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利用功能神经影像学理解学习与记忆中的神经相互作用。

Understanding neural interactions in learning and memory using functional neuroimaging.

作者信息

McIntosh A R

机构信息

Rotman Research Institute of Baycrest Centre, Toronto, Ontario, Canada.

出版信息

Ann N Y Acad Sci. 1998 Nov 30;855:556-71. doi: 10.1111/j.1749-6632.1998.tb10625.x.

Abstract

Neuroimaging methods such as positron emission tomography (PET) and functional magnetic resonance imaging (fMRI) provide a unique opportunity to explore activity across the entire human brain in many different behaviors. An important additional feature is the ability to examine interacting neural systems using methods that focus on the covariances of activity. Two of these methods, partial least squares and structural equation modeling, are presented with specific examples. Shifting prefrontal and limbic interactions were observed in a working memory task for faces. In an episodic memory retrieval study, the activity of right prefrontal cortex was related to either memory search or successful retrieval depending on its interactions with other brain regions. This latter observation implies that regional activity must be evaluated within the neural context in which it occurs. The general hypothesis that learning and memory are emergent properties of network interactions is discussed, emphasizing that a region can play a different role across many functions and that role is governed by its interactions with anatomically related regions.

摘要

正电子发射断层扫描(PET)和功能磁共振成像(fMRI)等神经成像方法为探索人类大脑在多种不同行为中的活动提供了独特的机会。一个重要的附加特性是能够使用关注活动协方差的方法来检查相互作用的神经系统。本文通过具体示例介绍了其中两种方法,即偏最小二乘法和结构方程模型。在一项面部工作记忆任务中观察到前额叶和边缘系统的交互作用发生了变化。在一项情景记忆检索研究中,右侧前额叶皮层的活动与记忆搜索或成功检索有关,这取决于它与其他脑区的相互作用。后一观察结果表明,必须在神经背景中评估区域活动。本文讨论了学习和记忆是网络交互的涌现属性这一普遍假设,强调一个区域在多种功能中可以发挥不同的作用,且该作用由其与解剖学相关区域的相互作用所决定。

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