Lukowiak Ken, Haque Zara, Spencer Gaynor, Varshay Nishi, Sangha Susan, Syed Naweed
Department of Physiology and Biophysics, and Neuroscience and Respiratory Research Groups, University of Calgary, Calgary, Alberta, Canada T2N 4N1.
Learn Mem. 2003 Jan-Feb;10(1):44-54. doi: 10.1101/lm.48703.
A three-neuron network (a central pattern generator [CPG]) is both sufficient and necessary to generate aerial respiratory behavior in the pond snail, Lymnaea stagnalis. Aerial respiratory behavior is abolished following a specific nerve crush that results in axotomy to one of the three CPG neurons, RPeD1. Functional regeneration of the crushed neurite occurs within 10 days, allowing aerial respiratory behavior to be restored. Functional regeneration does not occur if the connective is cut rather than crushed. In unaxotomized snails, aerial respiratory behavior can be operantly conditioned, and following memory consolidation, long-term memory (LTM) persists for at least 2 weeks. We used the Lymnaea model system to determine (1) If in naive animals axotomy and the subsequent regeneration result in a nervous system that is competent to mediate associative learning and LTM, and (2) if LTM survives RPeD1 axotomy and the subsequent regenerative process. We show here that (1) A regenerated nervous system is competent to mediate associative memory and LTM, and (2) LTM survives axotomy and the subsequent regenerative process.
一个三神经元网络(一种中枢模式发生器[CPG])对于椎实螺(Lymnaea stagnalis)产生空中呼吸行为而言既是充分的也是必要的。在对特定神经进行挤压后,空中呼吸行为会消失,这种挤压会导致三个CPG神经元之一的RPeD1轴突切断。被挤压的神经突会在10天内发生功能性再生,从而使空中呼吸行为得以恢复。如果切断而非挤压连接组织,则不会发生功能性再生。在未进行轴突切断的蜗牛中,空中呼吸行为可以通过操作性条件反射进行训练,并且在记忆巩固后,长期记忆(LTM)会持续至少2周。我们利用椎实螺模型系统来确定:(1)在未接触过实验的动物中,轴突切断及随后的再生是否会产生一个能够介导联想学习和长期记忆的神经系统;(2)长期记忆能否在RPeD1轴突切断及随后的再生过程中得以保留。我们在此表明:(1)再生的神经系统能够介导联想记忆和长期记忆;(2)长期记忆能够在轴突切断及随后的再生过程中得以保留。