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佛罗里达海牛(Trichechus manatus latirostris)对水动力刺激的检测。

Detection of hydrodynamic stimuli by the Florida manatee (Trichechus manatus latirostris).

机构信息

Mote Marine Laboratory and Aquarium, Sarasota, FL 34236, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2013 Jun;199(6):441-50. doi: 10.1007/s00359-013-0822-x. Epub 2013 May 10.

Abstract

Florida manatees inhabit the coastal and inland waters of the peninsular state. They have little difficulty navigating the turbid waterways, which often contain obstacles that they must circumnavigate. Anatomical and behavioral research suggests that the vibrissae and associated follicle-sinus complexes that manatees possess over their entire body form a sensory array system for detecting hydrodynamic stimuli analogous to the lateral line system of fish. This is consistent with data highlighting that manatees are tactile specialists, evidenced by their specialized facial morphology and use of their vibrissae during feeding and active investigation/manipulation of objects. Two Florida manatees were tested in a go/no-go procedure using a staircase method to assess their ability to detect low-frequency water movement. Hydrodynamic vibrations were created by a sinusoidally oscillating sphere that generated a dipole field at frequencies from 5 to 150 Hz, which are below the apparent functional hearing limit of the manatee. The manatees detected particle displacement of less than 1 μm for frequencies of 15-150 Hz and of less than a nanometer at 150 Hz. Restricting the facial vibrissae with various size mesh openings indicated that the specialized sensory hairs played an important role in the manatee's exquisite tactile sensitivity.

摘要

佛罗里达海牛栖息在该半岛的沿海和内陆水域。它们在浑浊的水道中导航几乎没有困难,这些水道经常包含它们必须绕过的障碍物。解剖学和行为研究表明,海牛全身拥有的触须和相关的毛囊-窦复合体形成了一个用于检测类似于鱼类侧线系统的水动力刺激的感觉阵列系统。这与突出显示海牛是触觉专家的数据一致,这一点可以从它们特殊的面部形态以及在进食和主动探查/操纵物体时使用触须来证明。使用阶梯法,对两只佛罗里达海牛进行了 Go/No-Go 测试,以评估它们检测低频水运动的能力。通过正弦振荡球体产生的波动产生了从 5 到 150 Hz 的频率的偶极场,这些频率低于海牛的明显功能听力极限。对于 15-150 Hz 的频率,海牛检测到小于 1μm 的颗粒位移,而在 150 Hz 时则小于 1 纳米。用各种大小的网孔限制面部触须表明,这些特殊的感觉毛发在海牛敏锐的触觉灵敏度中发挥了重要作用。

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