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An XROMM Study of Food Transport and Swallowing in Channel Catfish

机译:触发鲶鱼食品运输和吞咽的XROMM研究

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摘要

Most predatory ray-finned fishes swallow their food whole, which can pose a significant challenge, given that prey items can be half as large as the predators themselves. How do fish transport captured food from the mouth to the stomach? Prior work indicates that, in general, fish use the pharyngeal jaws to manipulate food into the esophagus, where peristalsis is thought to take over. We used X-Ray Reconstruction of Moving Morphology to track prey transport in channel catfish (Ictalurus punctatus). By reconstructing the 3D motions of both the food and the catfish, we were able to track how the catfish move food through the head and into the stomach. Food enters the oral cavity at high velocities as a continuation of suction and stops in the approximate location of the branchial basket before moving in a much slower, more complex path toward the esophagus. This slow phase coincides with little motion in the head and no substantial mouth opening or hyoid depression. Once the prey is in the esophagus, however, its transport is surprisingly tightly correlated with gulping motions (hyoid depression, girdle retraction, hypaxial shortening, and mouth opening) of the head. Although the transport mechanism itself remains unknown, to our knowledge, this is the first description of synchrony between cranial expansion and esophageal transport in a fish. Our results provide direct evidence of prey transport within the esophagus and suggest that peristalsis may not be the sole mechanism of esophageal transport in catfish.
机译:大多数掠夺性射线炸鱼吞噬了他们的食物,这可能会产生重大挑战,因为猎物物品可以是掠夺者自己的一半。鱼类如何将食物从嘴里捕获到胃中?前工作表明,通常,鱼类使用咽部颌骨以操纵食物进入食道,腓特内斯被认为接管。我们使用了运动形态的X射线重建,以跟踪通道鲶鱼(IctalurusPunctatus)的猎物运输。通过重建食物和鲶鱼的3D运动,我们能够跟踪鲶鱼如何通过头部和胃部移动食物。食物以高速度进入口腔,作为施加在径向朝向食道的较慢,更复杂的路径之前的鳃篮的大致位置处的吸力和停止。这种慢相比头部的运动很少,没有大幅度的口腔开口或痰抑制。然而,一旦猎物在食道中,它的运输令人惊讶地与头部的吞咽运动(舌抑郁,腰带缩回,缺口缩短和口开口)紧密相关。虽然传送机制本身仍然不明,但我们的知识仍然是未知的,这是颅膨胀与鱼类食管运输之间的同步的第一个描述。我们的结果提供了食道内猎物交通的直接证据,并表明蠕动可能不是鲶鱼食管运输的唯一机制。

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