Wright W G, Kirschman D
Department of Biology, Colorado State University, Fort Collins 80523, USA.
Learn Mem. 1995 May-Aug;2(3-4):178-84. doi: 10.1101/lm.2.3-4.178.
Modulation of the strength of siphon and tail withdrawal reflexes in Aplysia involves, in part, changes in the sensory neurons that initiate these reflexes. Different observations and experiments on modulation in siphon and tail sensory neurons together contribute to the working model of mechanisms of learning and memory in Aplysia, yet no direct comparison of modulation in these two classes of sensory neurons has yet been made. The purpose of the present study was to directly compare modulation between siphon and tail sensory neurons in the same experimental conditions. In particular, we focused on the effects of serotonin on two firing properties of sensory neurons: spike duration and excitability. We applied serotonin (5-HT) onto both siphon and tail sensory neurons under the same conditions and found that both spike duration and excitability were significantly enhanced. This enhancement was statistically indistinguishable between siphon and tail sensory neurons tested simultaneously in the same preparation. Thus, these two different classes of sensory neurons respond to 5-HT in very similar, if not identical, ways. We conclude that if there are differences in 5-HT induced modulation between siphon and tail sensory neurons at the biophysical level, such differences are not strongly manifested at the level of changes in firing properties.
海兔的虹吸管和缩尾反射强度的调节部分涉及引发这些反射的感觉神经元的变化。对虹吸管和尾部感觉神经元调节的不同观察和实验共同促成了海兔学习和记忆机制的工作模型,但尚未对这两类感觉神经元的调节进行直接比较。本研究的目的是在相同实验条件下直接比较虹吸管和尾部感觉神经元之间的调节。具体而言,我们关注血清素对感觉神经元两种放电特性的影响:动作电位持续时间和兴奋性。我们在相同条件下将血清素(5-HT)施加于虹吸管和尾部感觉神经元,发现动作电位持续时间和兴奋性均显著增强。在同一标本中同时测试的虹吸管和尾部感觉神经元之间,这种增强在统计学上无显著差异。因此,这两类不同的感觉神经元对5-HT的反应方式非常相似,甚至可以说是相同的。我们得出结论,如果在生物物理水平上虹吸管和尾部感觉神经元之间5-HT诱导的调节存在差异,那么这种差异在放电特性变化水平上并不明显。