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区分自我刺激的决定因素。

Dissociating the determinants of self-stimulation.

作者信息

Atrens D M, Sinden J D, Hunt G E

出版信息

Physiol Behav. 1983 Dec;31(6):787-99. doi: 10.1016/0031-9384(83)90275-5.

Abstract

Four experiments were conducted to elucidate the determinants of the initiation of and escape from electrical stimulation of the lateral hypothalamus under several different reinforcement schedules. The first experiment of this series used correlational and factor analytic techniques to show that, under continuous reinforcement, the vigour of initiation is determined more by forcement than by positive reinforcement. Forcement is defined as all of the performance changes directly elicited and potentiated by the stimulation. Escape is determined by adaptation of positive reinforcement, not by negative reinforcement or aversion. Continuous reinforcement schedules are, therefore, not appropriate for studying either the positive or negative reinforcement produced by brain stimulation. The second experiment used fixed-interval reinforcement schedules to eliminate the effects of forcement on initiation and adaptation of positive reinforcement on escape. Parametric manipulations indicate that activity in the positive reinforcement and escape systems is a simple function of stimulation charge. The combination of parameters which make up a given charge is of relatively little importance. However, the positive reinforcement system becomes maximally activated at far lower charges than does the escape system. The third experiment used a T-maze technique to show that, after 5 sec, anterior hypothalamic stimulation becomes negatively reinforcing, but posterior hypothalamic stimulation does not. Since the escape from posterior hypothalamic stimulation on a fixed-interval schedule can be dissociated from both negative reinforcement and adaptation of positive reinforcement, it is suggested that such escape is reinforced by a positive process triggered by the offset of stimulation (OFF positive reinforcement). The fourth experiment showed that stimulation trains longer than 10 sec are significantly less positively reinforcing than much shorter trains. This reduction in positive reinforcement confirms the development of negative reinforcement in long trains of hypothalamic stimulation, even at posterior electrodes. Negative reinforcement appears to be as general a property of hypothalamic stimulation as is positive reinforcement. Thus, depending on the reinforcement schedule and electrode site, the initiation of lateral hypothalamic stimulation may be determined by ON positive reinforcement, OFF positive reinforcement and forcement. Escape may be determined by OFF positive reinforcement, adaptation of positive reinforcement and negative reinforcement.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

我们进行了四项实验,以阐明在几种不同的强化程序下,外侧下丘脑电刺激的启动和逃避的决定因素。本系列的第一个实验使用相关分析和因素分析技术表明,在连续强化条件下,启动的活力更多地由强制作用决定,而非正强化。强制作用被定义为刺激直接引发和增强的所有行为变化。逃避由正强化的适应性决定,而非负强化或厌恶。因此,连续强化程序不适用于研究脑刺激产生的正强化或负强化。第二个实验使用固定间隔强化程序,以消除强制作用对启动的影响以及正强化的适应性对逃避的影响。参数操作表明,正强化和逃避系统中的活动是刺激电荷的简单函数。构成给定电荷的参数组合相对不太重要。然而,正强化系统在远低于逃避系统的电荷水平时就会达到最大激活。第三个实验使用T迷宫技术表明,5秒后,下丘脑前部刺激变为负强化,但下丘脑后部刺激则不然。由于在固定间隔程序下从下丘脑后部刺激的逃避可以与负强化和正强化的适应性分离,因此有人提出这种逃避是由刺激停止触发的正性过程(关闭正强化)所强化的。第四个实验表明,超过10秒的刺激序列比短得多的序列的正强化作用明显更小。这种正强化作用的降低证实了在长时间的下丘脑刺激序列中负强化的发展,即使在后部电极处也是如此。负强化似乎与正强化一样,是下丘脑刺激的普遍特性。因此,根据强化程序和电极位置,外侧下丘脑刺激的启动可能由开启正强化、关闭正强化和强制作用决定。逃避可能由关闭正强化、正强化的适应性和负强化决定。(摘要截选至400字)

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