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氧气:即使在健康的年轻个体中,也是影响情景记忆表现的限速因素。

Oxygen: The Rate-Limiting Factor for Episodic Memory Performance, Even in Healthy Young Individuals.

机构信息

The Sagol Center for Hyperbaric Medicine and Research, Shamir (Assaf-Harofeh) Medical Center, Zerifin 70300, Israel.

Department of Psychology, Bar Ilan University, Ramat-Gan 5290002, Israel.

出版信息

Biomolecules. 2020 Sep 17;10(9):1328. doi: 10.3390/biom10091328.

Abstract

Cognition is a crucial element of human functionality. Like any other physical capability, cognition is both enabled and limited by tissue biology. The aim of this study was to investigate whether oxygen is a rate-limiting factor for any of the main cognitive domains in healthy young individuals. Fifty-six subjects were randomly assigned to either increased oxygen supply using hyperbaric oxygen (two atmospheres of 100% oxygen) or to a "sham" treatment (a simulation of increased pressure in a chamber with normal air). While in the chamber, participants went through a battery of tests evaluating the major cognitive domains including information processing speed, episodic memory, working memory, cognitive flexibility, and attention. The results demonstrated that from all evaluated cognitive domains, a statistically significant improvement was found in the episodic memory of the hyper-oxygenized group. The hyper-oxygenized group demonstrated a better learning curve and a higher resilience to interference. To conclude, oxygen delivery is a rate-limiting factor for memory function even in healthy young individuals under normal conditions. Understanding the biological limitations of our cognitive functions is important for future development of interventional tools that can be used in daily clinical practice.

摘要

认知是人类功能的关键要素。与任何其他身体机能一样,认知既受组织生物学的支持,也受其限制。本研究旨在探讨氧气是否是健康年轻个体主要认知领域的限速因素。56 名受试者被随机分配到高压氧(两个大气压的 100%氧气)或“假”治疗(在充满正常空气的室内模拟增加气压)以增加氧气供应。在室内,参与者接受了一系列测试,评估了主要认知领域,包括信息处理速度、情景记忆、工作记忆、认知灵活性和注意力。结果表明,在所有评估的认知领域中,超氧组的情景记忆有显著改善。超氧组表现出更好的学习曲线和更高的抗干扰能力。总之,即使在正常条件下,健康的年轻个体的氧输送也是记忆功能的限速因素。了解我们认知功能的生物学限制对于开发可在日常临床实践中使用的干预工具的未来发展非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7f1/7563755/63cb4c7cc1fc/biomolecules-10-01328-g001.jpg

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