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How do baleen whales stow their filter ? A comparative biomechanical analysis of baleen bending

机译:Baleen Whales如何吸收过滤器? 平底弯曲的比较生物力学分析

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Bowhead and right whale (balaenid) baleen filtering plates, longer in vertical dimension (&= 3-4 m) than the closed mouth, presumably bend during gape closure. This has not been observed in live whales, even with scrutiny of video-recorded feeding sequences. To determine what happens to the baleen during gape closure, we conducted an integrative, multifactorial study including materials testing, functional (flow tank and kinematic) testing and histological examination. We measured baleen bending properties along the dorsoventral length of plates and anteroposterior location within a rack of plates via mechanical (axial bending, composite flexure, compression and tension) tests of hydrated and air-dried tissue samples from balaenid and other whale baleen. Balaenid baleen is remarkably strong yet pliable, with ductile fringes, and low stiffness and high elasticity when wet; it likely bends in the closed mouth when not used for filtration. Calculation of flexural modulus from stress/strain experiments shows that the balaenid baleen is slightly more flexible where it emerges from the gums and at its ventral terminus, but kinematic analysis indicates plates bend evenly along their whole length. Fin and humpback whale baleen has similar material properties but less flexibility, with no dorsoventral variation. The internal horn tubes have greater external and hollow luminal diameter but lower density in the lateral relative to medial baleen of bowhead and fin whales, suggesting a greater capacity for lateral bending. Baleen bending has major consequences not only for feeding morphology and energetics but also for conservation given that entanglement in fishing gear is a leading cause of whale mortality.
机译:弓头和右鲸(Balaenid)平板过滤板,垂直尺寸更长(& = 3-4米)比闭嘴,大概在gape封闭期间弯曲。即使有审查视频录制的喂养序列,这尚未观察到这一点。为了确定Gape封闭期间Baleen发生的情况,我们进行了一项综合,多因素研究,包括材料测试,功能性(流量罐和运动)测试和组织学检查。我们通过机械(轴向弯曲,复合弯曲,压缩和张力)从Balaenid和其他鲸鱼样本的机械(轴向弯曲,复合弯曲,压缩和张力)测试沿着板式螺旋螺旋和前后位置测量平板的弯曲性能。 Balaenid Babeen非常柔韧,柔韧性柔韧,湿润,低刚度和高弹性;当不用于过滤时,它可能在闭嘴弯曲。来自应力/应变实验的弯曲模量的计算表明,巴拉尼德比略微更加柔韧,在牙龈和腹侧末端出现,但运动学分析表明板沿其全长均匀地弯曲。鳍和驼背鲸鲸巴比更类似的材料特性,但柔韧性较小,没有多叶六六。内部喇叭管具有更大的外部和中空腔直径,但相对于弓头和鳍鲸的内侧平台的横向密度较低,表明横向弯曲的更大容量。平台弯曲不仅具有喂养形态和精力充沛的主要后果,还具有鉴于渔具的缠结是鲸鱼死亡率的主要原因。

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