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Flow sensing by pinniped whiskers

机译:夹式晶须进行流量感测

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Beside their haptic function, vibrissae of harbour seals (Phocidae) and California sea lions (Otariidae) both represent highly sensitive hydrodynamic receptor systems, although their vibrissal hair shafts differ considerably in structure. To quantify the sensory performance of both hair types, isolated single whiskers were used to measure vortex shedding frequencies produced in the wake of a cylinder immersed in a rotational flow tank. These measurements revealed that both whisker types were able to detect the vortex shedding frequency but differed considerably with respect to the signal-to-noise ratio (SNR). While the signal detected by sea lion whiskers was substantially corrupted by noise, harbour seal whiskers showed a higher SNR with largely reduced noise. However, further analysis revealed that in sea lion whiskers, each noise signal contained a dominant frequency suggested to function as a characteristic carrier signal. While in harbour seal whiskers the unique surface structure explains its high sensitivity, this more or less steady fundamental frequency might represent the mechanism underlying hydrodynamic reception in the fast swimming sea lion by being modulated in response to hydrodynamic stimuli impinging on the hair.
机译:除了它们的触觉功能外,海豹触须(Phocidae)和加利福尼亚海狮(Otariidae)都代表了高度灵敏的水动力受体系统,尽管它们的触须毛干在结构上有很大不同。为了量化两种类型头发的感官性能,使用了隔离的单个胡须来测量浸没在旋转流量罐中的圆柱体后产生的涡流脱落频率。这些测量结果表明,两种晶须类型都能检测到涡旋脱落频率,但信噪比(SNR)却相差很大。虽然海狮胡须检测到的信号已被噪声严重破坏,但海豹胡须却显示出较高的SNR,并且噪声大大降低。但是,进一步的分析表明,在海狮胡须中,每个噪声信号都包含一个主频,建议该主频用作特征载波信号。尽管在海豹胡须中,独特的表面结构说明了其高灵敏度,但这种基本稳定的基频可能是响应于撞击在头发上的水动力刺激而受到调节的,代表了快速游泳海狮中水动力接收的基础机制。

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