Werth Alexander J, Kosma Madison M, Chenoweth Ellen M, Straley Janice M
Department of Biology, Hampden-Sydney College, Hampden-Sydney, Virginia 23943, U.S.A.
College of Fisheries and Ocean Sciences, University of Alaska Fairbanks, Juneau, Alaska 99801, U.S.A.
Mar Mamm Sci. 2019 Oct;35(4):1556-1578. doi: 10.1111/mms.12614. Epub 2019 May 14.
The rise of inexpensive, user-friendly cameras and editing software promises to revolutionize data collection with minimal disturbance to marine mammals. Video sequences recorded by aerial drones and GoPro cameras provided close-up views and unique perspectives of humpback whales engulfing juvenile salmon at or just below the water surface in Southeast Alaska and Prince William Sound. Although humpback feeding is famous for its flexibility, several stereotyped events were noted in the 47 lunges we analyzed. Engulfment was rapid (mean 2.07 s), and the entrance through which the tongue inverts into the ventral pouch was seen as water rushes in. Cranial elevation was a major contributor to gape, and pouch contraction sometimes began before full gape closure, with reverberating waves indicating rebounding flow of water within the expanded pouch. Expulsion of filtered water began with a small splash at the anterior of the mouth, followed by sustained excurrent flow in the mouth's central or posterior regions. Apart from a splash of rebounding water, water within the mouth was surprisingly turbulence-free during engulfment, but submersion of the whale's head created visible surface whirlpools and vortices which may aggregate prey for subsequent engulfment.
价格低廉、便于使用的相机及编辑软件的兴起,有望在对海洋哺乳动物干扰最小的情况下彻底改变数据收集方式。由无人机和GoPro相机拍摄的视频片段,提供了座头鲸在阿拉斯加东南部和威廉王子湾水面或水面以下吞食幼年鲑鱼的特写镜头和独特视角。尽管座头鲸捕食以其灵活性著称,但在我们分析的47次猛扑中,仍发现了一些固定模式的行为。吞食过程迅速(平均2.07秒),当水涌入时,可以看到舌头翻进腹袋的入口。头部抬起是张大嘴巴的主要原因,腹袋收缩有时在嘴巴完全闭合前就开始了,回荡的水波表明膨胀的腹袋内有回流的水。过滤后的水从嘴巴前部的一小阵水花开始排出,随后在嘴巴中部或后部持续流出。除了一小阵反弹的水花外,吞食过程中嘴巴内的水出人意料地没有湍流,但鲸鱼头部的浸入产生了明显的水面漩涡,这些漩涡可能会聚集猎物以便后续吞食。