Biological responses to terahertz radiation with different power density in primary hippocampal neurons

Author:

Zhao LiORCID,Yi Ruhan,Liu Sun,Chi Yunliang,Tan Shengzhi,Dong Ji,Wang Hui,Zhang Jing,Wang Haoyu,Xu Xinping,Yao Binwei,Wang Bo,Peng Ruiyun

Abstract

Terahertz (THz) radiation is a valuable imaging and sensing tool which is widely used in industry and medicine. However, it biological effects including genotoxicity and cytotoxicity are lacking of research, particularly on the nervous system. In this study, we investigated how terahertz radiation with 10mW (0.12 THz) and 50 mW (0.157 THz) would affect the morphology, cell growth and function of rat hippocampal neurons in vitro.

Funder

the National Defense Technology Innovation Special Zone

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference31 articles.

1. The interaction between terahertz radiation and biological tissue;SW Smye;Phy MedBiol,2001

2. Terahertz wave accelerates DNA unwinding: A molecular dynamics simulation study.;K Wu;J Phys Chem Lett,2020

3. Terahertz wave enhances permeability of the voltage-gated calcium channel;Y Li;J Am Chem Soc,2021

4. Behavioral effect of terahertz waves in male mice;NP Bondar;B Exp Biol Med,2008

5. Effect of terahertz electromagnetic waves on neurons systems;AS Olshevskaya;2008 IEEE Region 8 International Conference on Computational Technologies in Electrical and Electronics Engineering,2008

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