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依赖活动的突触前易化增强为海兔经典条件反射的时间特异性提供了一种细胞机制。

Activity-dependent enhancement of presynaptic facilitation provides a cellular mechanism for the temporal specificity of classical conditioning in Aplysia.

作者信息

Clark G A, Hawkins R D, Kandel E R

机构信息

Psychology Department, Princeton University, New Jersey 08544, USA.

出版信息

Learn Mem. 1994 Nov-Dec;1(4):243-57.

Abstract

A hallmark of many forms of classical conditioning is a precise temporal specificity: Learning is optimal when the conditioned stimulus (CS) slightly precedes the unconditioned stimulus (US), but the learning is degraded at longer or backward intervals, consistent with the notion that conditioning involves learning about predictive relationships in the environment. To further examine the cellular mechanisms contributing to the temporal specificity of classical conditioning of the siphon-withdrawal response in Aplysia, we paired action potential activity in siphon sensory neurons (the neural CS) with tail nerve shock (the US) at three critical time points. We found that CS-US pairings at short (0.5 sec) forward intervals produced greater synaptic facilitation at sensorimotor connections than did either 0.5-sec backward pairings or longer (5 sec) forward pairings, as reflected in a differential increase in both the amplitude and rate of rise of the synaptic potential. In the same preparations, forward pairings also differentially reduced the sensory neuron afterhyperpolarization relative to backward pairings, suggesting that changes in synaptic efficacy were accompanied by temporally specific changes in ionic currents in the sensory neurons. Additional experiments demonstrated that short forward pairings of sensory cell activity and restricted applications of the neuromodulatory transmitter serotonin (normally released by the US) differentially enhanced action potential broadening in siphon sensory neurons, relative to backward pairings. Taken together, these results suggest that temporally specific synaptic enhancement engages both spike-width-dependent and spike-width-independent facilitatory processes and that activity-dependent enhancement of presynaptic facilitation may contribute to both the CS-US sequence and proximity requirements of conditioning.

摘要

许多形式的经典条件反射的一个标志是精确的时间特异性

当条件刺激(CS)略先于非条件刺激(US)时,学习效果最佳,但在较长或反向间隔时学习效果会下降,这与条件反射涉及了解环境中预测关系的观点一致。为了进一步研究促成海兔虹吸管收缩反应经典条件反射时间特异性的细胞机制,我们在三个关键时间点将虹吸管感觉神经元的动作电位活动(神经CS)与尾神经电击(US)配对。我们发现,短(0.5秒)正向间隔的CS-US配对在感觉运动连接上产生的突触易化比0.5秒反向配对或长(5秒)正向配对都更大,这体现在突触电位幅度和上升速率的差异增加上。在相同的标本中,相对于反向配对,正向配对还不同程度地减少了感觉神经元的超极化后电位,这表明突触效能的变化伴随着感觉神经元离子电流的时间特异性变化。额外的实验表明,相对于反向配对,感觉细胞活动的短正向配对和神经调节递质5-羟色胺(通常由US释放)的受限应用不同程度地增强了虹吸管感觉神经元动作电位的展宽。综合来看,这些结果表明,时间特异性突触增强涉及与峰宽相关和与峰宽无关的易化过程,并且突触前易化的活动依赖性增强可能有助于CS-US序列以及条件反射的接近性要求。

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