Université de Caen Basse-Normandie, Groupe Mémoire et Plasticité comportementale, EA 4259, F-14032 Caen cedex, France.
Behav Brain Res. 2013 Mar 1;240:29-32. doi: 10.1016/j.bbr.2012.11.010. Epub 2012 Nov 21.
For several decades the "prawn-in-the-tube" procedure has been extensively used in the exploration of behavioral plasticity and its neural correlates in cuttlefish. Although the nature of the task has been characterized, the effect of reinforcement and the extent of different cues cuttlefish can use to solve and memorize the task remain unclear. To determine whether cuttlefish learned to inhibit predatory behavior because of pain incurred when the tentacles hit the glass tube, the shrimp prey (typically attacked with a tentacle strike) was replaced by crabs (normally caught by a jumping strategy, using all eight arms together, which is thought less likely to be painful). We showed that the cuttlefish is still capable of learning inhibition of predatory behavior when it adopts another catching strategy, which suggests that pain from the tentacles hitting the tube has little effect on the learning process. The two latest experiments have shown that cuttlefish do not learn to inhibit predatory behavior towards a specific type of prey, but rather learn and memorize visual (light polarization) and tactile information from the glass tube. The "prawn-in-the-tube" procedure is a powerful and user-friendly tool in the investigation of the processing and retention of multisensory information in invertebrates. Our recent findings now open up new areas of investigation into the neural correlates of learning and memory processes in cuttlefish.
几十年来,“管中虾”程序已被广泛用于探索乌贼的行为可塑性及其神经相关性。虽然该任务的性质已经被描述过,但强化的效果以及乌贼可以用来解决和记忆任务的不同线索的程度仍然不清楚。为了确定乌贼是否因为触角碰到玻璃管而感到疼痛而学会抑制捕食行为,我们用螃蟹(通常通过跳跃策略一起使用所有八只手臂来捕捉,这被认为不太可能引起疼痛)代替虾类(通常用触角攻击)作为猎物。我们发现,当乌贼采用另一种捕捉策略时,它仍然能够学会抑制捕食行为,这表明触角碰到管的疼痛对学习过程的影响很小。最近的两项实验表明,乌贼不会学会抑制对特定类型猎物的捕食行为,而是学会并记住来自玻璃管的视觉(光偏振)和触觉信息。“管中虾”程序是一种强大且用户友好的工具,可用于研究无脊椎动物中多感觉信息的处理和保留。我们最近的发现现在为研究乌贼学习和记忆过程的神经相关性开辟了新的领域。