JP2000245813A - Method for measuring frequency of electromagnetic wave and method for killing and eliminating microbe or the like - Google Patents

Method for measuring frequency of electromagnetic wave and method for killing and eliminating microbe or the like

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Publication number
JP2000245813A
JP2000245813A JP11049224A JP4922499A JP2000245813A JP 2000245813 A JP2000245813 A JP 2000245813A JP 11049224 A JP11049224 A JP 11049224A JP 4922499 A JP4922499 A JP 4922499A JP 2000245813 A JP2000245813 A JP 2000245813A
Authority
JP
Japan
Prior art keywords
frequency
electromagnetic wave
resonance
living body
microorganisms
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP11049224A
Other languages
Japanese (ja)
Inventor
Noboru Tsuruoka
登 鶴岡
Yoshio Tsuruoka
義夫 鶴岡
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP11049224A priority Critical patent/JP2000245813A/en
Publication of JP2000245813A publication Critical patent/JP2000245813A/en
Pending legal-status Critical Current

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Abstract

PROBLEM TO BE SOLVED: To provide a method of verifying localization of microbes (including virus) infecting or parasitizing a living body and a method of selective or indis criminating killing or eliminating xenobiotics. SOLUTION: In this method, localization of microbes (including virus) which infect or parasitize a living body or substances which deposit in the living body is identified by electromagnetic resonance, then the same frequency as the frequency of electromagnetic wave generated by the macrobes or substances is generated to irradiate or apply to the microbes (including virus) which infect or parasitize the living body or substances which deposite in the living body. Thereby, they are selectively or indiscriminatingly killed or eliminated.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【産業上の利用分野】本発明は、生物、物質または生体
部位が放射する電磁波の固有周波数の測定方法、生体内
の微生物(ウイルスを含む)の選別的または無差別的殺
滅方法、生体内の沈着金属元素の選別的排泄促進方法に
関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a method for measuring the natural frequency of an electromagnetic wave radiated from a living organism, a substance or a living body part, a method for selectively or indiscriminately killing microorganisms (including viruses) in a living organism, And a method for promoting selective excretion of deposited metal elements.

【0002】[0002]

【従来の技術】微生物を含む溶液へのパルス電流、直
流、交流の照射または印加が、殺菌効果を有することは
既に知られている。その殺菌効果は、試料となる既知の
微生物を培養した溶液にパルス電流、直流電流、交流電
流を照射または印加処理したものと未処理のもの生菌数
を比較することにより検証され、また、通電が細胞膜を
部分的に誘電破壊(非可逆的破壊)し、細胞内の原形質
が流出する作用をもつためと説明されている(特開平7
−68268)。生体内への微生物(ウイルスを含む)
による感染については、主訴に基づく病理学的診断及び
/または生体組織検査による微生物(ウイルスを含む)
の同定が行われ、処置は、抗生物質またはワクチンが処
方される。複合感染の場合は、それぞれに特異の抗生物
質またはワクチンが処方される。生体内の沈着金属の局
在診断に関しては、同位体を用いた放射線診断が存在す
る。
2. Description of the Related Art It is already known that irradiation or application of pulse current, direct current or alternating current to a solution containing microorganisms has a bactericidal effect. Its bactericidal effect is verified by comparing the number of viable bacteria that have been irradiated or applied with a pulse current, DC current, or AC current to a solution obtained by culturing a known microorganism that is a sample, and the untreated one. Is described as having a function of partially dielectrically destroying (irreversibly destroying) the cell membrane and causing the cytoplasm in the cell to flow out (Japanese Unexamined Patent Publication No.
-68268). Microorganisms (including viruses) in living organisms
For infections caused by microorganisms, pathological diagnosis based on the chief complaint and / or microorganisms (including viruses) by biopsy
Identification is performed and treatment is prescribed with an antibiotic or vaccine. In the case of multiple infections, specific antibiotics or vaccines are prescribed. As for the localization diagnosis of deposited metal in a living body, there is a radiological diagnosis using an isotope.

【0003】[0003]

【発明が解決しようとする課題】これには、次のような
欠点があった。電流印加による溶液中の微生物等に対す
る殺菌効果の評価方法の前提は、画像処理計測を含め視
覚的に生菌を計数することにある。したがって表層面の
観察に制限されるため、該電流印加による生体内の微生
物への作用効果測定は不可能である。また、交流の殺菌
効果については、一定周波数、例えば50Hzに固定
し、通電時間と既知の微生物に対する殺菌効果の相関関
係を実証しているに過ぎず、周波数と特定微生物に対す
る殺菌効果との相関関係についての文脈は存在しない。
さらに、殺菌効果が選択的なのか無差別的なのかの検証
方法論が確立されていない。
This has the following disadvantages. The premise of the method of evaluating the bactericidal effect on microorganisms and the like in a solution by applying a current is to visually count viable bacteria including image processing measurement. Therefore, since the observation is limited to the observation of the surface layer, it is impossible to measure the effect of the current application on the microorganisms in the living body. In addition, the bactericidal effect of the alternating current is fixed to a constant frequency, for example, 50 Hz, and merely demonstrates the correlation between the energization time and the bactericidal effect on known microorganisms. There is no context for.
Furthermore, no verification methodology has been established to determine whether the bactericidal effect is selective or non-discriminatory.

【0004】内視鏡等で視覚により感染部位を特定し、
該生体組織を浸襲的に摘出する方法では、表層部の感染
病変の外観的特徴を有する部位の摘出に制限され、深層
部に隠在感染している微生物(ウイルスを含む)の発見
は困難である。細菌培養による同定については、長い培
養時間を要するばかりでなく参照細菌が存在しない場
合、同定不能となり、適切な抗生物質を処方できない。
さらに内視鏡による検査及び生体組織の摘出自体が浸襲
的であるため、新たな感染症を発現させることがある。
同定できた場合でも、既に耐性菌を形成し、投与される
抗生物質自体の効果がなくなる事も多い。複数種類の抗
生物質間の相互作用による複合副作用の薬理学的予測は
事実上不可能である。
[0004] The infected site is visually identified with an endoscope or the like,
The method of invasively removing the living tissue is limited to removal of a site having an appearance characteristic of an infectious lesion on a surface layer, and it is difficult to find a microorganism (including a virus) concealed and infected in a deep layer. It is. In the case of identification by bacterial culture, not only long culture time is required, but also in the absence of a reference bacterium, identification becomes impossible, and an appropriate antibiotic cannot be prescribed.
Further, since the inspection by the endoscope and the removal of the living tissue itself are invasive, a new infectious disease may occur.
Even if it can be identified, it is often the case that resistant bacteria have already been formed and the effect of the administered antibiotic itself is lost. The pharmacological prediction of compound side effects due to the interaction between multiple antibiotics is virtually impossible.

【0005】生体内の沈着金属の局在診断に関しては、
同位体を用いた放射線診断が存在するが、検査対象の放
射性同位体の人体への投与を前提とするばかりでなく、
放射性物質の取り扱いが危険を伴う。
[0005] Regarding the localization diagnosis of deposited metal in a living body,
There is radioisotope diagnostics, but it is not only premised that the radioisotope to be tested is administered to the human body,
Handling of radioactive materials is dangerous.

【0006】生体への電流印加の場合、印加方向が一定
の場合、電気分解および分極が現れる。マイナス極の周
りに水素ガスが、プラス極の周りに酸素ガスの泡が出現
する。これは、直流3V以上を使ったときには10〜2
0秒以内に現れ、パルス幅の非常に長いものを使うと、
比較的長時間の使用で、マイナスの電極の周りには水酸
化ナトリウムが出て強アルカリ性になり、プラスの電極
の周りには塩化水素が出て強い酸性になるため、電極の
周りに壊死を起す可能性がある。本発明は、これらの欠
点を除くためになされたものである。
In the case of applying a current to a living body, if the direction of application is constant, electrolysis and polarization appear. Hydrogen gas appears around the negative electrode, and oxygen gas bubbles appear around the positive electrode. This is 10 to 2 when using DC 3V or more.
If it appears within 0 seconds and has a very long pulse width,
After a relatively long use, sodium hydroxide appears around the negative electrode and becomes strongly alkaline, and around the positive electrode hydrogen chloride comes out and becomes strongly acidic, causing necrosis around the electrode. May occur. The present invention has been made to eliminate these disadvantages.

【0007】[0007]

【課題を解決するための手段】周波数が既知の電磁波を
固有周波数の電磁波を放射する被測定対象物に照射し、
電磁共鳴の有無を調べることにより、該対象物の放射す
る電磁波の周波数を測定する方法によって、生体内に対
しては非侵襲的に生体中の微生物(ウイルスを含む)ま
たは物質の局在検査を可能にする。
An electromagnetic wave having a known frequency is irradiated on an object to be measured which emits an electromagnetic wave having a natural frequency,
By examining the presence or absence of electromagnetic resonance, the method of measuring the frequency of electromagnetic waves emitted from the object enables non-invasive detection of the localization of microorganisms (including viruses) or substances in the living body. enable.

【0008】生体内の微生物(ウイルスを含む)に対し
て、該微生物の放射する電磁波の周波数と同一の周波数
の電磁波を照射または印加することによる単一種または
複数種の特定微生物(ウイルスを含む)を選択的に殺滅
する方法によって、抗生物質の服用を最少限に抑え、病
原菌を殺滅する治療の選択肢を与える。
[0008] A single or a plurality of specific microorganisms (including viruses) by irradiating or applying an electromagnetic wave having the same frequency as the frequency of the electromagnetic waves radiated by the microorganisms (including viruses) in the living body The method of selective killing minimizes the use of antibiotics and provides treatment options to kill pathogens.

【0009】生体内の沈着金属元素に対して、該金属の
放射する電磁波の周波数とと同一の周波数の電磁波を照
射または印加することによる単一種または複数種の特定
金属元素を選択的排泄を促進する方法により、金属元素
の体内沈着の存在証明ができるばかりでなく、沈着金属
元素の生体機能への影響が病理学の視野に入る。
[0009] By selectively irradiating or applying an electromagnetic wave having the same frequency as the frequency of the electromagnetic wave radiated by the metal to the deposited metal element in the living body, the selective excretion of one or more specific metal elements is promoted. This method not only makes it possible to prove the existence of metal element deposition in the body, but also makes the influence of the deposited metal element on biological functions into a pathological view.

【0010】生体内の微生物(ウイルスを含む)に対し
て、パルス電流を印加することによる微生物(ウイルス
を含む)を無差別的に殺滅する方法により、病原菌を同
定できない状況においても応急処置をとることができる
ばかりでなく、耐性菌の発生を未然に防げる。
A method for indiscriminately killing microorganisms (including viruses) by applying a pulsed current to microorganisms (including viruses) in a living body provides emergency treatment even in a situation where a pathogenic bacterium cannot be identified. Not only can it be taken, but it can also prevent the development of resistant bacteria.

【0011】パルス電流を生体に印加する場合、電気分
解及び分極を防止するため、正負の印加量が同量となる
ように定期的に電流印加方向を切り替える回路をもつ装
置により、パルス電流印加による生体に対する副作用を
無くすことが可能になる。
When a pulse current is applied to a living body, a device having a circuit for periodically switching the current application direction so that the positive and negative applied amounts are the same in order to prevent electrolysis and polarization is applied. It is possible to eliminate side effects on the living body.

【0012】[0012]

【作用】作用の検証は、電磁共鳴の検出測定を可能とし
た米国特許第5,188,107号のバイ・ディジタル
O−リングテスト(以下、これをO−リングテストと呼
ぶ)による。このO−リングテストは、圧刺激や物質の
電磁場などによる微小な生体刺激を感受した脳の筋トー
ヌス(緊張)への反応を、被験者が2本の指で作った輪
(以下、これをO−リングと呼ぶ)を検者が指を左右に
平行に引っ張り、それに抵抗する被験者の筋力の変化で
調べる方法である。O−リングテストによる診断の中の
存在診断(局在診断)法は、共鳴テストと呼ばれ、同じ
分子構造を持ったものからは同じ周波数と位相をもつ電
磁波が放射されており、2つの物質が同じ分子構造の場
合は両者の間で共鳴現象が起こるという原理に立脚す
る。体内に存在するものと同じ周波数と位相をもつ電磁
場を手が感受すれば共鳴現象が起き、脳を通じて筋力が
減弱する。共鳴のコントロール物質として微量のサンプ
ルを手のひらに載せO―リングの筋力が弱まった場合、
同じ物質が体内に存在していると考えられる。サンプル
の種類を工夫すると、生理学・生化学・細菌学・病理学
的診断ができる。例えば、細菌感染が疑われたときに
は、黄色ブドウ球菌や溶血性連鎖球菌など、純粋培養下
の細菌プレパラートを用意しておけば、それがどの組織
プレパラートと共鳴現象を起こすかを調べることによ
り、細菌学的診断ができる。なおこのO−リングテスト
は、通常の医学的最新検査機器による診断の前に診察と
して行われる補助診断法である。また、装置を使った厳
密な筋力測定に関しては、特開平9−19422、特開
平9−19423で提案されている。
The operation is verified by a bi-digital O-ring test (hereinafter referred to as an O-ring test) of US Pat. No. 5,188,107 which enables detection and measurement of electromagnetic resonance. In this O-ring test, the reaction of the brain to muscle tonus (tension), which was perceived by a minute biological stimulus such as a pressure stimulus or an electromagnetic field of a substance, was determined by a test subject using a two-finger ring (hereinafter referred to as an O-ring). (Referred to as “ring”) is a method in which the examiner pulls his / her finger in parallel to the left and right, and examines the change in muscle strength of the subject who resists the finger. The presence diagnosis (localization diagnosis) method in the diagnosis by the O-ring test is called a resonance test, in which electromagnetic waves having the same frequency and phase are radiated from those having the same molecular structure, and two substances are emitted. Are based on the principle that when both have the same molecular structure, a resonance phenomenon occurs between them. When a hand senses an electromagnetic field having the same frequency and phase as those present in the body, a resonance phenomenon occurs, and muscle strength decreases through the brain. When a small amount of sample is placed on the palm as a control substance for resonance and the muscle strength of the O-ring weakens,
It is thought that the same substance exists in the body. By devising the type of sample, physiology, biochemistry, bacteriology, and pathological diagnosis can be performed. For example, if a bacterial infection is suspected, prepare a bacterial preparation in pure culture, such as Staphylococcus aureus or hemolytic streptococcus, and determine which tissue preparation will cause a resonance phenomenon. Can make a clinical diagnosis. The O-ring test is an auxiliary diagnostic method that is performed as a medical examination before diagnosis using a normal medical latest testing device. In addition, strict muscular strength measurement using a device has been proposed in JP-A-9-19422 and JP-A-9-19423.

【0013】本発明者は、O−リングテストを鋭意研究
した結果、新しいO−リングテストの応用方法を見出し
た。周波数発生器の信号ケーブルを折り曲げて握った場
合、周波数の値に関係なくO−リングが開く事実を得
た。また、2台周波数発生器にて、両発生器とも同一の
周波数に設定し、2本のケーブルを握った時はO−リン
グが開き、異なる周波数の時は開かない事実を得た。つ
まり、2つの人工的に生成された電磁波の共鳴もO−リ
ングテストにより判定可能なことを確認した。ここで得
た方法論は、放射電磁波の周波数が未知の測定対象物に
対して、既知の周波数の電磁波を照射し、共鳴検出した
時点での周波数値が測定対象物の放射電磁波の周波数と
一致するということである。そこで、手のひら上に置い
た黄色ブドウ球菌のプレパラートに対して周波数発生器
による既知の周波数の電磁波を照射し、O−リングテス
トにより共鳴を確認し、該プレパラートが放射する電磁
波の周波数値を取得した。同様に、水銀の純粋サンプル
が放射する電磁波の周波数値を取得した。さらに、事前
に、該金属の純粋サンプルと人体各部位との共鳴によっ
て調べ、該金属の沈着部位を取得しておき、人工的に周
波数発生器により該金属が放射する電磁波と同一の周波
数を出力し、その出力ケーブルを握りながら該金属の沈
着を事前確認した部位を指差すとO−リングが開いた。
同様に、事前に、黄色ブドウ球菌のプレパラートと人体
各部位との共鳴によって調べ、該細菌の局在部位を取得
しておき、人工的に周波数発生器により既に取得した該
細菌が放射する電磁波の周波数と同一の周波数を出力
し、その出力ケーブルを握りながら該細菌の局在を確認
した部位を指差すとO−リングが開いた。
As a result of intensive studies on the O-ring test, the present inventor has found a new application method of the O-ring test. When the signal cable of the frequency generator was bent and grasped, the fact that the O-ring opened regardless of the frequency value was obtained. In addition, with the two frequency generators, both generators were set to the same frequency, and the O-ring opened when the two cables were grasped, and did not open at different frequencies. That is, it was confirmed that the resonance of two artificially generated electromagnetic waves can also be determined by the O-ring test. The methodology obtained here irradiates an electromagnetic wave of a known frequency to the measurement object whose frequency of the radiated electromagnetic wave is unknown, and the frequency value at the time of resonance detection matches the frequency of the radiated electromagnetic wave of the measurement object. That's what it means. Thus, the preparation of S. aureus placed on the palm was irradiated with an electromagnetic wave of a known frequency by a frequency generator, resonance was confirmed by an O-ring test, and the frequency value of the electromagnetic wave emitted by the preparation was obtained. . Similarly, the frequency values of the electromagnetic waves emitted by the pure sample of mercury were obtained. Furthermore, in advance, the resonance is measured between the pure sample of the metal and each part of the human body, the deposition site of the metal is acquired, and the same frequency as the electromagnetic wave emitted by the metal is artificially output by the frequency generator. Then, when the user pointed to a site where the deposition of the metal was confirmed in advance while grasping the output cable, the O-ring opened.
Similarly, in advance, by examining the resonance between the preparation of Staphylococcus aureus and various parts of the human body, to obtain the localized site of the bacterium, and to artificially obtain the electromagnetic wave of the radiated by the bacterium already obtained by the frequency generator. The same frequency as the frequency was output, and the O-ring was opened when the user confirmed the localization of the bacterium while holding the output cable and pointed to the site.

【0014】以上のことから、周波数発生器の出力する
周波数の電磁波は、サンプルに代替可能であることを確
認した。
From the above, it has been confirmed that the electromagnetic wave of the frequency output from the frequency generator can be replaced with a sample.

【0015】特定微生物(ウイルスを含む)に対する該
固有周波数の電磁波の照射または印加による選別的殺滅
作用については、複数種の微生物(ウイルスを含む)に
対して、その中の一つの特定微生物(ウイルスを含む)
の固有振動と同一の周波数をもつ電磁波を加えると、該
特定微生物(ウイルスを含む)だけが電磁波のエネルギ
ーを共鳴吸収し、選択的に運動エネルギーを得、この運
動エネルギーが該微生物(ウイルスを含む)の共鳴吸収
容量を超えると組織破壊し殺滅する。
Regarding the selective killing action of specific microorganisms (including viruses) by irradiating or applying the electromagnetic wave of the natural frequency, a plurality of microorganisms (including viruses) are treated with one specific microorganism (including viruses). (Including virus)
When an electromagnetic wave having the same frequency as that of the natural vibration is applied, only the specific microorganism (including a virus) resonates and absorbs the energy of the electromagnetic wave and selectively obtains kinetic energy. If the resonance absorption capacity is exceeded, the tissue is destroyed and killed.

【0016】共鳴周波数の電磁波の照射または印加によ
る細胞沈着金属元素の剥離作用については、金属元素
は、固有振動に共鳴する周波数をもった電磁波を加える
と、その電磁波のエネルギーを共鳴吸収し、選択的に該
金属元素は運動エネルギーを得、この運動エネルギーが
組織壁に沈着した金属元素を離脱させる。離脱した金属
元素は血流に乗り、肝臓、腎臓を通り、膀胱に集められ
体外に排泄される。
Regarding the exfoliating action of the metal element deposited on the cell by irradiating or applying an electromagnetic wave having a resonance frequency, when a metal element is applied with an electromagnetic wave having a frequency that resonates with natural vibration, the metal element resonates and absorbs the energy of the electromagnetic wave. Specifically, the metal element obtains kinetic energy, and the kinetic energy releases the metal element deposited on the tissue wall. The withdrawn metal element enters the bloodstream, passes through the liver and kidneys, is collected in the bladder, and is excreted outside the body.

【0017】パルス電流の微生物(ウイルスを含む)に
対する無差別的的殺滅作用については、断続的な正の電
荷が微生物(ウイルスを含む)の細胞壁の合成に必要な
代謝機能を阻害し、また、その細胞壁を破壊する酵素を
活性化することにより細胞の細胞内原形質が流出し、死
滅する。
Regarding the indiscriminate killing of pulsed currents on microorganisms (including viruses), the intermittent positive charge inhibits the metabolic functions required for the synthesis of the cell walls of microorganisms (including viruses), By activating an enzyme that destroys the cell wall, the intracellular cytoplasm of the cell flows out and is killed.

【0018】パルス電流印加時の電気分解および分極を
防止する回路については、4つのスイッチが定期的に一
定のパターンで切り替わることにより、電流による生体
組織への極性効果が中和される。
In the circuit for preventing electrolysis and polarization when a pulse current is applied, the four switches are periodically switched in a fixed pattern to neutralize the polarity effect on the living tissue due to the current.

【0019】[0019]

【実施例】以下、本発明の実施例について説明する。 (1)液体中の微生物(ウイルスを含む)の放射電磁波
の周波数測定取得の実施例。 周波数発生器の出力波形をサイン波に設定。グランド側
はオープンの状態で信号出力側のリード線先端のワニ口
クリップを伝導パイプにクリップし、それを左の手のひ
らにヨーグルトを入れた小袋と一緒に握る(または電極
を持った手の人差し指でヨーグルトを入れた皿を指
す)。周波数を連続的に変化させながらO−リングテス
トを繰り返し、共鳴によりO−リングが大きく開いた時
の周波数を記録する。共鳴スペクトルの分析結果は275K
Hz、365KHz、465KHz、705KHz、805KHz、960KHz、1010KH
zである。取得した共鳴スペクトルを持つサンプルを以
下、「基準参照液」と呼ぶ。
Embodiments of the present invention will be described below. (1) Example of frequency measurement and acquisition of radiated electromagnetic waves of microorganisms (including viruses) in a liquid. Set the output waveform of the frequency generator to a sine wave. With the ground side open, clip the crocodile clip at the end of the lead wire on the signal output side to the conductive pipe and hold it with the sachet containing yogurt in the left palm (or with the index finger of the hand holding the electrode). Refers to the dish with yogurt). The O-ring test is repeated while continuously changing the frequency, and the frequency at which the O-ring opens greatly due to resonance is recorded. Analysis result of resonance spectrum is 275K
Hz, 365KHz, 465KHz, 705KHz, 805KHz, 960KHz, 1010KH
z. The sample having the acquired resonance spectrum is hereinafter referred to as “reference reference solution”.

【0020】(2)液体中の単一種の特定微生物(ウイ
ルスを含む)の選別的殺滅の実施例。 基準参照液に対し、その共鳴スペクトルのうちの一つの
周波数705KHzを周波数発生器の出力波形をサイン波に設
定。グランド側はパイプ電極を取り付け、信号出力側の
リード線先端のワニ口クリップを伝導パイプにクリップ
し、基準参照液に侵け、3分間印加する。印加後、共鳴
スペクトルの再調査する。O−リングテストを用いた共
鳴スペクトルの分析結果は275KHz、365KHz、465KHz、80
5KHz、960KHz、1010KHzとなり、705KHzだけが共鳴検出
されない。
(2) Example of selective killing of a single specific microorganism (including virus) in a liquid. For the reference liquid, set the output waveform of the frequency generator to sine wave at 705 KHz, one of the resonance spectra. A pipe electrode is attached to the ground side, and a crocodile clip at the tip of the lead wire on the signal output side is clipped to the conductive pipe, immersed in the reference liquid, and applied for 3 minutes. After the application, the resonance spectrum is examined again. The analysis results of the resonance spectrum using the O-ring test were 275 KHz, 365 KHz, 465 KHz, 80 KHz.
It becomes 5KHz, 960KHz, 1010KHz, and only 705KHz is not detected in resonance.

【0021】(3)液体中の複数種の特定微生物(ウイ
ルスを含む)の選別的同時殺滅の実施例。 2台の周波数発生器にてそれぞれ周波数365KHzと465KHz
を生成し、各同軸ケーブルの同極に接続した2本の電極
パイプを基準参照液に浸すことにより周波数を印加後の
共鳴周波数を再調査した結果、元の共鳴周波数スペクト
ルの内、365KHzと465KHzが無くなった。
(3) Example of selective simultaneous killing of a plurality of specific microorganisms (including viruses) in a liquid. 365KHz and 465KHz respectively with two frequency generators
And re-examined the resonance frequency after applying the frequency by immersing the two electrode pipes connected to the same pole of each coaxial cable in the reference liquid, and found that the original resonance frequency spectrum was 365 KHz and 465 KHz Is gone.

【0022】(4)液体中の複数の微生物(ウイルスを
含む)の無差別的同時殺滅の実施例。 パルス電流を基準参照液に対し、7分間印加した後、O
−リングテストを用いた共鳴スペクトルの分析結果、最
初にあったすべての周波数が検出されなかった。
(4) Example of indiscriminate simultaneous killing of a plurality of microorganisms (including viruses) in a liquid. After applying a pulse current to the reference liquid for 7 minutes,
-Analysis of the resonance spectrum using the ring test did not detect all the frequencies that were initially present.

【0023】(5)生体内の単一の特定微生物(ウイル
スを含む)及びウイルスの選別的殺滅の実施例。 65歳の女性。人体の各部位とサイトメガロウイルスと
の共鳴をO−リングテストによって調べたところ、卵
巣、両膝に共鳴があった。周波数発生器の電極を両手に
握り、該ウイルスのプレパラートの放射電磁波の周波数
と同一の周波数の電磁波を3分間印加後、O−リングテ
ストした結果、卵巣部の該ウイルスの反応消えるが、両
膝の関節は陽性。つぎに、周波数発生器の正電極を左足
先端に張り付けたアルミホイルに接続し、負電極を左手
に握り、該ウイルスのプレパラートの放射電磁波の周波
数と同一の周波数の電磁波を3分間印加後、左ヒザ部を
O−リングテストした結果、該ウイルスの反応消える
が、右ヒザの関節は陽性。さらに周波数発生器の負電極
を、右足先端に張り付けたアルミホイルに接続し、正電
極を右手に握り、サイトメガロウイルスのプレパラート
の放射電磁波の周波数と同一の周波数の電磁波を3分間
印加後、右ヒザ部のO−リングテストした結果、該ウイ
ルスの反応は消えた。
(5) An example of selective killing of a single specific microorganism (including a virus) and a virus in a living body. 65 year old woman. When the resonance between each part of the human body and the cytomegalovirus was examined by an O-ring test, there was resonance in the ovaries and both knees. After holding the electrode of the frequency generator in both hands and applying an electromagnetic wave having the same frequency as the frequency of the radiated electromagnetic wave of the virus preparation for 3 minutes, the O-ring test showed that the reaction of the virus in the ovary disappeared, but both knees disappeared. Joints are positive. Next, the positive electrode of the frequency generator was connected to an aluminum foil attached to the tip of the left foot, the negative electrode was grasped with the left hand, and an electromagnetic wave having the same frequency as that of the radiated electromagnetic wave of the virus preparation was applied for 3 minutes. As a result of an O-ring test on the knee, the reaction of the virus disappeared, but the joint of the right knee was positive. Furthermore, connect the negative electrode of the frequency generator to the aluminum foil attached to the tip of the right foot, hold the positive electrode in the right hand, apply an electromagnetic wave of the same frequency as the frequency of the radiated electromagnetic wave of the cytomegalovirus preparation for 3 minutes, and then As a result of an O-ring test on the knee, the reaction of the virus disappeared.

【0024】41歳の男性。サイトメガロウイルスのプ
レパラートを使ってO−リングテストした結果、頭部ツ
ムジ部、両肩、両肘、両膝に陽性反応あり。頭部に関し
ては皮膚のプレパラートを加えるとより大きくO−リン
グが開く。周波数発生器に接続したヘッドホン電極を額
の両端毛髪生え際に取り付け、該ウイルスのプレパラー
トの放射電磁波の周波数と同一の周波数の電磁波を3分
間印加後、O−リングテストした結果、頭部ツムジ付近
部の該ウイルスの反応消えるが、他の検出部位は変化な
し。次に周波数発生器に接続したヘッドホン電極を両耳
タブの後部に取り付け、該ウイルスのプレパラートの放
射電磁波の周波数と同一の周波数の電磁波を3分間印加
後、O−リングテストした結果、両肩および両ひじの該
ウイルスの反応消えるが、下肢部両膝の検出部位は変化
なし。さらに周波数発生器の電極を両手に握り、該ウイ
ルスのプレパラートの放射電磁波の周波数と同一の周波
数の電磁波を3分間印加後、O−リングテストした結
果、下肢部両膝の関節は陽性変化なし。最後に周波数発
生器の電極を両足先端に張り付けたアルミホイルに接続
して該ウイルスのプレパラートの放射電磁波の周波数と
同一の周波数の電磁波を3分間印加後、O−リングテス
トした結果、両膝の関節は陰性になる。
A 41 year old man. As a result of an O-ring test using a cytomegalovirus preparation, a positive reaction was found in the head tsumuji, both shoulders, both elbows, and both knees. For the head, the O-ring opens more when the skin preparation is added. The headphone electrode connected to the frequency generator was attached to the hairline on both ends of the forehead, and after applying an electromagnetic wave having the same frequency as the frequency of the radiated electromagnetic wave of the virus preparation for 3 minutes, the O-ring test was performed. Of the virus disappears, but the other detection sites remain unchanged. Next, the headphone electrode connected to the frequency generator was attached to the back of the binaural tab, and an electromagnetic wave having the same frequency as the frequency of the radiated electromagnetic wave of the virus preparation was applied for 3 minutes. The reaction of the virus on both elbows disappeared, but the detection sites on both knees of the lower limb remained unchanged. Furthermore, holding the electrodes of the frequency generator in both hands, applying an electromagnetic wave having the same frequency as the frequency of the radiated electromagnetic wave of the virus preparation for 3 minutes, and performing an O-ring test, the joints of the lower limbs and the knees showed no positive change. Finally, the electrodes of the frequency generator were connected to an aluminum foil attached to the tips of both feet, and an electromagnetic wave having the same frequency as that of the radiated electromagnetic wave of the virus preparation was applied for 3 minutes. As a result, an O-ring test was performed. The joint becomes negative.

【0025】41歳の男性。右肩がインシュリン様増殖
因子Iと単純ヘルペスII型ウイルスに対して強共鳴を示
した。該増殖因子Iのプレパラートの放射電磁波の周波
数と同一の周波数の電磁波を印加した結果、該増殖因子
Iの共鳴反応は消えた。次に単純ヘルペスII型ウイルス
と右肩との共鳴存在を確認した上で、該ウイルスのプレ
パラートの放射電磁波の周波数と同一の周波数の電磁波
を印加した結果、該ウイルスの共鳴反応は消えた。
A 41-year-old man. The right shoulder showed strong resonance with insulin-like growth factor I and herpes simplex type II virus. As a result of applying an electromagnetic wave having the same frequency as the frequency of the radiated electromagnetic wave of the preparation of the growth factor I, the growth factor
The resonance reaction of I disappeared. Next, after confirming the presence of resonance between the herpes simplex type II virus and the right shoulder, an electromagnetic wave having the same frequency as the frequency of the radiated electromagnetic wave of the virus preparation was applied. As a result, the resonance reaction of the virus disappeared.

【0026】(6)生体内の複数の特定微生物(ウイル
スを含む)の選別的同時殺滅例。 65歳の女性。腎臓に単純ヘルペスI型ウイルス、単純
ヘルペスII型ウイルス、サイトメガロウイルスのプレパ
ラートとの共鳴があった。2台の周波数発生器で同時
に、単純ヘルペスI型ウイルスと単純ヘルペスII型ウイ
ルスのプレパラートの放射電磁波の周波数と同一の周波
数の電磁波を3分間印加した後、O−リングテストした
結果、該複数種ウイルスの共鳴はなくなり、サイトメガ
ロウイルスとの共鳴が残った。
(6) An example of selective simultaneous killing of a plurality of specific microorganisms (including viruses) in a living body. 65 year old woman. There were resonances in the kidney with herpes simplex type I virus, herpes simplex type II virus, and cytomegalovirus preparations. After simultaneously applying electromagnetic waves having the same frequency as that of the radiated electromagnetic waves of the preparations of herpes simplex type I virus and herpes simplex type II virus for 3 minutes using two frequency generators, the O-ring test was performed. The virus resonance disappeared, leaving a resonance with the cytomegalovirus.

【0027】(7)生体内の複数の微生物(ウイルスを
含む)及びウイルスの無差別的同時殺滅の実施例。 41歳の男性。右肩の痛みを訴えていた。そこで疼痛部
位とのプレパラートとの共鳴を調べたところ、インシュ
リン様増殖因子I、単純ヘルペスI型ウイルス、サイトメ
ガロウイルスのプレパラートと共鳴があった。パルス電
流を7分間印加後、検出された3つのプレパラートとの
共鳴部位を調べたところ、すべて非共鳴になっていた。
(7) Examples of indiscriminate simultaneous killing of a plurality of microorganisms (including viruses) and viruses in a living body. A 41 year old man. She complained of pain in her right shoulder. Then, when the resonance with the preparation at the pain site was examined, resonance with the preparations of insulin-like growth factor I, herpes simplex type I virus, and cytomegalovirus was found. After applying the pulse current for 7 minutes, the sites of resonance detected with the three preparations were examined, and they were all non-resonant.

【0028】(8)生体内に沈着する単一の特定物質の
選別的体外排泄促進の実施例。 40歳の男性。アルミニウムの純粋サンプルと解剖プレ
パラートを使用し人体中のアルミニウム沈着部位をO−
リングテストにより精査した結果、腎臓、脊髄、動脈と
静脈、膀胱、小脳、リンパ節、骨髄、皮膚、副甲状腺、
前立腺、視神経で強い共鳴反応を得た。初回排尿によっ
て膀胱内のアルミニウムを体外排泄し、膀胱のアルミニ
ウム滞留度をゼロにした後、自力排泄力による膀胱のア
ルミニウム共鳴反応が陽性になるまでの時間を測定した
結果、少なくとも25分間は膀胱にアルミニウム陽性反
応はなかった。第2回目の排尿の直前にO−リングテス
トにより、体内各部のアルミニウム反応を調べ、排尿
後、再度体内各部のアルミニウム反応を調査比較する
と、膀胱は共鳴がなくなり、膀胱以外の共鳴度には変化
が無かった。つづけて、アルミニウムの純粋サンプルが
放射する電磁波の周波数と同一の周波数の電磁波を周波
数発生器により3分間印加直後、体内各部のアルミニウ
ム反応を精査した結果、膀胱は、強共鳴になり、それ以
外は、中共鳴に減じていた。さらに第3回目の排尿後
は、膀胱の共鳴は消え、それ以外は、弱共鳴に減じてい
た。
(8) Example of selective promotion of excretion of a single specific substance deposited in a living body. 40-year-old man. Using a pure aluminum sample and dissection preparation, the aluminum deposition site in the human body was
A close examination of the ring test showed that the kidney, spinal cord, arteries and veins, bladder, cerebellum, lymph nodes, bone marrow, skin, parathyroid,
A strong resonance response was obtained in the prostate and optic nerve. After the aluminum in the bladder was excreted from the body by initial urination and the degree of aluminum retention in the bladder was reduced to zero, the time until the aluminum resonance reaction of the bladder due to self-elimination became positive was measured. There were no aluminum positive reactions. Immediately before the second urination, the aluminum reaction in each part of the body was examined by an O-ring test, and after urination, the aluminum reaction in each part of the body was examined again. There was no. Immediately after applying an electromagnetic wave of the same frequency as that of the electromagnetic wave emitted by the pure aluminum sample for 3 minutes using a frequency generator, the aluminum reaction in each part of the body was closely examined. As a result, the bladder became a strong resonance. , Had been reduced to medium resonance. Further, after the third urination, the bladder resonance disappeared, and otherwise reduced to weak resonance.

【0029】(9)生体内に沈着する複数の特定物質の
選別的体外排泄促進の実施例。 65歳の女性。水銀の純粋サンプルとアルミニウムの純
粋サンプルを使用し人体中の沈着部位をO−リングテス
トにより精査した結果、後頭部、腎臓、膀胱で強い共鳴
反応を得た。初回排尿によって膀胱内の水銀及びアルミ
ニウムを体外排泄し、膀胱中の水銀及びアルミニウム滞
留度をゼロにして、自力排泄力によって膀胱の水銀及び
アルミニウム共鳴反応が陽性になるまでの時間を調べた
結果、水銀は50分後、アルミニウムは55分後に膀胱
に陽性反応が出てきた。第2回目の排尿の直前にO−リ
ングテストにより、後頭部、腎臓、膀胱各部の水銀およ
びアルミニウム共鳴反応を調べ、排尿後、再度各部の水
銀及びアルミニウム共鳴反応を調査比較すると、膀胱は
両金属の共鳴がなくなり、膀胱以外部位の共鳴度には変
化がなかった。つづけて、2台の周波数発生器で同時に
水銀およびアルミニウムの純粋サンプルが放射する電磁
波の周波数と同一の周波数の電磁波を3分間印加直後、
各部の水銀およびアルミニウム反応を精査した結果、腎
臓および膀胱は両金属に対して強共鳴になり、後頭部
は、水銀に対しては非共鳴、アルミニウムに対しては弱
共鳴となった。さらに第3回目の排尿直前では、膀胱は
両金属とも強共鳴、後頭部および腎臓は弱共鳴となり、
排尿後は、膀胱の共鳴は消え、それ以外部位は、弱共鳴
のままだった。
(9) Example of selective promotion of excretion of a plurality of specific substances deposited in a living body. 65 year old woman. Using a pure sample of mercury and a pure sample of aluminum, the deposition site in the human body was closely examined by an O-ring test. As a result, a strong resonance reaction was obtained in the occiput, kidney, and bladder. As a result of excreting the mercury and aluminum in the bladder by initial urination, making the mercury and aluminum retention in the bladder zero, and examining the time until the mercury and aluminum resonance reaction of the bladder become positive by self-elimination, Positive reactions appeared in the bladder after 50 minutes for mercury and 55 minutes for aluminum. Immediately before the second urination, the mercury and aluminum resonance reactions in the occipital region, kidney, and each part of the bladder were examined by an O-ring test. After urination, the mercury and aluminum resonance reactions in the various parts were again examined and compared. The resonance disappeared, and there was no change in the degree of resonance other than in the bladder. Then, immediately after applying the electromagnetic waves of the same frequency as the electromagnetic waves emitted by the pure samples of mercury and aluminum with the two frequency generators for 3 minutes,
A close examination of the mercury and aluminum reactions in each part revealed that the kidney and bladder had strong resonances with both metals, the occiput had non-resonance with mercury and weak resonance with aluminum. Immediately before the third urination, the bladder had strong resonance with both metals, and the occiput and kidney had weak resonance.
After urination, the bladder resonance disappeared, and the rest of the bladder remained weakly resonant.

【0030】(10)請求項4の実施例。 パルス電流の印加の方向は、図1の回路を設けることに
よって、一定時間経過毎に、4つのスイッチを切り替え
る。スイッチa5とスイッチd8を閉じ、スイッチb6
とスイッチc7を開くと、パルス電流は、A−B−C−
D−E−F−G−Hの各点を経由してグランドに落ち
る。一定時間経過後、スイッチa5とスイッチd8を開
き、スイッチb6とスイッチc7を閉じると、パルス電
流は、A−B−F−E−D−C−G−Hの各点を経由し
てグランドに落ちる。以上のスイッチングパターンを一
定時間経過後、切り替えることにより人体への電流印加
の方向を制御できる。
(10) An embodiment according to claim 4. The direction of application of the pulse current is changed over by four switches every predetermined time by providing the circuit of FIG. Switch a5 and switch d8 are closed, and switch b6
When the switch c7 is opened, the pulse current becomes ABCC-
It falls to ground via each point of DEFFGH. After a certain period of time, when the switch a5 and the switch d8 are opened and the switch b6 and the switch c7 are closed, the pulse current flows to the ground via each of the points A, B, F, E, D, C, and G. drop down. By switching the above-mentioned switching patterns after a certain period of time, the direction of current application to the human body can be controlled.

【0031】[0031]

【発明の効果】 本発明により、微生物(ウイルスを含
む)または物質の放射する電磁波の周波数を取得後は、
人工的な周波数による電磁波をサンプルに代替して使用
する事ができる。また取得した周波数値はディジタル化
して保存できるためデータベース構築を可能にするばか
りでなく、標本の劣化変質等による診断品質の低下を防
止することができる。生体内の単一または複数の特定微
生物(ウイルスを含む)の選択的殺滅、生体内に沈着し
た単一または複数の特定金属元素の選択的体外排除促
進、さらに生体内の複数の微生物(ウイルスを含む)の
差別的殺滅が、共鳴周波数の電磁波の印加または照射に
より可能になり、将来的には、新しい耐性菌に対しても
病変部等が放射する電磁波の周波数を非侵襲的に調べる
ことによる健康維持を実現する可能性を与える。
According to the present invention, after acquiring the frequency of the electromagnetic wave emitted by a microorganism (including a virus) or a substance,
Electromagnetic waves with artificial frequencies can be used in place of samples. Further, since the acquired frequency values can be digitized and stored, not only a database can be constructed, but also a decrease in diagnostic quality due to deterioration or deterioration of the sample can be prevented. Selective killing of one or more specific microorganisms (including viruses) in a living body, promotion of selective extracorporeal elimination of one or more specific metal elements deposited in a living body, and furthermore, multiple microorganisms (viruses) in a living body ) Can be applied by applying or irradiating electromagnetic waves at the resonance frequency. In the future, the frequency of electromagnetic waves emitted from lesions will be examined non-invasively even for new resistant bacteria. The possibility of realizing health maintenance.

【図面の簡単な説明】[Brief description of the drawings]

【図1】パルス電流極性変換の実施例を示す回路図であ
る。
FIG. 1 is a circuit diagram showing an embodiment of pulse current polarity conversion.

【符号の説明】[Explanation of symbols]

1 コントローラ 2 安定化直流電源 3 電流制限抵抗 4 トランジスタ 5 スイッチa 6 スイッチb 7 スイッチc 8 スイッチd 9 人体等価回路部 DESCRIPTION OF SYMBOLS 1 Controller 2 Stabilized DC power supply 3 Current limiting resistor 4 Transistor 5 Switch a 6 Switch b 7 Switch c 8 Switch d 9 Human equivalent circuit

Claims (5)

【特許請求の範囲】[Claims] 【請求項1】周波数が既知の電磁波を、固有周波数の電
磁波を放射する被測定対象物に照射し、電磁共鳴の有無
を調べることにより、該対象物の放射する電磁波の周波
数を測定する方法。
1. A method for measuring the frequency of an electromagnetic wave emitted from an object by irradiating an object to be measured that emits an electromagnetic wave of a natural frequency with an electromagnetic wave having a known frequency and examining the presence or absence of electromagnetic resonance.
【請求項2】生体内の微生物(ウイルスを含む)に対し
て請求項1の方法により測定取得した周波数の電磁波を
照射または印加することにより、単一種または複数種の
特定微生物(ウイルスを含む)を選択的に殺滅する方
法。
2. A single or a plurality of specific microorganisms (including viruses) by irradiating or applying an electromagnetic wave having a frequency measured and obtained by the method of claim 1 to microorganisms (including viruses) in a living body. How to kill selectively.
【請求項3】生体内の沈着金属元素に対して請求項1の
方法により測定取得した周波数の電磁波を照射または印
加することにより、単一種または複数種の特定金属元素
を選択的に体外排泄促進する方法。
3. A single or plural specific metal element is selectively excreted by irradiating or applying an electromagnetic wave having a frequency measured and obtained by the method of claim 1 to a deposited metal element in a living body. how to.
【請求項4】生体内の微生物(ウイルスを含む)に対し
て、パルス電流を印加することにより、微生物(ウイル
スを含む)を無差別的に殺滅する方法。
4. A method for indiscriminately killing microorganisms (including viruses) by applying a pulse current to microorganisms (including viruses) in a living body.
【請求項5】請求項4においてパルス電流を生体に印加
するとき、電気分解、分極を防止するため、正負の印加
量が同量となるように定期的に電流印加方向を切り替え
る回路をもつ装置。
5. An apparatus having a circuit according to claim 4, wherein when applying a pulse current to a living body, a circuit for periodically switching the current application direction so that the positive and negative applied amounts are equal to prevent electrolysis and polarization. .
JP11049224A 1999-02-26 1999-02-26 Method for measuring frequency of electromagnetic wave and method for killing and eliminating microbe or the like Pending JP2000245813A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP11049224A JP2000245813A (en) 1999-02-26 1999-02-26 Method for measuring frequency of electromagnetic wave and method for killing and eliminating microbe or the like

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP11049224A JP2000245813A (en) 1999-02-26 1999-02-26 Method for measuring frequency of electromagnetic wave and method for killing and eliminating microbe or the like

Publications (1)

Publication Number Publication Date
JP2000245813A true JP2000245813A (en) 2000-09-12

Family

ID=12824969

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Application Number Title Priority Date Filing Date
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Country Link
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004047875A1 (en) * 2002-11-27 2004-06-10 Zaidan Hojin Handotai Kenkyu Shinkokai Electromagnetic wave applicator
JP2005305060A (en) * 2004-04-16 2005-11-04 Semiconductor Res Found Method and device for sterilization with electromagnetic wave
JP2005334129A (en) * 2004-05-25 2005-12-08 Semiconductor Res Found Target molecule manipulating device and target molecule manipulating method
EP2950393A4 (en) * 2013-01-25 2016-08-31 Kiyotaka Wakitani Phase conversion device for electromagnetic waves
KR20190008165A (en) * 2017-07-10 2019-01-23 에릭스바이오(주) A System for Controlling a Growth by a Characteristic Band Width of an Electro-Magnetic Wave and the Method for Controlling the Growth using the Same

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004047875A1 (en) * 2002-11-27 2004-06-10 Zaidan Hojin Handotai Kenkyu Shinkokai Electromagnetic wave applicator
JPWO2004047875A1 (en) * 2002-11-27 2006-03-23 財団法人半導体研究振興会 Electromagnetic irradiation device
US7912553B2 (en) 2002-11-27 2011-03-22 Jun-ichi Nishizawa Electromagnetic wave applicator
JP2005305060A (en) * 2004-04-16 2005-11-04 Semiconductor Res Found Method and device for sterilization with electromagnetic wave
JP4547186B2 (en) * 2004-04-16 2010-09-22 潤一 西澤 Sterilizer
JP2005334129A (en) * 2004-05-25 2005-12-08 Semiconductor Res Found Target molecule manipulating device and target molecule manipulating method
EP2950393A4 (en) * 2013-01-25 2016-08-31 Kiyotaka Wakitani Phase conversion device for electromagnetic waves
KR20190008165A (en) * 2017-07-10 2019-01-23 에릭스바이오(주) A System for Controlling a Growth by a Characteristic Band Width of an Electro-Magnetic Wave and the Method for Controlling the Growth using the Same
KR102255907B1 (en) * 2017-07-10 2021-05-25 에릭스바이오(주) A System for Controlling a Growth by a Characteristic Band Width of an Electro-Magnetic Wave and the Method for Controlling the Growth using the Same

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