Stopfer M, Carew T J
Department of Psychology, Yale University, New Haven, Connecticut 06520.
J Neurosci. 1988 Jan;8(1):223-30. doi: 10.1523/JNEUROSCI.08-01-00223.1988.
The development of several forms of nonassociative learning (habituation, dishabituation, and sensitization) has previously been examined in the gill and siphon withdrawal reflex of Aplysia. In the present study we analyzed the development of one of these forms of learning, sensitization, in a different response system in Aplysia, escape locomotion. A broad range of juvenile stages was examined: stages 10, 11, early 12, late 12, and 13 (early adult). We found that sensitization was completely absent in early developmental stages, not appearing until late stage 12. This stage of development is particularly interesting because it is at this same point that (1) sensitization first appears in the gill and siphon withdrawal reflex (Rankin and Carew, 1987), and (2) the cellular analog of sensitization first emerges in the CNS (the abdominal ganglion) of juvenile Aplysia (Nolen and Carew, 1987). The fact that sensitization emerges synchronously in the escape locomotion system and the gill withdrawal system is striking because the 2 response systems differ markedly in their intrinsic developmental timetables, response topography, and underlying neural circuitry. Thus, the emergence of sensitization in both systems at the same late stage of juvenile development suggests the possibility that a single, unified process during development may be responsible for the simultaneous expression of sensitization.
此前,已针对海兔鳃和虹吸管收缩反射中的几种非联合型学习(习惯化、去习惯化和敏感化)形式的发展展开了研究。在本研究中,我们分析了海兔另一种反应系统——逃避性运动中的一种学习形式,即敏感化的发展情况。我们考察了广泛的幼体阶段:10期、11期、12期早期、12期晚期和13期(成年早期)。我们发现,在发育早期阶段完全不存在敏感化现象,直到12期晚期才出现。这个发育阶段特别有趣,因为正是在这一时期:(1)敏感化首次出现在鳃和虹吸管收缩反射中(兰金和卡鲁,1987年);(2)敏感化的细胞类似物首次出现在幼体海兔的中枢神经系统(腹神经节)中(诺伦和卡鲁,1987年)。敏感化在逃避性运动系统和鳃收缩系统中同步出现,这一事实令人瞩目,因为这两种反应系统在其内在发育时间表、反应拓扑结构和潜在神经回路方面存在显著差异。因此,在幼体发育的同一晚期阶段,两种系统中都出现敏感化,这表明在发育过程中可能存在一个单一、统一的过程,负责敏感化的同时表达。