Cogan Stuart F, Troyk Philip R, Ehrlich Julia, Plante Timothy D, Detlefsen David E
EIC Laboratories Inc, Norwood, MA 02062, USA.
IEEE Trans Biomed Eng. 2006 Feb;53(2):327-32. doi: 10.1109/TBME.2005.862572.
The use of potential biasing and biphasic, asymmetric current pulse waveforms to maximize the charge-injection capacity of activated iridium oxide (AIROF) microelectrodes used for neural stimulation is described. The waveforms retain overall zero net charge for the biphasic pulse, but employ an asymmetry in the current and pulse widths of each phase, with the second phase delivered at a lower current density for a longer period of time than the leading phase. This strategy minimizes polarization of the AIROF by the charge-balancing second phase and permits the use of a more positive anodic bias for cathodal-first pulsing or a more negative cathodic bias for anodal-first pulsing to maximize charge injection. Using 0.4-ms cathodal-first pulses, a maximum charge-injection capacity of 3.3 mC/cm2 was obtained with an 0.6-V bias (versus Ag/AgCl) and a pulse asymmetry of 1:8 in the cathodal and anodal pulse widths. For anodal-first pulsing, a maximum charge capacity of 9.6 mC/cm2 was obtained with an asymmetry of 1:3 at an 0.1-V bias. These measurements were made in vitro in carbonate-buffered saline using microelectrodes with a 2000 microm2 surface area.
本文描述了使用潜在的双相、不对称电流脉冲波形来最大化用于神经刺激的活性氧化铱(AIROF)微电极的电荷注入能力。对于双相脉冲,这些波形的净电荷总体保持为零,但每个相位的电流和脉冲宽度存在不对称性,第二相位以比领先相位更低的电流密度持续更长时间。这种策略通过电荷平衡的第二相位将AIROF的极化降至最低,并允许在阴极优先脉冲时使用更正的阳极偏压,或在阳极优先脉冲时使用更负的阴极偏压,以最大化电荷注入。使用0.4毫秒的阴极优先脉冲,在0.6伏偏压(相对于Ag/AgCl)和阴极与阳极脉冲宽度1:8的脉冲不对称性下,获得了3.3 mC/cm2的最大电荷注入能力。对于阳极优先脉冲,在0.1伏偏压和1:3的不对称性下,获得了9.6 mC/cm2的最大电荷容量。这些测量是在体外碳酸盐缓冲盐水中使用表面积为2000平方微米的微电极进行的。