Hefei National Laboratory for Physical Sciences at the Microscale, Neurodegenerative Disorder Research Center, CAS Key Laboratory of Brain Function and Disease, School of Life Sciences, Eye Center, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Huangshan Road 443, Hefei, 230026, Anhui, China.
Institute of Physical Science and Information Technology, Anhui University, Hefei, 230601, Anhui, China.
Eur Radiol. 2022 Aug;32(8):5596-5605. doi: 10.1007/s00330-022-08677-8. Epub 2022 Mar 16.
Higher static magnetic field (SMF) enables higher imaging capability in magnetic resonance imaging (MRI), which encourages the development of ultra-high field MRIs above 20 T with a prerequisite for safety issues. However, animal tests of ≥ 20 T SMF exposure are very limited. The objective of the current study is to evaluate mice behaviour consequences of 3.5-23.0 T SMF exposure.
We systematically examined 112 mice for their short- and long-term behaviour responses to a 2-h exposure of 3.5-23.0 T SMFs. Locomotor activity and cognitive functions were measured by five behaviour tests, including balance beam, open field, elevated plus maze, three-chamber social recognition, and Morris water maze tests.
Besides the transient short-term impairment of the sense of balance and locomotor activity, the 3.5-23.0 T SMFs did not have long-term negative effects on mice locomotion, anxiety level, social behaviour, or memory. In contrast, we observed anxiolytic effects and positive effects on social and spatial memory of SMFs, which is likely correlated with the significantly increased CaMKII level in the hippocampus region of high SMF-treated mice.
Our study showed that the short exposures to high-field SMFs up to 23.0 T have negligible side effects on healthy mice and may even have beneficial outcomes in mice mood and memory, which is pertinent to the future medical application of ultra-high field SMFs in MRIs and beyond.
• Short-term exposure to magnetic fields up to 23.0 T is safe for mice. • High-field static magnetic field exposure transiently reduced mice locomotion. • High-field static magnetic field enhances memory while reduces the anxiety level.
较高的静态磁场(SMF)能够提高磁共振成像(MRI)的成像能力,这鼓励了超过 20T 的超高场 MRI 的发展,前提是要解决安全问题。然而,动物实验中≥20T SMF 暴露的实验非常有限。本研究的目的是评估 3.5-23.0T SMF 暴露对小鼠行为的影响。
我们系统地检查了 112 只小鼠,以评估它们对 2 小时 3.5-23.0T SMF 暴露的短期和长期行为反应。通过五项行为测试,包括平衡木、旷场、高架十字迷宫、三箱社交识别和 Morris 水迷宫测试,测量了运动活性和认知功能。
除了平衡感和运动活性的短暂短期损害外,3.5-23.0T SMF 对小鼠的运动、焦虑水平、社交行为或记忆没有长期的负面影响。相反,我们观察到 SMF 具有抗焦虑作用,并对社交和空间记忆产生积极影响,这可能与高 SMF 处理小鼠海马区 CaMKII 水平的显著增加有关。
我们的研究表明,短暂暴露于高达 23.0T 的强磁场对健康小鼠几乎没有副作用,甚至可能对小鼠的情绪和记忆产生有益的影响,这与超高场 SMF 在 MRI 及其他领域的未来医学应用相关。
短期暴露于磁场高达 23.0T 对小鼠是安全的。
强磁场暴露会短暂降低小鼠的运动活性。
强磁场增强记忆,同时降低焦虑水平。