Panescu Dorin, Kroll Mark W, Brave Michael A
Annu Int Conf IEEE Eng Med Biol Soc. 2017 Jul;2017:2191-2196. doi: 10.1109/EMBC.2017.8037289.
The TASER conducted electrical weapon (CEW) delivers electrical pulses that can temporarily incapacitate subjects. For existing CEW models, we have previously presented the distribution of currents in tissues posterior to the sternum and their likelihood of triggering cardiac arrhythmias. New models, the eXperimental Rotating-Field (XRF) waveform CEW (in development) and the X2 CEW (released) have not been investigated. Both the XRF and X2 CEWs target a precise amount of delivered charge per pulse, 64 μC and 62 μC, respectively. The goal of this study was to numerically model the thoracic cage attenuation of currents and electric fields delivered by the new CEWs and to find whether the heart is shielded from the induction of any dangerous arrhythmias.
Finite element modeling (FEM) was used to approximate the current density and electric field strength in tissues around the thoracic cage. FEM boundary conditions were set to correspond to output waveforms of the new CEWs, the XRF and the X2. We analyzed a CEW dart deployment scenario that had both darts located over the anterior aspect of the sternum. We found that the sternum and thoracic cage provided significant attenuation of currents and electrical fields.
The sternum and the thoracic cage significantly attenuated currents and electric fields delivered by XRF and X2 CEWs. These tissues `shielded' the heart against potentially dangerous cardiac arrhythmias. The shorter durations and reduced amount of charged delivered by the XRF and the X2 CEWs resulted in increased cardiac safety margins.
泰瑟枪传导式电子武器(CEW)可发射电脉冲,能使目标对象暂时丧失行动能力。对于现有的CEW型号,我们之前已经给出了胸骨后方组织中的电流分布及其引发心律失常的可能性。新型号,即实验性旋转场(XRF)波形CEW(正在研发)和X2 CEW(已发布)尚未进行研究。XRF和X2 CEW每个脉冲的精确电荷量分别为64 μC和62 μC。本研究的目的是对新型CEW发射的电流和电场在胸廓中的衰减进行数值模拟,并确定心脏是否能免受任何危险心律失常的诱发。
采用有限元建模(FEM)来估算胸廓周围组织中的电流密度和电场强度。FEM边界条件设置为与新型CEW(XRF和X2)的输出波形相对应。我们分析了一种CEW镖部署场景,其中两个镖都位于胸骨前方。我们发现胸骨和胸廓对电流和电场有显著的衰减作用。
胸骨和胸廓显著衰减了XRF和X2 CEW发射的电流和电场。这些组织“保护”心脏免受潜在危险的心律失常影响。XRF和X2 CEW较短的持续时间和减少的电荷量输送导致心脏安全裕度增加。