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睡眠、梦境的机制及其与学习记忆的关系 被引量:6
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作者 韩中胜 史均翰 《生理科学进展》 CAS CSCD 北大核心 2013年第6期409-414,共6页
睡眠是动物界的共同生理特征之一,表现为可逆性意识状态丧失。在人类每日的睡眠时间随年龄的增长而递减,总睡眠时间在一个人大约占去一生时间的三分之一。人的睡眠有很明显的周期性和时相性,其过程主要由体内固有的生物钟直接控制,但也... 睡眠是动物界的共同生理特征之一,表现为可逆性意识状态丧失。在人类每日的睡眠时间随年龄的增长而递减,总睡眠时间在一个人大约占去一生时间的三分之一。人的睡眠有很明显的周期性和时相性,其过程主要由体内固有的生物钟直接控制,但也受外界自然环境特别是光线强弱持续变化的调节。睡眠的生物学机理仍在研究探讨之中。梦境是伴随睡眠的一种神经心理活动过程,人人都有体验,大约和睡眠一样历史久远。但对其产生原理和生物学意义也是众说纷纭,没有共识。近年来的研究结果表明,睡眠的核心功能之一是进一步加工和处理当日大脑所接受的新信息,并将其选择性地转化为可长期保存的信息,储存在相应的大脑皮层功能区,即所谓的记忆信息巩固过程。本文简介睡眠和梦境这一对截然不同却又难以分开的生命现象的神经生理学基础、功能意义以及这方面的研究进展,并重点介绍睡眠期间所发生的学习记忆活动的研究进展。 展开更多
关键词 睡眠 梦境 记忆信息巩固
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Cathepsins in neuronal plasticity
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作者 Amanda Phuong Tran Jerry Silver 《Neural Regeneration Research》 SCIE CAS CSCD 2021年第1期26-35,共10页
Proteases comprise a variety of enzymes defined by their ability to catalytically hydrolyze the peptide bonds of other proteins,resulting in protein lysis.Cathepsins,specifically,encompass a class of at least twenty p... Proteases comprise a variety of enzymes defined by their ability to catalytically hydrolyze the peptide bonds of other proteins,resulting in protein lysis.Cathepsins,specifically,encompass a class of at least twenty proteases with potent endopeptidase activity.They are located subcellularly in lysosomes,organelles responsible for the cell’s degradative and autophagic processes,and are vital for normal lysosomal function.Although cathepsins are involved in a multitude of cell signaling activities,this chapter will focus on the role of cathepsins(with a special emphasis on Cathepsin B)in neuronal plasticity.We will broadly define what is known about regulation of cathepsins in the central nervous system and compare this with their dysregulation after injury or disease.Importantly,we will delineate what is currently known about the role of cathepsins in axon regeneration and plasticity after spinal cord injury.It is well established that normal cathepsin activity is integral to the function of lysosomes.Without normal lysosomal function,autophagy and other homeostatic cellular processes become dysregulated resulting in axon dystrophy.Furthermore,controlled activation of cathepsins at specialized neuronal structures such as axonal growth cones and dendritic spines have been positively implicated in their plasticity.This chapter will end with a perspective on the consequences of cathepsin dysregulation versus controlled,localized regulation to clarify how cathepsins can contribute to both neuronal plasticity and neurodegeneration. 展开更多
关键词 axon regeneration CATHEPSIN CSPGs extracellular matrix growth cone LYSOSOMES neuronal plasticity PROTEASE remodeling spinal cord injury SYNAPTOGENESIS
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