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Single Oscillating Bubble from Radiofrequency Fiber Electrode

机译:来自射频纤维电极的单振荡泡沫

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The radiofrequency (RF) power in the 0.3~30 MHz band is often used for coagulation, ablation, and modification of tissues in medicine while in the lower frequency band both shock waves and cavitation may occur, which has found applications in lithotripsy for stone fragmentation and water purification. In this study, we demonstrate that single oscillating bubble is produced at the electrode tip in cell culture medium, which avoids the random inception of cavitation in liquid. With high-speed image recordings and Fast Fourier Transform (FFT) spectrum analysis, the frequency of the bubble oscillations is found to be dependent on the driven radio frequency, electrode diameter and the supplied voltage. With microelectrodes that are incorporated into flexible fibers (2-6 Fr), sustained oscillation is generated in the frequency range of 5.7-17 kHz. The oscillation frequency decreases with the radio frequency and electrode diameter, while an optimum voltage exists to reach maximum frequency of bubble oscillation. The RF power supply also offers flexibility to control the bubble dynamics with different voltage waveforms, duty cycles and pulse repetition rate.
机译:0.3〜30MHz带中的射频(RF)功率通常用于医学中的组织的凝结,消融和修饰,而在较低的频带中可能发生冲击波和空化,这在碎石碎石碎裂中发现了应用中的应用和净水。在该研究中,我们证明在细胞培养基中的电极尖端中产生单个振荡气泡,这避免了液体中的空化的随机终止。利用高速图像录制和快速傅立叶变换(FFT)频谱分析,发现气泡振荡的频率取决于从动射频,电极直径和所提供的电压。对于掺入柔性纤维(2-6FR)的微电极,在5.7-17kHz的频率范围内产生持续振荡。振荡频率随着射频和电极直径而减小,而存在最佳电压以达到气泡振荡的最大频率。 RF电源还提供灵活性,可以灵活地控制具有不同电压波形,占空比和脉冲重复率的泡沫动态。

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