Klein Adrian, Bleckmann Horst
Institute of Zoology, University of Bonn, Poppelsdorfer Schloss, 53115, Bonn, Germany.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Mar;203(3):163-173. doi: 10.1007/s00359-016-1144-6. Epub 2017 Feb 23.
In running water trout seek out special regions for station holding. Trout exposed to flow fluctuations caused by a cylinder hold station immediately upstream of the cylinder (bow wake region), adjacent to the cylinder (entraining region) or downstream of the cylinder (Kármán gait). In addition it was shown that the activity of the axial red swimming muscles is reduced during Kármán gaiting. Up to now only the two-dimensional (horizontal) extensions of the above regions have been examined. We determined both, the horizontal and vertical extension of the Kármán gait, entraining and bow wake region by continuously recording the position (spatial resolution 1 cm) of trout for 3 h. In addition we continuously recorded the trunk muscle activity. The Kármán gate region had the smallest vertical extension (13 cm, water level 28-29 cm, length of the submerged cylinder 27 cm), followed by the entraining (21 cm) and bow wake region (25 cm). A fourth so far unknown region used for station holding was immediately below a stationary surface wave which, at flow velocities ≥36 cm s, developed slightly downstream of the cylinder. While in any of the above regions the activity of the axial swimming muscles was significantly reduced.
在流动的水中,鳟鱼会寻找特殊区域来保持站位。暴露于由圆柱体引起的水流波动中的鳟鱼会在圆柱体的正上游(弓形尾流区域)、与圆柱体相邻处(夹带区域)或圆柱体下游(卡门步态区域)保持站位。此外,研究表明,在卡门步态期间,轴向红色游泳肌肉的活动会减少。到目前为止,仅对上述区域的二维(水平)范围进行了研究。我们通过连续记录鳟鱼3小时的位置(空间分辨率为1厘米),确定了卡门步态区域、夹带区域和弓形尾流区域的水平和垂直范围。此外,我们还连续记录了躯干肌肉的活动。卡门步态区域的垂直范围最小(13厘米,水位28 - 29厘米,浸没圆柱体长度27厘米),其次是夹带区域(21厘米)和弓形尾流区域(25厘米)。第四个迄今为止未知的用于保持站位的区域位于一个静止表面波的正下方,该表面波在流速≥36厘米/秒时在圆柱体稍下游处形成。而在上述任何一个区域中,轴向游泳肌肉的活动都显著减少。