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脉冲参数对人体头部暴露在电磁脉冲下的温度分布的影响。

Effects of pulse parameters on the temperature distribution of a human head exposed to the electromagnetic pulse.

机构信息

Faculty of Automation and Information Engineering, Xi'an University of Technology, Xi'an, 710048, China.

Department of Radiation Biology, Air Force Medical University, Xi'an, 710032, China.

出版信息

Sci Rep. 2021 Nov 25;11(1):22938. doi: 10.1038/s41598-021-02396-8.

Abstract

The presence of blood-brain barrier (BBB) is a major obstacle to effectively deliver therapeutics to the central nervous system (CNS); hence, the outcomes following treatment of CNS diseases remain unsatisfactory. Fortunately, electromagnetic pulses (EMPs) provide a non-invasive method to locally open the BBB. To obtain the optimal pulse parameters of EMP-induced BBB opening to ensure the effective delivery of CNS drugs, it is particularly important to measure and assess the effects of pulse parameters on the temperature distribution in the human head exposed to EMPs. In this paper, the specific anthropomorphic mannequin phantom was adopted and the temperature increase in the human head induced by EMPs of different parameters was estimated in the software "COMSOL Multiphysics". The results show that the temperature distribution profiles with different EMP parameters have almost similar characteristics, the highest temperature increase values in the human head are positively correlated with variations of EMP parameters, and potential hazards to the human head may occur when EMP parameters exceed the safety threshold, which will provide theoretical basis for seeking the optimal EMP parameters to open the BBB to the greatest extent within a safe range.

摘要

血脑屏障(BBB)的存在是将治疗药物有效递送到中枢神经系统(CNS)的主要障碍;因此,治疗 CNS 疾病的结果仍然不尽如人意。幸运的是,电磁脉冲(EMP)提供了一种非侵入性的局部打开 BBB 的方法。为了获得 EMP 诱导的 BBB 开放的最佳脉冲参数,以确保 CNS 药物的有效递送,特别重要的是测量和评估脉冲参数对暴露于 EMP 的人头内温度分布的影响。在本文中,采用了特定的拟人模型体模,并在“COMSOL Multiphysics”软件中估计了不同参数的 EMP 引起的人头内的温升。结果表明,具有不同 EMP 参数的温度分布曲线具有几乎相似的特征,人头内的最高温升值与 EMP 参数的变化呈正相关,并且当 EMP 参数超过安全阈值时,人头可能会出现潜在危险,这将为在安全范围内最大限度地寻找打开 BBB 的最佳 EMP 参数提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/964e/8617282/f2199a582157/41598_2021_2396_Fig1_HTML.jpg

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