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Effects of titanium can electrode size and shock history on defibrillation electrode impedance

机译:钛罐电极尺寸和冲击史对除颤电极阻抗的影响

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As the size of the implantable defibrillator can used as a defibrillation electrode decreases, changes in circuit impedance may occur for a given single-lead to can electrode system. In addition, increased electrode anodization due to the higher current densities at the can may cause increased electrode impedance. The relationship between can shadow area and circuit impedance was quantified in a saline tank system using 100 monophasic anodal shocks. Decreasing the shadow area of the can by a factor of 2 increased circuit impedance by 18%. The impedance of a plate electrode was 1.6/spl plusmn/0.3 /spl Omega/ higher than a can electrode with the same shadow area. Anodization of the titanium electrode after 100 shocks resulted in a 6% increase in circuit impedance for the smallest electrodes. Decreased can size resulted in an increase in circuit impedance and anodization, but the effect of increased circuit impedance on defibrillation efficacy is unknown.
机译:随着可植入除颤器的尺寸可以用作除颤电极的减小,可以发生电路阻抗的变化,用于给定的单引线可以电极系统。 另外,由于可以引起更高的电流密度可能导致电极阻抗的电极阳极增加增加。 可以使用100单一的阳极冲击量在盐罐系统中量化罐影子区域和电路阻抗之间的关系。 将云区的阴影区域减少2倍,电路阻抗增加18%。 板电极的阻抗为1.6 / SPL PLUNMN / 0.3 / SPLω/高于具有相同阴影区域的罐电极。 100次冲击后钛电极的阳极氧化导致最小电极的电路阻抗增加6%。 尺寸减小导致电路阻抗和阳极氧化的增加,但是电路阻抗对除颤功效的增加是未知的。

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