Department of Neuroscience, School of Advanced Technologies in Medicine, Iran University of Medical Sciences, Tehran, Iran.
Department of Neuroscience, School of Science and Advanced Technologies in Medicine, Hamadan University of Medical Sciences, Hamadan, Iran.
J Physiol Sci. 2023 Dec 6;73(1):33. doi: 10.1186/s12576-023-00893-1.
Plasticity is a common feature of synapses that is stated in different ways and occurs through several mechanisms. The regular action of the brain needs to be balanced in several neuronal and synaptic features, one of which is synaptic plasticity. The different homeostatic processes, including the balance between excitation/inhibition or homeostasis of synaptic weights at the single-neuron level, may obtain this. Homosynaptic Hebbian-type plasticity causes associative alterations of synapses. Both homosynaptic and heterosynaptic plasticity characterize the corresponding aspects of adjustable synapses, and both are essential for the regular action of neural systems and their plastic synapses.In this review, we will compare homo- and heterosynaptic plasticity and the main factors affecting the direction of plastic changes. This review paper will also discuss the diverse functions of the different kinds of heterosynaptic plasticity and their properties. We argue that a complementary system of heterosynaptic plasticity demonstrates an essential cellular constituent for homeostatic modulation of synaptic weights and neuronal activity.
可塑性是突触的共同特征,它以不同的方式表述,并通过几种机制发生。大脑的正常活动需要在几个神经元和突触特征中保持平衡,其中之一是突触可塑性。不同的动态平衡过程,包括在单个神经元水平上兴奋/抑制的平衡或突触权重的动态平衡,可能会实现这一点。同型突触海伯型可塑性导致突触的联想性改变。同型突触和异型突触可塑性都描述了可调突触的相应方面,两者对于神经网络及其可塑突触的正常活动都是必不可少的。在这篇综述中,我们将比较同型和异型突触可塑性以及影响可塑性变化方向的主要因素。本文还将讨论不同类型的异型突触可塑性的多种功能及其特性。我们认为,异型突触可塑性的互补系统为突触权重和神经元活动的动态平衡调节提供了一个重要的细胞组成部分。