Panescu Dorin, Kroll Mark W, Stratbucker Robert A
NewCardio, Inc., Santa Clara, CA, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:3191-4. doi: 10.1109/IEMBS.2009.5334538.
TASER conducted energy weapons (CEW) deliver electrical pulses that can temporarily incapacitate subjects. The goal of this paper is to analyze the distribution of TASER CEW currents in the heart and surrounding organs and to understand theoretical chances of triggering cardiac arrhythmias, of capturing the vagus and phrenic nerves and producing electroporation of skeletal muscle structures. The CEW operates in either probe mode or drive-stun (direct contact) mode. There is also a hybrid mode in which current is passed from a single probe to either or both of 2 drive-stun electrodes on the weapon, presumed to be in direct contact with the skin.
The models analyzed herein describe strength-duration thresholds for myocyte excitation and ventricular fibrillation (VF) induction. Finite element modeling (FEM) was used to approximate current density in the heart for worst-case TASER electrode placement. The FEMs theoretically estimated that maximum TASER CEW current densities in the heart and in neighboring organs are at safe levels. A 3-point deployment mode was compared to probe-mode deployment. The margins of safety for the 3-point deployment were estimated to be as high as or higher than for the probe-mode deployment.
Numerical modeling estimated that TASER CEWs were expected to be safe when deployed in 3-point mode. In drive-stun, probe-mode or 3-point deployments, the CEWs had high theoretically approximated safety margins for cardiac capture, VF, phrenic or vagus nerve capture and skeletal muscle damage by electroporation.
泰瑟传导能量武器(CEW)可释放电脉冲,能使目标对象暂时丧失行动能力。本文旨在分析泰瑟CEW电流在心脏及周围器官中的分布情况,并了解触发心律失常、刺激迷走神经和膈神经以及使骨骼肌结构发生电穿孔的理论可能性。CEW可在探针模式或驱动电击(直接接触)模式下运行。还有一种混合模式,即电流从单个探针传导至武器上的两个驱动电击电极中的一个或两个,假定电极与皮肤直接接触。
本文分析的模型描述了心肌细胞兴奋和心室颤动(VF)诱导的强度-时间阈值。采用有限元建模(FEM)来估算在泰瑟电极最坏放置情况下心脏中的电流密度。有限元模型从理论上估计,心脏及邻近器官中的泰瑟CEW最大电流密度处于安全水平。将三点部署模式与探针模式部署进行了比较。三点部署的安全裕度估计与探针模式部署的安全裕度一样高或更高。
数值模拟估计,泰瑟CEW以三点模式部署时预计是安全的。在驱动电击、探针模式或三点部署中,CEW在心脏捕获、VF、膈神经或迷走神经捕获以及电穿孔导致的骨骼肌损伤方面具有较高的理论近似安全裕度。