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METHOD FOR PREDICTING EFFICACY OF FUNCTIONAL CORRECTION OF HEMODYNAMICS IN COMBINED ELECTROMAGNETIC STIMULATION

机译:组合电磁激励中血流动力学功能校正的预测方法

摘要

The method for predicting the efficacy of the functional correction of the hemodynamics by the conductivity of the biologically active point (BAP) comprises pressing the probe with the point electrode to the selected BAP. The opposite end of the probe is connected to the positive pole of the power supply of 1.2-12 µA and 1.5-5 V. The negative pole of the power supply is connected with arm electrode pressed at the site of pericardium meridian containing the selected BAP. The current in BAP is measured. Multielectrode device of i position is then constructed of several probes with the point electrodes covering several BAPs. The area of the pericardium meridian is then exposed to the constant magnetic field of 5 T and the current and the time of current change in each BAP covered by i position of multielectrode. Separately, the same area is exposed to the signal of superhigh frequency (SHF) with the output of less than 10 mW. Rearranging of the frequency of SHF signal, the effective area of transcutaneous elecgtromagnetic stimulation of pericardium meridian is defined by the maximal and the most rapid current deviation in comparison with the initial value. The efficacy of the functional correction of the hemodynamics by the combined or separate treatment with the constant magnetic field and the SHF signal of the obtained frequency is predicted by the intensity, pattern and rate of the current changes upon the exposure to the factors stated. Based on these data, the course of the functional correction of the hemodynamics is provided by exposure of the selected skin area to the factors stated above with the positive outcome according to the medical indications.
机译:通过生物活性点(BAP)的电导率预测血液动力学功能校正功效的方法包括将带有点电极的探针压到所选的BAP。探头的另一端连接到1.2-12 µA和1.5-5 V的电源正极。电源的负极与手臂电极相连,该手臂电极压在包含所选BAP的心包子午线位置。测量BAP中的电流。然后,由多个探针构成i位置的多电极设备,其点电极覆盖多个BAP。心包子午线的区域然后暴露于5 T的恒定磁场,电流和电流变化的时间在每个BAP中被i电极覆盖。另外,同一区域会暴露于输出小于10 mW的超高频(SHF)信号。重新排列SHF信号的频率,通过与初始值相比最大和最快的电流偏差来定义经皮心电经皮电刺激的有效面积。通过在暴露于所述因素时电流变化的强度,模式和速率来预测通过用恒定磁场和所获得频率的SHF信号进行联合或单独治疗对血液动力学进行功能校正的功效。基于这些数据,通过将所选皮肤区域暴露于上述因素,根据医学适应症得出积极的结果,可以提供血液动力学功能校正的过程。

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