高频电信网络对认知功能的潜在影响:综述

Rashed Hasan Ratul, Maliha Tasnim, Hwang-Cheng Wang, Rashadul Hasan Badhon, M. T. Kawser
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摘要

被称为 5G-NR 的最新蜂窝技术旨在显著加快无线系统的速度并提高其效率。蜂窝通信技术的广泛使用和日益依赖引发了电信行业的一场革命。此外,5G 和 B5G 技术预计将利用更高的频率范围实现更快的数据传输和更低的通信延迟。因此,在各类设备和基础设施上传输信号时,公众会暴露在更高频率的电磁辐射中。对 5G NR 基站(gNodeB)的需求不断增加,加剧了公众对潜在负面健康影响的担忧。本研究回顾了有关电磁波对人体影响的最新研究,尤其侧重于这些影响如何影响认知功能。迄今为止,大多数研究都没有发现无处不在的移动通信会对认知功能产生显著影响。然而,目前的研究主要局限于 4G 技术,而暴露于更高频段的 5G 用户设备(UE)和基站对健康的影响仍有待探索。如果后续研究表明,暴露于高频无线网络会对认知功能产生重大影响,那么这些技术的部署和接受可能会面临挑战和限制。因此,此类调查对于确定下一代技术是否对个人不构成风险至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Potential Impact of a High-Frequency Telecommunication Network on Cognitive Functions: A Review
The latest cellular technology, known as 5G-NR, is intended to significantly speed up and improve the effectiveness of wireless systems. A revolution in the telecom industry has been sparked by the widespread use of and increased reliance on cellular communication technology. Moreover, 5G and B5G technologies are expected to utilize an even higher-frequency range to achieve faster data transmission and lower latency communication. Consequently, while transmitting signals across various types of equipment and infrastructure, the general public is exposed to much higher frequencies of electromagnetic radiation. The increasing need for 5G NR base stations (gNodeB) has heightened public anxiety over potential negative health impacts. This study reviews recent research on the effects of electromagnetic waves on humans, particularly focusing on how these effects influence cognitive functions. Most research to date has not found significant differences in cognitive performance due to ubiquitous mobile communications. However, current research has largely been limited to 4G technologies, and the health effects of exposure to 5G user equipment (UE) and base stations in higher-frequency bands remain unexplored. If subsequent research suggests that exposure to high-frequency wireless networks significantly impacts cognitive functions, the deployment and acceptance of these technologies may face challenges and constraints. Therefore, such investigations are crucial for determining whether next-generation technologies pose no risk to individuals.
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