Vanderbilt University, Department of Biological Sciences, Nashville, TN, USA.
J Exp Biol. 2010 Feb 1;213(3):359-67. doi: 10.1242/jeb.039685.
We investigated the function of the tentacles in aquatic, piscivorous tentacled snakes (Erpeton tentaculatus) by examining anatomy, peripheral innervation, and the response properties of primary afferents. We also investigated visual and somatosensory responses in the optic tectum and documented predatory strikes to visual stimuli and under infrared illumination. Our results show the tentacles are sensitive mechanoreceptors that respond to water movements. They are innervated by rami of the maxillary and ophthalmic branches of the trigeminal nerve and contain a dense array of fine terminal neurites that cross the interior of the tentacle orthogonal to its long axis. The optic tectum contained a retinotopic map of contralateral receptive fields with superior fields represented dorsally in the tectum, inferior fields represented laterally, nasal fields represented rostrally, and temporal fields represented caudally. Large somatosensory receptive fields were identified in deeper layers of the tectum and were in approximate register with overlying visual fields. Tentacled snakes struck accurately at a simulated digital fish, indicating that visual cues are sufficient to guide strikes, but they also captured fish under infrared illumination, suggesting water movements alone could be used to localize prey. We conclude the tentacles are mechanosensors that are used to detect fish position based on water movements and that visual and mechanosensory cues may be integrated in the tectum to enhance localization when visual cues are reduced.
我们通过研究解剖结构、周围神经支配以及初级传入纤维的反应特性,研究了水生、肉食性触须蛇(Erpeton tentaculatus)触须的功能。我们还研究了光顶盖中的视觉和躯体感觉反应,并记录了对视觉刺激和红外照明下的捕食攻击。我们的结果表明,触须是对水运动敏感的机械感受器。它们由三叉神经的上颌和眼分支的分支神经支配,并且包含密集的细终末神经纤维阵列,这些纤维与触须的长轴正交穿过其内部。光顶盖包含一个对侧感受野的视网膜定位图,其中上野在顶盖的背部代表,下野在侧面代表,鼻野在前面代表,颞野在后面代表。在顶盖的深层中识别出了大的躯体感觉感受野,并且与上面的视觉野大致对应。触须蛇能够准确地攻击模拟的数字鱼,这表明视觉线索足以引导攻击,但它们也能在红外照明下捕捉到鱼,这表明仅靠水运动就可以定位猎物。我们得出结论,触须是机械感受器,用于根据水运动来检测鱼的位置,并且视觉和机械感觉线索可以在光顶盖中整合,以在视觉线索减少时增强定位。