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Rhythms of locomotion and seasonal changes in activity expressed by horseshoe crabs in their natural habitat

机译:马蹄蟹在其自然栖息地表达的运动节奏和活动的季节性变化

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The American horseshoe crab Limulus polyphemus expresses both tidal and daily rhythms of locomotion in the laboratory and the tidal rhythms can be entrained to artificial tides. The main purpose of this study was to determine the types of rhythms horseshoe crabs express when freely moving in their natural habitat where they are exposed to natural light: dark and tidal cycles. A secondary goal was to determine if their overall activity patterns and depth preferences changed during the year. In 2010 and 2011, 20 adult horseshoe crabs (11 males, 9 females) were fitted with ultrasonic tags and released in the Great Bay Estuary, NH, USA. The tags transmitted acceleration and depth data every 3 to 5 min from June until December during the year in which they were tagged, and from March to May of the following year. Acoustic transmissions from the tags were detected and logged by a series of VR2W receivers moored throughout the estuary. Accelerometer data were used to assess when animals were active and to determine (1) whether they were expressing tidal or daily rhythms and (2) their overall activity level each month. We discovered that horseshoe crabs were just as likely to express tidal rhythms as daily rhythms, despite being continuously exposed to natural tide cycles. In addition, there was a tendency to move into deeper water and become less active as water temperatures cooled in the fall, and then to move up into the estuary and become more active as water temperatures warmed in the spring.
机译:美国horse在实验室中表达潮汐和日常运动节律,并且潮汐节律可以夹带到人工潮汐中。这项研究的主要目的是确定horse在自然栖息地(黑暗和潮汐循环)中自由移动时表达的节奏类型。第二个目标是确定他们的整体活动模式和深度偏好在这一年中是否发生了变化。 2010年和2011年,在美国新罕布什尔州的大湾河口投放了20只成年s蟹(男11头,女9头),并贴上超声波标签。标签在进行标签的当年6月至12月之间每3至5分钟发送一次加速度和深度数据,并于次年3月至5月发送。来自标签的声音传输被一系列停泊在河口的VR2W接收器检测到并记录下来。加速度计数据用于评估动物何时活动并确定(1)它们是否表达潮气或每日节律,以及(2)每个月的总体活动水平。我们发现,尽管continuously不断地暴露在自然的潮汐中,但它们的潮汐节奏与日常节奏一样。此外,有一种趋势是,随着秋天温度的降低,水会进入更深的水中而变得不太活跃,然后随着春季水温的升高而向上进入河口并变得更加活跃。

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