男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
World
Home / World / Kaleidoscope

Unlocking 'silent synapses' in the brain could improve learning ability

By Barry He | China Daily Global | Updated: 2023-03-03 10:42
Share
Share - WeChat

It is a melancholic fact of life that as we get older, it gets harder to learn new things. Adults typically have more trouble picking up new languages and musical instruments than children, however new research into the brain could offer insights into how to learn more efficiently with age. It has been discovered that so-called silent synapses in the brain are kept in reserve in case new things are needed to be learned in later life. These secretive neurons may be turned on artificially using electrical currents, to reinduce plasticity in the adult brain.

Learning results in the changes of neural pathways as new connections are made in the brain. Each connection between a nerve cell is called a synapse, where messages travel through gaps in the form of molecules called neurotransmitters.The human brain is the most complex organ on Earth, with more than 600 trillion synapses sending signals across a vast and intricate network.

Researchers at the Massachusetts Institute of Technology recently published an article in Nature magazine, stating that silent synapses remain present in adult brains as dormant neurons that lie ready and waiting, until the adult needs to learn something new.

Conventional neuroscience assumed that these disappeared from the brain as it matured, however, this new research suggests that not only they are present in adulthood, but they are present in large quantities. In adult mice, one-quarter of neural brain samples were found to contain silent synapses, with mice brains being sufficiently similar to human ones to the point where the same levels could be applied to our own minds.

In the future, being able to activate these silent synapses artificially could have significant implications for how we learn new skills. Researchers have confirmed that, in theory, it is possible to activate them to turn into functioning synapses, by releasing glutamate, along with a surge of electricity.

Within minutes of this happening, the synapse displayed signs of communicating with receptor molecules, and when the same treatment was applied to mature synapses, no response occurred. This indicated that it is possible to unsilence and improve plasticity of dormant brain tissue, at least in a laboratory setting. On the flipside, the experiment also confirmed the resilience of mature synapses to change, with neurons requiring a much higher threshold of electrical charge and glutamate to change. This makes sense when considering the importance of adult brains to maintain current important information without it being overwritten.

Proving that this level of tinkering is possible in the mammalian brain is a big jump in our understanding of the human brain. As well as offering a deeper understanding of how we can improve learning in later life, the research also promises new ways in which we can treat degenerative diseases of the brain such as Alzheimer's, where the capacity to function and learn is greatly impaired.

Such research is still very much in the early stages of development, however, and for now, any adults who wish to learn something new will have to achieve it through old-fashioned hard work, repetition and discipline.

Barry He is a London-based columnist for China Daily.

Most Viewed in 24 Hours
Top
BACK TO THE TOP
English
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
主站蜘蛛池模板: 耿马| 同江市| 宜昌市| 海晏县| 尚义县| 泽州县| 高雄县| 绥德县| 平湖市| 堆龙德庆县| 宁武县| 勃利县| 唐河县| 平潭县| 塔河县| 安庆市| 普宁市| 炎陵县| 辽源市| 山阴县| 水富县| 宣恩县| 二连浩特市| 安宁市| 原平市| 杭州市| 昆明市| 乐业县| 栾城县| 额济纳旗| 康平县| 谢通门县| 麻城市| 平湖市| 宁波市| 洪湖市| 清徐县| 海南省| 金溪县| 鄯善县| 湘潭县| 沁水县| 章丘市| 台安县| 仁怀市| 同心县| 收藏| 专栏| 河东区| 北票市| 东安县| 嘉鱼县| 连云港市| 青铜峡市| 黑河市| 克拉玛依市| 青海省| 平原县| 定西市| 会东县| 斗六市| 土默特右旗| 毕节市| 潢川县| 临颍县| 华宁县| 万载县| 锦州市| 高要市| 德保县| 蒙阴县| 赤壁市| 静安区| 黔江区| 公安县| 大方县| 平利县| 建平县| 札达县| 开远市| 德保县| 遂昌县|