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Optimizing Total Energy Delivered in Nanosecond Pulses for Triggering Apoptosis in Cultured Cells

机译:优化纳秒脉冲中传递的总能量以触发培养细胞的凋亡

摘要

An optimization of electrical characteristics for treatments of tumor or other abnormal cells in culture with sub-microsecond, high-electric field electrical pulses is disclosed. The voltages, pulse widths, and number of pulses are chosen such that the treatment energy is 10-20 J/mL. That is, U=n*Δt*V*I/volume is 10-20 J/mL, in which n is the number of pulses, Δt is the duration of each pulse, V is the voltage, I is current, and volume is the area of parallel electrodes times the distance between them. V divided by the distance between the electrodes can be in an effective range of 6 kV/cm to 30 kV/cm, 60 kV/cm, 100 kV/cm, or higher intensities. Rows of needle electrodes, blade electrodes, or other configurations of electrodes can approximate parallel electrodes.
机译:公开了用于用亚微秒,高电场电脉冲治疗培养物中的肿瘤或其他异常细胞的电特性的优化。选择电压,脉冲宽度和脉冲数,以使治疗能量为10-20 J / mL。也就是说,U = n *Δt* V * I /体积是​​10-20 J / mL,其中n是脉冲数,Δt是每个脉冲的持续时间,V是电压,I是电流和体积是平行电极的面积乘以它们之间的距离。 V除以电极之间的距离可以在6kV / cm至30kV / cm,60kV / cm,100kV / cm或更高强度的有效范围内。针电极行,刀片电极行或其他电极配置可以近似平行电极。

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