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Development of sensitization in the escape locomotion system in Aplysia

机译:海豚逃逸运动系统中敏化的发展

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摘要

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.
机译:先前已经在海ly的g和虹吸撤回反射中检查了几种形式的非联想学习的发展(习惯性,适应性和敏化性)。在本研究中,我们分析了学习形式中的一种形式的发展,即敏化,在海兔不同的反应系统中进行逃避运动。检查了广泛的青少年阶段:阶段10、11,早期12,晚期12和13(成年早期)。我们发现敏化作用在发育的早期阶段完全不存在,直到第12阶段才出现。这一发展阶段特别有趣,因为(1)敏化作用首先出现在the和虹吸撤回反射中(Rankin和Carew,1987),and(2)致敏的细胞类似物首先出现在少年海ly的CNS(腹部神经节)中(Nolen and Carew,1987)。敏化在逃逸运动系统和the撤退系统中同步出现的事实令人震惊,因为这两个响应系统在其固有的发展时间表,响应地形和底层神经回路方面存在显着差异。因此,在青少年发育的同一晚期,两个系统中都出现了敏化作用,这提示了在发育过程中一个单一的,统一的过程可能会引起敏化作用的同时表达。

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