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Why do macaroni penguins choose shallow body angles that result in longer descent and ascent durations?

机译:为什么通心粉企鹅选择较浅的身体角度,从而导致更长的下降和上升时间?

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It is generally assumed that air-breathing aquatic animals always choose the shortest route to minimize duration for transit between the surface and foraging depth in order to maximize the proportion of time spent foraging. However, empirical data indicate that the body angles of some diving animals are rarely vertical during descent and ascent. Why do they choose shallower body angles that result in longer descent and ascent durations? To investigate this question, we attached acceleration data loggers to eight female macaroni penguins, breeding on the Kerguelen Islands (48 degrees 45'-50 degrees 00'S, 68 degrees 45'-70 degrees 58'E; South Indian Ocean), to record depth, two-dimensional acceleration (stroke cycle frequency and body angle) and temperature. We investigated how they controlled body angle and allocated their submerged time. The instrumented females performed multiple dives (N=6952) with a mean dive depth for each bird ranging from 24.5+/-28.5 m to 56.4+/-75.1 m. Mean body angles during descent and ascent were not vertical. There was large variation in mean descent and ascent angles for a given dive depth, which, in turn, caused large variation in descent and ascent duration. Body angles were significantly correlated with time spent at the bottom-phase of the dive. Birds that spent long periods at the bottom exhibited steep body angles during ascent and subsequent descent. By contrast, they adopted shallow body angles after they had short or no bottom phases. Our results suggest that macaroni penguins stay at the bottom longer after encountering a good prey patch and then travel to the surface at steep body angles. If they do not encounter prey, they discontinue the dive, without staying at the bottom, ascend at shallow body angles and descend at shallow body angles in a subsequent dive. A shallow body angle can increase the horizontal distance covered during a dive, contributing to the move into a more profitable area in the following dive. During the ascent, in particular, macaroni penguins stopped beating their flippers. The buoyantly gliding penguins can move horizontally with minimum stroking effort before reaching the surface.
机译:通常认为,有呼吸作用的水生动物总是选择最短的路线,以使在表面和觅食深度之间的传播时间最小化,从而使觅食时间所占的比例最大化。但是,经验数据表明,某些潜水动物的体角在下降和上升过程中很少是垂直的。他们为什么选择较浅的身体角度以导致更长的下降和上升时间?为了研究这个问题,我们将加速度数据记录器附加到八只雌性通心粉企鹅上,在克格伦群岛(南纬48度45'-50度00',68度45'-70度58'E;南印度洋)繁殖,以记录深度,二维加速度(冲程频率和体角)和温度。我们研究了他们如何控制体角并分配其淹没时间。雌性雌鸽进行了多次俯冲(N = 6952),每只鸟的平均俯冲深度为24.5 +/- 28.5 m至56.4 +/- 75.1 m。下降和上升期间的平均体角不垂直。对于给定的潜水深度,平均下降角度和上升角度存在较大差异,进而导致下降和上升持续时间产生较大差异。身体角度与潜水底部花费的时间显着相关。在底部停留较长时间的鸟类在上升和随后下降时表现出陡峭的体角。相比之下,他们在具有短或没有底部相位之后采用浅体角。我们的结果表明,通心粉企鹅在遇到良好的猎物斑块后停留在底部的时间更长,然后以陡峭的体角到达表面。如果没有遇到猎物,他们将停止潜水,而不会停留在底部,而是以浅小的身体角度上升,然后以浅小的身体角度下降。较小的身体角度会增加潜水过程中的水平距离,从而有助于在下一次潜水中进入利润更高的区域。特别是在上升过程中,通心粉企鹅不再殴打其鳍状肢。滑翔的企鹅可以在到达水面之前以最小的抚摸力水平移动。

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