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