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Electroconvulsive therapy (ECT) during pregnancy: quantifying and assessing the electric field strength inside the foetal brain

机译:怀孕期间的电惊厥疗法(ECT):量化和评估胎儿脑内的电场强度

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摘要

Electroconvulsive therapy (ECT) is an effective treatment option for severe mental illness during pregnancy. However, there is little knowledge about the amount of electric field produced inside the foetus, which is important to understand the effects of ECT on the foetal excitable tissues. Thus, in this paper, the electric field strength inside the foetus was computed and compared to the basic restriction of the International Commission for Non-Ionizing Radiation Protection (ICNIRP). A computational human phantom representing a 30-weeks pregnant female, four types of electrode placements and a range of stimulus pulse width (0.25 ms–2 ms) and frequency (10 Hz–140 Hz) were used to compute the electric field inside the foetus. A linear relationship between the maximum electric field inside the foetal brain and the electrode current was derived. The results suggest that, considering the maximum current output, pulse width, and frequency range of constant-current ECT devices, the electric field produced inside the foetal brain is most likely below the ICNIRP basic restriction. This is based on the practical scenario of a 30-weeks foetus with a bottom-up and head-down foetal position and the mother taller than 1.62 m.
机译:电惊厥疗法(ECT)是妊娠期间严重精神疾病的有效治疗选择。但是,关于胎儿内部产生的电场量的知识很少,这对于理解ECT对胎儿可兴奋性组织的影响很重要。因此,在本文中,计算了胎儿内部的电场强度,并将其与国际非电离辐射防护委员会(ICNIRP)的基本限制进行了比较。代表30周怀孕女性的计算人体模型,四种类型的电极放置以及一定范围的刺激脉冲宽度(0.25 ms–2 ms)和频率(10 Hz–140 Hz)用于计算胎儿内部的电场。得出胎儿脑内最大电场与电极电流之间的线性关系。结果表明,考虑到最大电流输出,恒定电流ECT器件的脉冲宽度和频率范围,胎儿大脑内部产生的电场很可能低于ICNIRP基本限制。这是基于一个实际情况,即一个30周的胎儿,其胎儿的位置由下而上和朝下,母亲的身高超过1.62μm。

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