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首页> 外文期刊>The Journal of Experimental Biology >Allometry measurements from in situ video recordings can determine the size and swimming speeds of juvenile and adult squid Loligo opalescens (Cephalopoda: Myopsida)
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Allometry measurements from in situ video recordings can determine the size and swimming speeds of juvenile and adult squid Loligo opalescens (Cephalopoda: Myopsida)

机译:通过现场录像记录的异速测量可以确定少年和成年乌贼Loligo opalescens(Cephalopoda:Myopsida)的大小和游泳速度。

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摘要

Juvenile and adult Loligo opalescens Berry were video taped in Monterey Bay with the remotely operated vehicle (ROV) Ventana, captured with an otter trawl in Santa Monica Bay, California, and adults were taken from the Monterey Bay fishery. Behavioral observations were made over a 13 h period of video sequences. Allometry measurements were made on 157 squids ranging in size from 12 to 151 mm mantle length (ML). In addition to ML we measured the morphometric characters of fin length (FL), fin width (FW), mantle width (MW), eye diameter (ED), head width (HW), funnel aperture diameter (FA), fourth arm length (AL) and tentacle length (TL). Loligo opalescens changes shape with ontogeny due to negative allometric growth of ED, HW, TL, MW, FA and positive allometric growth of AL, FL and fin area. The allometry measurements were used to determine the size of juvenile squids video-taped in open water. A linear regression can predict dorsal ML in mm from a dimensionless ratio of ML upon ED (r(2)=0.857, P<0.001). Sizes and velocities of video-taped animals were estimated from 26 video sequences ranging from <1.0 to 8 s. The average velocity for squids ranging from 12-116 mm ML was 0.21 m s(-1) and the maximum velocity was 1.60 m s(-1) (116 mm ML). Allometric measurements can provide scale for 2-dimensional images in order to estimate size, velocity and age of animals.
机译:在蒙特利湾,使用遥控车(VVtana)将少年和成年萝莉不育贝瑞(Boligo opalescens Berry)录制在录像带上,并在加利福尼亚州圣莫尼卡湾用水獭拖网捕获,成年后从蒙特利湾捕捞。在视频序列的13小时内进行了行为观察。在157个鱿鱼上进行了异速测量,大小在12至151 mm的披风长度(ML)之间。除了ML以外,我们还测量了鳍长(FL),鳍宽(FW),罩宽(MW),眼直径(ED),头宽(HW),漏斗孔径直径(FA),第四臂长的形态特征(AL)和触手长度(TL)。由于ED,HW,TL,MW,FA的异形异形生长以及AL,FL和鳍片区域的异形异形生长,乳脂寡糖随着个体发育而改变形状。异速测量法用于确定在开阔水域中录影的鱿鱼的大小。线性回归可以根据ED时ML的无量纲比来预测以mm为单位的背侧ML(r(2)= 0.857,P <0.001)。录像带动物的大小和速度是根据26个视频序列估计的,范围从<1.0到8 s。鱿鱼的平均速度范围为12-116 mm ML,为0.21 m s(-1),最大速度为1.60 m s(-1)(116 mm ML)。异速测量可以为二维图像提供比例,以估计动物的大小,速度和年龄。

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