Nguyen Thoa, Braeken Dries, Musa Silke, Krylychkina Olga, Bartic Carmen, Gielen Georges, Eberle Wolfgang
KULeuven and Imec, Belgium.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:2735-8. doi: 10.1109/IEMBS.2010.5626574.
Closed loop systems, in which stimulation parameters are adjusted according to recorded signals would reduce the occurrence of side effects of stimulation and broaden current therapeutic options. As a step towards a closed-loop clinical system, we developed a single electrode stimulation / recording system for an in vitro microelectrode array. The system was used in vitro to simultaneously stimulate and record cardiac cells. Results indicated that stimulation artifacts depend on the distance between recording electrode and stimulating electrode and on the voltage amplitude. No artifact reduction algorithm was required for detecting cardiac action potentials 2ms after stimulation if the stimulation pulses were less than or equal to ± 1.5 V, and the distance from stimulation site was more than 200 µm. Cardiac signal propagation was also investigated with this system.
闭环系统可根据记录信号调整刺激参数,这将减少刺激副作用的发生,并拓宽当前的治疗选择。作为迈向闭环临床系统的一步,我们开发了一种用于体外微电极阵列的单电极刺激/记录系统。该系统在体外用于同时刺激和记录心脏细胞。结果表明,刺激伪迹取决于记录电极与刺激电极之间的距离以及电压幅度。如果刺激脉冲小于或等于±1.5V,且距刺激部位的距离大于200μm,则在刺激后2ms检测心脏动作电位时无需伪迹减少算法。还使用该系统研究了心脏信号的传播。