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Scaling Relationship of In Vivo Muscle Contraction Strengthof Rabbits Exposed to High-Frequency Nanosecond Pulse Bursts

机译:体内肌肉收缩强度的比例关系高频纳秒脉冲群暴露的兔群

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摘要

We studied the influence of various parameters of high-frequency nanosecond pulse bursts on the strength of rabbit muscle contractions. Ten unipolar high-frequency pulse bursts with various field intensities E (1 kV/cm, 4 kV/cm, and 8 kV/cm), intraburst frequencies f (10 kHz, 100 kHz, and 1 MHz), and intraburst pulse numbers N (1, 10, and 100) were applied using a pair of plate electrodes to the surface skin of the rabbits’ biceps femoris, and the acceleration signal of muscle contraction near the electrode was measured using a 3-axis acceleration sensor. A time- and frequency-domain analysis of the acceleration signals showed that the peak value of the signal increases with the increasing strength of the pulse burst and that the frequency spectra of the signals measured under various pulse bursts have characteristic frequencies (at approximately 2 Hz, 32 Hz, 45 Hz, and 55 Hz). Furthermore, we processed the data through multivariate nonlinear regression analysis and variance analysis and determined that the peak value of the signal scales with the logarithm to the base 10 of ENx, where x is a value that scales with the logarithm to the base 10 of intraburst frequency (f). These results indicate that for high-frequency nanosecond pulse treatment of solid tumors in or near muscles, when the field strength is relatively high, the intraburst frequency and the intraburst pulse number require appropriate selection to limit the strength of muscle contraction as much as possible.
机译:我们研究了高频纳秒脉冲爆发的各种参数对兔肌肉收缩强度的影响。十个具有不同场强E(1 kV / cm,4 kV / cm和8 kV / cm),突发内频率f(10 kHz,100 kHz和1 MHz)的单极高频脉冲突发,突发内脉冲数N使用一对板状电极将(1、10和100)施加于股二头肌的表皮,并使用3轴加速度传感器测量电极附近的肌肉收缩的加速度信号。加速度信号的时域和频域分析表明,信号的峰值随脉冲猝发强度的增加而增加,并且在各种脉冲猝发下测得的信号频谱具有特征频率(大约2 Hz) ,32 Hz,45 Hz和55 Hz)。此外,我们通过多元非线性回归分析和方差分析处理了数据,并确定信号的峰值与EN x 的以10为底的对数成比例,其中x是与对内爆发频率(f)以10为底的对数。这些结果表明,对于肌肉中或附近的实体瘤的高频纳秒脉冲治疗,当场强相对较高时,需要适当选择爆发内频率和爆发内脉冲数以尽可能地限制肌肉收缩的强度。

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