によって書かれた: ミロス ポキミカ
医学的に検証した結果 Xiùying Wáng, M.D. 博士。
Updated 6月 9, 2023Royal Raymond Rife developed technology that is still commonly used today in the fields of optics, microscopy, electronics, radiochemistry, biochemistry, ballistics, and aviation and particularly in imaging and medical microscopy. Royal Raymond Rife also developed technology (Rife Machine) that was surprised that you probably don’t know about. In life, he was awarded 14 different rewards. Rife attended Heidelberg University in Germany. He received an honorary Doctor of Parasitology degree there. Rife also received an honorary Doctor of Science degree from the University of Southern California in 1936.
ライフルの発明には、ヘテロダイン紫外線顕微鏡、マイクロ ディセクター、マイクロマニピュレーターが含まれます。
He was not just some quack like most of the “educated” people in the field of medicine will like you to believe. His original business while still attending the university was with the firm of Carl Zeiss, at their New York City offices, and later at their offices in Germany where he worked directly with Carl Zeiss, Hans Luckel, and other scientists in the research, design, and production of excellent microscopes. He spent five years working with that group while he was attending the University of Heidelberg. It is stated that Rife worked with the United States Navy before and during World War One and that he was commissioned as a Lt. Commander USNR. During the years just before the great depression, Dr. Rife worked for both the United States Government and the Carl Zeiss Optics firm. At one period, his monetary base dissolved and he took a job as a chauffeur for multimillionaire Henry Timkin. Dr. Rife’s association with Henry Timkin served well for both of them. Timkin fabricated roller bearings. Some of the bearings were crumbling down due to imperfections in the steel used to create the bearings. Rife designed and built an X-ray device that monitored every bearing getting out and discarded every faulty one before it could be sent out as a finished product. He saved the company millions. Timkin was so satisfied that he established a monthly lifetime payment to Rife for providing the specialized X-ray machine for his production environment.
ヘンリー・ティムキンと彼のパートナーであるブリッジスは、ライフ博士とその研究に非常に魅了され続け、カリフォルニア州ポイント・ロマにある設備の整った研究室に資金を提供し、設立された研究室での研究プログラムの費用を負担するための基金を設立しました。 。上記の研究室で、彼はほとんどの実験を行いました。ある時点で、ライフ氏は 12 人もの研究助手を雇っていました。1916 年には、最も強力な顕微鏡の倍率は直径 2500 倍に達しました。この装置を使用すると、科学者は寄生虫、カビ、多くの細菌を見ることができましたが、ウイルスを見た人は誰もいませんでした。
Rife built a magnifying instrument that worked on a different principle than the existing microscopes of his day. The first microscope that enabled him to see a virus was built in 1920. Rife was the creator of the Universal Microscope which he introduced to the world in 1933 as the world’s most powerful microscope. One of the various attractive characteristics of this microscope is that, in contrast to the Electron Microscope, the Universal Microscope does not kill the specimens under observation and allows observation of actual living specimens in all conditions, indicating it does not rely on fixing or staining to render visibility or definition. With his microscope, Rife became the first human being actually to see a live virus, and until quite recently, the Universal Microscope was the only one who was able to observe living viruses. Modern electron microscopes instantly kill everything. The rife microscope can see the bustling activity of living viruses as they change form to accommodate changes in an environment, replicate rapidly in response to carcinogens, and transform normal cells into tumor cells. Rife managed this by utilizing various forms of lighting to bring the virus within visibility. He first used the technique of using light to stain the subjects because he understood that the particles of the chemical stains were much too large to enter into the structures he attempted to visualize.
Furthermore, stains used in microscopy are often lethal to the specimens. One factor allowing these original images was Rife’s use of a tool called a Risley counter-rotating prism. The refracted and polarized ray will normally hidden organism that is invisible and would become visible in color peculiar to their structure or chemical make-up. All optical elements were made of block quartz, which permits the passage of ultraviolet rays. この手段によってライフ氏は、細菌やウイルスが異なると異なる周波数で光ることを発見した。 背後にある科学が理解できない場合は、この記事を読んでください。 癌、禁断の治療法が蔓延する機械、科学的レビュー。 これは、生物がその屈折率、言い換えれば共鳴周波数によって分類できることを証明しました。言い換えれば、彼はそれらが異なる周波数で振動していることを発見しました。ライフ氏は、スリット分光器アタッチメントを使用して、各微生物の固有の分光学的特徴をゆっくりと分類しました。次に、プリズムを徐々にひねって、調べている微生物に個別の波長の光を集中させました。次に、すべての分子がその固有の周波数で振動するという現在確立されている事実に基づいて、微生物の分光学的特徴周波数と共鳴しました。
共鳴波長を利用することで、白色光では見えない微生物が、その独特の分光特性と共鳴する色の周波数にさらされると、突然、閃光として見えるようになります。ライフ氏は、通常は目に見えないこれらの生物を観察し、それらがどのように行動するかを観察することができました。彼は、通常の顕微鏡では誰も見ることができない生物を見ることができました。
Rife was so far ahead of his co-workers in the 1930s that it was hard for them to understand what he was actually doing without traveling directly to San Diego to Rife’s laboratory to look for themselves through his Virus Microscope. And several did precisely that. One was Virginia Livingston. She ultimately went from New Jersey to Rife’s Point Loma (San Diego) neighborhood to live and became a regular visitor to his lab. Virginia Livingston is now given credit for identifying the organism which causes human cancer, based on research papers she published in 1948. The real truth is that Rife had identified the human cancer virus in 1920. He called the cancer virus ‘Cryptocides primordiales.’ Virginia Livingston renamed it to ‘Progenitor Cryptocides.’ Royal Rife was never even stated in her papers.
In fact, Rife rarely got credit for his monumental discoveries. He was a modest, humble scientist, committed to expanding his discoveries rather than to ambition, fame, and glory. He started research work on tuberculosis in 1920. In a short time, it became clear to Rife there was more involved in this disease than a bacterium. This encouraged him to develop “virus” microscopes, of which two preceded the Universal. Rife was the first scientist to isolate and photographed active tuberculosis as well as many other viruses. Rife also worked in isolating a virus specific to cancer, seeing it gave off a unique purple-red emanation. There was no success until Rife by mistake left a tube in the light of an ionizing lamp. He noticed the tube became clouded, registering activity.
彼らの研究により、生きた宿主の外でのウイルスの培養に初めて成功した。. Rife extracted the cancer virus from a ” human breast mass.” He filtered, cultured, and re-cultured these over ten times over a two hundred and forty-hour period. They inserted the last-generation culture into the live rat. The rat would inevitably develop cancer. Rife would then extract cancer, extract the virus, and repeat the process. He did this procedure over four hundred times.
He established categorically that the virus-induced cancerous tumors in every instance. After Dr. Rife know how to see a virus, the next logical step became to devise a method to kill the virus or microbe without damage to the host. Since the days of Nikola Tesla and his work, men of science had known of the connection of frequencies with the operation of the human body, so Rife turned to electromagnetic frequencies because he could detect bacteria and viruses to unique frequencies and then expose them and watch the effects. He found that each microorganism had a distinct frequency to which it resonates and was defenseless. Rife termed this the “死亡振動率。”
Over and over again he would observe the virus absorbing energy and dying when a certain frequency was applied. Sometimes they even exploded. He created charts revealing which frequency settings would kill which microbe or virus. If he did not invent his microscope, there would have been no treatment based on resonance. Numerous reports and news stories emerged concerning these extraordinary achievements. His work became known to many physicians in the Southern California area. Some of them even came from all over the United States to observe what he was doing and verify his results. In November 1931, Dr. Milbank Johnson called forty-four Los Angeles area doctors to his home in Pasadena, California to acknowledge Rife for the work he was performing. Dr. Royal Rife was acknowledged as the man who ended all diseases that ever existed. Well, at least the ones that are infectious and can be bombarded with resonance. The banquet was even called “The End of All Disease.”
1934年、カリフォルニア州パサデナのミルバンク・ジョンソン博士率いる医師グループは、カリフォルニア大学が後援した実験で、サンディエゴの病院から16人の末期患者を連れてきた。共鳴を活性化して癌を破壊するために、ロイヤル・ライフ博士が推奨する周波数で90日間放射されました。
末期がん患者が完全に治癒したのは史上初のことだった。
この文をもう一度読んでください。
末期がん患者が完全に治癒したのは史上初のことだった。
その時点で、患者のうち 14 人にはがんがまったくなくなりました。その後、治療法、つまり共鳴周波数が調整され、残りの 2 人の患者も反応しました。
The recovery rate for patients that have non-treatable cancer and were declared terminally ill by the accepted medical industry by utilizing Rife’s resonant technology was 100%.
この文をもう一度読んでください。
治療不可能ながんを患い、医療業界によって末期症状と宣告された患者の回復率は、次のとおりです。 utilizing Rife’s resonant 技術力は100%でした。
Through 1939 Dr. Rife was formally summoned to address the Royal Society of Medicine in London, England, which had verified his findings. He further received invitations to lecture in France and Germany. Dr. R. Seidel described and formally published the Rife Ray Tube system therapy for the treatment of cancer in the journal of the Franklin Institute in February 1944. Dr. Rife’s treatments of the virus and bacterial infections and his microscopes were described and praised by the Smithsonian Institute in an article published in the Institute publication during 1944. A report from the Smithsonian Institution confirms Rife’s work. Titled “The New Microscope” by Dr. R.E. Seidel (report #3781) it states:
“Under the Universal Microscope disease organisms such as those of cancer … and another disease may be observed to succumb when exposed to certain lethal frequencies…”
ライフ氏は、ヘルペス、ポリオ、脊髄髄膜炎、破傷風、インフルエンザ、その他膨大な数の危険な病気の微生物を明確に破壊する周波数を検出するまで、一度に48時間働き、人生の何年にもわたる長い時間を要しました。
At first, an attempt was made to buy out Rife. Morris Fishbein, a physician who became the editor of the Journal of the American Medical Association, sent an attorney to Rife with “an offer he can’t refuse.”
ライフ氏は拒否した。
このオファーの正確な条件を知ることは決してできませんが、おそらく彼らは彼のマシンが市販されることを望んでいなかったでしょう。彼らはおそらく彼に賄賂を贈って彼の発明を破壊しようとしたのでしょう。たとえば、フィッシュバインがホクシーに同様の申し出をしたとき、彼は断った。フィッシュバインは非常に強力な政府組織を利用して、ホクシーを 16 か月間で 125 回逮捕した。告発は常に法廷から棄却されたが、嫌がらせは続いた。事態があまりに悪化したため、AMA は全国のすべての郵便局に、ホクシーやその他の代替がん治療法を使用することを人々に怖がらせるためのチラシを配布しました。しかし、私たちが理解する必要があるのは、彼が単独で行動したわけではないということです。当時彼はただのAMAのフロントマンでした。その後、1961 年に医師向け雑誌 Medical World News の創刊編集者になりました。
However, Fishbein and the AMA must have recognized that this approach would backfire if used on Rife. They could not arrest Rife as they could Hoxsey for practicing medicine without the license. Also, the trial that was compiled on trumped-up charges would mean that prominent medical authorities working with Rife would introduce their testimony supporting Rife and the word of his invention would come out to the general public. The defense would surely introduce evidence such as the 1934 medical study done with USC. If they have a public trial about a painless therapy that cured 100% of terminal cancer patients with medical proof and also cost nothing to use but a little electricity. Well, that was not what the powers at be wanted. Rife didn’t just show himself from nowhere. He was a well-known scientist that had spent decades collecting precise evidence of his work. He had film and stop-motion photographs that could be released to the public and so on.
彼らは異なる戦術を使用する必要があり、それが活用されました。
The first incident was the gradual disappearance of film, photographs, components, written records, and other evidence from Rife’s lab. The culprit was never caught.
その後、ライフ氏が失われたデータを複製しようとしたとき (コンピュータが利用できなかったとき)、誰かが彼の高価なウイルス顕微鏡を破壊しました。
Then the entire laboratory “mysteriously” burned at the time when the men running the laboratory were visiting Rife in San Diego.
Then the papers in Rife’s laboratory in San Diego “mysteriously” disappeared, as did parts of his microscopes.
The final blow happened later when police illegally seized the rest of Rife’s 50 years of research.
そして、ロイヤル・ライフ博士の功績が認められるよう最も貢献した医師は、ミルバンク・ジョンソン博士でした。ある日、1944年に主治医らは軽微な問題と考えていたため病院に運ばれたが、そこで食中毒で「謎の」死を遂げた。
Rife and partners had set up a company called the Ray Beam Tube Corporation to build the Rife Machine. He had given employment and a contract to an engineer to handle production. Fishbein supposedly supported the engineer to bring suit against Rife. The suit was long and expensive. Rife won, but the cost of the suit caused the financial destruction of the company and in time of the great depression end of production. A huge pile of cash was spent to ensure that doctors who had seen Rife’s therapy and knew about his work would forget everything or else were threatened by the American Medical Association and the State of California with the loss of their licenses if they continued on the program. Arthur Kendall, who worked with Rife on the cancer virus, accepted almost a quarter of a million dollars to suddenly ‘retire’ in Mexico. Dr. George Dock, who collaborated with Rife, was silenced with an enormous grant, along with the highest honors the AMA could bestow. Dr. Couche and Dr. Milbank Johnson also gave up Rife’s work and went back to prescribing drugs.
This treatment emotionally destroyed Rife himself and his entire program dissolved. The loss of his lab and the mental and emotional results of the lawsuit was enough to make Rife become an alcoholic. During 1950 Rife worked to improve energy instruments with John Crane. John Crane ended up with the right to the microscopes. In 1960 Medical officials invaded Crane’s lab and confiscated all of the devices and records. That was not enough, so he was also charged by the State of California for committing fraud and sent to prison.
ライフ氏はこの時メキシコに逃亡したと言われている。あの最後の事件の後、彼は誰とも協力しなかった。ライフ氏は晩年をエルカホンの老人ホームで過ごした後、1971年に心臓発作のためカリフォルニア州エルカホンのグロスマン病院で亡くなった。彼には友人も資金もありませんでした。彼は、あらゆる病気を治すための信じられないほどシンプルな電子的アプローチを発見しました。彼は、数え切れないほどの数百万の人々の苦しみを終わらせることができる低コストの発見をしました。それは地球上の生活を永遠に変えていたでしょう。確かに、医学界は、考えられる限りの賞賛と金銭的報酬を与えて、この治療法を急いで受け入れようとするでしょう。あなたは薬を時代遅れにする万能治療法と契約しており、その使用にかかる費用は電気代だけなので、製薬業界はあなたの仕事の話を聞いて興奮するかもしれません。もちろん、これを単なる面白いフィクションだと考える人もいるかもしれません。自分で調べて、自分の望むものを信じてください。実際、この技術は適切に開発されれば大きな可能性を秘めています。ここでの唯一の疑問は、すべてのウイルスをターゲットにできるのか、それとも一部だけをターゲットにできるのかということです。私たちは、彼が癌を100パーセントの範囲で治癒したことを知っています。ただし、微生物の共鳴が人間の細胞の残りの部分に近すぎる場合、放射線はエネルギーの一部をそれらに伝達し、通常の組織を燃焼させますが、周波数が独特であれば、これは機能する可能性があります。たとえば、今日では何千人もの人々がライム病と診断されていますが、抗生物質による治療では長期的な症状は改善されません。蔓延する機械療法は価値があり、ライム病に対して現存する唯一の長期療法であることが判明しています。しかし、実際のところは決して分かりません。ライフの研究から残されたオリジナルのデータはありません。彼の後の科学はこれまでに研究されていません。
この狂気の犯罪の規模は、歴史上のすべての大量殺人を覆い隠します。
参考文献:
本からの抜粋ポキミツァ、ミロス ビーガンに行きますか?科学の復習パート 2. Kindle版、 アマゾン、2018年。
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ミロス・ポキミカは、自然医学の医師、臨床栄養士、医療健康と栄養のライター、栄養科学アドバイザーです。書籍シリーズの著者 ビーガンに行きますか?科学の復習また、自然健康サイト「GoVeganWay.com」を運営している。
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- The effects of popular diets on bone health in the past decade: a narrative reviewby Yue Peng on 4月 26, 2024
Bone health encompasses not only bone mineral density but also bone architecture and mechanical properties that can impact bone strength. While specific dietary interventions have been proposed to treat various diseases such as obesity and diabetes, their effects on bone health remain unclear. The aim of this review is to examine literature published in the past decade, summarize the effects of currently popular diets on bone health, elucidate underlying mechanisms, and provide solutions to…
- MicroRNAs from edible plants reach the human gastrointestinal tract and may act as potential regulators of gene expressionby Ester Díez-Sainz on 4月 25, 2024
MicroRNAs (miRNAs) are small single-stranded non-coding RNA molecules that regulate gene expression at the post-transcriptional level. A cross-kingdom regulatory function has been unveiled for plant miRNAs (xenomiRs), which could shape inter-species interactions of plants with other organisms (bacteria and humans) and thus, be key functional molecules of plant-based food in mammals. However, discrepancies regarding the stability and bioavailability of dietary plant miRNAs on the host cast in…
- Motivations matter: moral and health-related motives indirectly relate to differential psychological health indicators among vegetariansby Xiaoyu Dai on 4月 25, 2024
Due to rising popularity of vegetarianism in recent years, research interest has surged in examining the relationship between vegetarianism and psychological health. However, given inconsistent findings in prior research, the answer to whether practicing vegetarianism is associated with better or worse psychological health is still elusive. The present investigation aimed to demonstrate that vegetarians are not homogeneous in terms of psychological experiences, such that it is crucial to…
- Mapping the evidence of novel plant-based foods: a systematic review of nutritional, health, and environmental impacts in high-income countriesby Sarah Nájera Espinosa on 4月 24, 2024
CONCLUSION: If carefully selected, certain NPBFs have the potential to be healthier and nutrient-rich alternatives to ABFs and typically have smaller environmental footprints. More disaggregated categorization of various types of NPBFs would be a helpful step in guiding consumers and key stakeholders to make informed decisions. To enable informed policymaking on the inclusion of NPBFs in dietary transitions as part of a wider net-zero and health strategy, future priorities should include…
- Vegan grade medium component screening and concentration optimization for the fermentation of the probiotic strain Lactobacillus paracasei IMC 502® using Design of Experimentsby Darshankumar Parecha on 4月 24, 2024
Lactobacillus paracasei IMC502® is a commercially successful probiotic strain, however, there are no reports that investigate growth medium composition in relation to improved biomass production for this strain. The major outcome of the present study is the design and optimization of a growth medium based on vegan components to be used in the cultivation of Lactobacillus paracasei IMC502®, by using Design of Experiments (DoE). Besides comparing different carbon sources, the use of […]
- Metaproteomics and DNA metabarcoding as tools to assess dietary intake in humansby Brianna L Petrone on 4月 22, 2024
Objective biomarkers of food intake are a sought-after goal in nutrition research. Most biomarker development to date has focused on metabolites detected in blood, urine, skin or hair, but detection of consumed foods in stool has also been shown to be possible via DNA sequencing. An additional food macromolecule in stool that harbors sequence information is protein. However, the use of protein as an intake biomarker has only been explored to a very limited extent. Here, we evaluate and […]