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    • 1. 发明授权
    • Electric potential therapeutic appliance, waveform shaping device for electric potential therapeutic appliance and therapy method for chronic virus infectious disease
    • 电位治疗器具,电位治疗器具波形整形装置及慢性病毒感染病治疗方法
    • US08290580B2
    • 2012-10-16
    • US10898328
    • 2004-07-26
    • Noboru HoriguchiHiroshi Horiguchi
    • Noboru HoriguchiHiroshi Horiguchi
    • A61N1/04
    • A61N1/0464A61N1/0472A61N1/10A61N1/325A61N1/326
    • The provision of an potential therapeutic appliance for the delivery into living organisms of highly effective negative ions similar to those found in nature; and in particular, providing a special waveform shaping device that shapes the voltage waveforms delivered to electrodes to efficiently produce negative ions, that is capable of stable performance, and that can be easily manufactured. A waveform shaping device 3 charged with an inorganic insulating powder such as pumice stone powder and a predetermined volume of moisture is disposed in series between a high voltage power supply 2 and an output terminal 12; the current output from the negative terminal of the high voltage power supply is shaped by the waveform shaping device and then delivered to the output terminal; and in a repetitive process, the charge delivered from the high voltage power supply 2 is accumulated temporarily in a terminal 4 and discharged in a burst-like manner; thus facilitating convenient action of negative ions on the human body.
    • 提供潜在的治疗器具用于输送与自然界中发现的类似的高效负离子的活生物体; 并且特别地,提供一种特殊的波形整形装置,其对输送到电极的电压波形进行整形,以有效地产生能够稳定的性能并且可以容易地制造的负离子。 在高电压电源2和输出端子12之间串联配置充有无机绝缘粉末如浮石粉和预定体积的水分的波形整形装置3; 高压电源负端的电流输出由波形整形装置整形,然后输出到输出端; 并且在重复处理中,从高压电源2传递的电荷临时累积在终端4中,并以突发状态放电; 从而促进负离子在人体上的便利作用。
    • 6. 发明申请
    • Electrotherapeutic device for improvement of immunity
    • 用于提高免疫力的电疗装置
    • US20070282391A1
    • 2007-12-06
    • US11528332
    • 2006-09-28
    • Noboru HoriguchiHiroshi Horiguchi
    • Noboru HoriguchiHiroshi Horiguchi
    • A61N1/18
    • A61N1/32A61N1/326
    • To provide an electrotherapeutic device that includes a special waveform shaper which shapes a voltage waveform so that the voltage will efficiently generate reducing ions, and supplies the resultant voltage to a director electrode plate, and that is easily operated during the treatment. An electrotherapeutic device arranges a waveform shaper 3 filled with pumice blocks or inorganic insulator powder and a predetermined amount of moisture in series between a direct current high negative voltage generator 2 and an output terminal 40 and supplies an output current of the direct current high negative voltage generator 2 in the form of a high negative voltage, which has a ripple of a special waveform superimposed thereof, to the output terminal 40 via the waveform shaper 3. The electrotherapeutic device further comprises a current sensor 6 for measuring a treatment current and a program controller 8 for regulating an output voltage.
    • 提供一种电疗装置,其包括形成电压波形的特殊波形整形器,使得电压将有效地产生还原离子,并将所得到的电压提供给导向电极板,并且在处理期间容易操作。 电疗装置将直流高压负电压发生器2和输出端子40之间串联填充有浮石块或无机绝缘粉末的波形整形器3和预定量的水分排列,并提供直流高负电压的输出电流 通过波形整形器3将具有叠加有特殊波形的纹波的高负电压形式的发生器2输出到输出端40.电疗装置还包括用于测量治疗电流的电流传感器6和程序 用于调节输出电压的控制器8。
    • 7. 发明授权
    • Blood testing method
    • 血液检测方法
    • US07276382B2
    • 2007-10-02
    • US10676107
    • 2003-10-02
    • Noboru HoriguchiHiroshi Horiguchi
    • Noboru HoriguchiHiroshi Horiguchi
    • G01N1/18G01N33/48
    • G01N33/491Y10T436/111666Y10T436/25Y10T436/25125Y10T436/25375
    • A blood test method including (a) centrifuging a mammalian blood sample into a plasma and blood cells; (b) removing buffy coats from the blood cells to obtain red blood cells containing solutes confined therewithin; (c) washing the red blood cells with a buffered physiological saline solution and isolating the washed blood cells; (d) mixing the washed red blood cells with a buffered physiological saline solution to obtain a suspended liquid; (e) centrifuging the suspended liquid to remove a supernatant and to obtain a red blood layer; (f) mixing the red blood layer with a hypertonic solution and maintaining the resulting suspension at a temperature of 25 to 40° C. for a period of time sufficient for the solutes confined in the red blood cells to penetrate into the hypertonic solution; (g) centrifuging the suspension to obtain a supernatant containing the solutes; and (h) measuring the supernatant for at least one factor selected from a glucose concentration, a pyruvic acid concentration, a lactic acid concentration and an oxidation-reduction potential.
    • 一种血液测试方法,包括(a)将哺乳动物血液样品离心成血浆和血细胞; (b)从血细胞中除去血沉棕黄层以获得含有限制在其中的溶质的红细胞; (c)用缓冲的生理盐水洗涤红细胞并分离洗涤的血细胞; (d)将经洗涤的红细胞与缓冲的生理盐水混合,得到悬浮液; (e)离心悬浮液以除去上清液并获得红血液层; (f)将红血液层与高渗溶液混合并将所得悬浮液保持在25至40℃的温度下足以使被限制在红细胞中的溶质渗入高渗溶液中的时间; (g)离心悬浮液以获得含有溶质的上清液; 和(h)测量上清液中至少一种选自葡萄糖浓度,丙酮酸浓度,乳酸浓度和氧化还原电位的因子。