Cook D G, Carew T J
Department of Psychology, Yale University, New Haven, Connecticut 06520.
J Neurosci. 1989 Sep;9(9):3097-106. doi: 10.1523/JNEUROSCI.09-09-03097.1989.
A basic goal in the neurosciences is to understand the cellular mechanisms underlying associative learning. The 2 major forms of associative learning are classical conditioning and operant conditioning. In recent years considerable progress has been made towards a cellular analysis of classical conditioning in a number of different preparations. In contrast, the cellular mechanisms underlying operant conditioning are poorly understood. Since the marine mollusc Aplysia has proved to be a powerful preparation for studying cellular and molecular mechanisms of a variety of forms of learning, including classical conditioning, we asked whether Aplysia might also be capable of exhibiting operant conditioning. In previous experiments we found that a naturally occurring behavior, the head-waving response of Aplysia, could be operantly conditioned (Cook and Carew, 1986). In the present paper we have carried out a quantitative analysis of the horizontal and vertical components of the head-waving response at the level of individual muscle groups. We have identified a discrete, bilateral band of neck muscles, the lateral columellar muscles (LCMs), whose electromyographic (EMG) activity is significantly correlated with the horizontal component of head-waving, the component modified by operant conditioning. Since head-waving is a complex behavioral response involving a variety of different muscle groups, using a restricted system such as the LCMs as an analog of the head-waving response will greatly facilitate a cellular analysis of operant conditioning in Aplysia.
神经科学的一个基本目标是了解联想学习背后的细胞机制。联想学习的两种主要形式是经典条件反射和操作性条件反射。近年来,在对多种不同实验准备中的经典条件反射进行细胞分析方面取得了相当大的进展。相比之下,人们对操作性条件反射背后的细胞机制了解甚少。由于海洋软体动物海兔已被证明是研究包括经典条件反射在内的多种学习形式的细胞和分子机制的有力实验准备,我们不禁要问海兔是否也能够表现出操作性条件反射。在之前的实验中,我们发现海兔一种自然发生行为——头部摆动反应——能够被操作性条件反射(库克和卡鲁,1986年)。在本文中,我们在个体肌肉群水平上对头部摆动反应的水平和垂直成分进行了定量分析。我们确定了一组离散的双侧颈部肌肉,即外侧小柱肌(LCMs),其肌电图(EMG)活动与头部摆动的水平成分显著相关,而这一成分会受到操作性条件反射的影响。由于头部摆动是一种涉及多种不同肌肉群的复杂行为反应,使用像外侧小柱肌这样的受限系统作为头部摆动反应的类似物,将极大地促进对海兔操作性条件反射的细胞分析。