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Adaptive Electrical Stimulation to Improve In-Vitro Cell Growth

机译:自适应电刺激以改善体外细胞生长

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An adaptive system is used to stimulate electrically (In-Vitro) muscle vagina cells and epithelial rabbit bladder cells with external electrical stimulation ES. Waveform stimulation is synthesized from both: A specific known action potential or by a set of independent ionic potentials conforming a multi output system. Each ionic potential is the output of a set of FIR filters in which the coefficient adaptation is carried out by using a time varying step size normalized LMS (NLSM) algorithm. The adaptive system output stimulates in-vitro culture cells emulating biological neurotransmitters action. Electrical stimulation (ES) shows that cells under test grow faster than non-stimulated ones, observing bigger cell viability in stimulated cells than non stimulated. The objective of the experiment is to analyze the effect of external electrical stimulation ES on confluence and cell viability in culture cells by MTT (3-[4,5-Dimethylthiazol-2-Yl]-2,5-diphenyl-tetrazolium bromide) assays.
机译:自适应系统用于刺激电(体外)肌法阴道细胞和外膜兔膀胱细胞与外部电刺激。波形刺激由两者合成:特定的已知动作电位或通过符合多输出系统的一组独立的离子电位。每个离子电位是通过使用时变步长归一化LMS(NLSM)算法来执行系数自适应的一组FIR滤波器的输出。自适应系统输出刺激模拟生物神经递质的体外培养细胞。电刺激(ES)表明,被测细胞生长的生长率快于非刺激物,观察刺激细胞中的更大的细胞活力而不是非刺激。实验的目的是通过MTT(3- [4,5-二甲基噻唑-2-基] -2,5-二苯基 - 四唑溴铵)测定分析外部电刺激ES对培养细胞汇合和细胞活力的影响。

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