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Tumor quantum biology early stage diagnosis-tumor ultraviolet absorption spectrum energy measurement technology

A technology of quantum biology and external absorption, applied in the measurement of color/spectral properties, etc., can solve the problem of premature diagnosis of tumors and other problems

Inactive Publication Date: 2014-12-31
王汉成
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Problems solved by technology

In fact, in the absence of a clear understanding of the etiology of tumors, it is indeed too early to say what technology is used for the early diagnosis of tumors.

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  • Tumor quantum biology early stage diagnosis-tumor ultraviolet absorption spectrum energy measurement technology

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Embodiment Construction

[0018] After detecting the absorption spectrum curves of MCF-10A human normal breast epithelial cells, MCF-7 breast cancer cells, MDA-MB-231 breast cancer cells, HeLa cells, measles virus and other characteristics by ultraviolet absorption spectroscopy energy measurement technology, it is pointed out that the absorption peak curves of these characteristics Attributed to the interaction of DNA and proteins in cells. The relationship between the blue shift of the cancer gene wavelength and the DNA momentum reveals that the nuclear binding energy-gene threshold value is a measure of the stability of the nucleus, and the highest limit of the gene barrier is 255.84 nm ultraviolet absorption peak wavelength, which exceeds the height of the gene saddle point. DNA will fission (cancerous). Detection of gene threshold energy barrier height is the real early diagnosis technology for tumors. After nuclear fission, cancer cell doubling, chromosome changes, and secretion of carcinoembryoni...

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Abstract

A result of the detection of normal and abnormal absorption spectrum of MCF-7, HeLa cells, measles viruses and the like through an ultraviolet absorption spectrum energy measurement technique shows that characteristic absorption peak curves mean the interaction of DNA and proteins in cells. The shape of curves of a same substance with different concentrations is completely same. A cancer cell gene isomer is a long-lived excited nuclide, and has a blue shift of 5-8nm from the maximum absorption wavelength of proto-oncogene, so a nuclear binding energy-gene threshold value is the measurement of the nuclear stability degree. The maximum gene barrier height lambdamax is 255.84nm, and DNA fission (canceration) is carried out when the maximum gene barrier exceeds gene saddle point height. A true tumor early stage diagnosis technology is used for detecting the gene threshold value barrier height. The multiplication of cancer cells and the secretion of oncofetal antigens appear after the cell canceration, and the cancer cells and the oncofetal antigens are cancer later stage detection products. The ultraviolet absorption spectrum energy measurement technology can rapidly detect the gene threshold value DNA quantum and momentum (Schrodinger quantum mechanics), and is excellent as a tumor early diagnosis technology.

Description

Background technique [0001] Malignant tumors are one of the diseases that seriously threaten human health. More and more studies have shown that the occurrence of malignant tumors is closely related to the abnormal expression of cellular genes. Therefore, it is of great significance to establish a method for rapid, accurate and sensitive detection of gene expression levels for early diagnosis and treatment of tumors. At present, the methods for clinical diagnosis of tumors can be divided into three categories: cell biology detection, molecular biology detection and epigenetic detection methods; [0002] The first generation of tumor cell biology detection methods; the morphological relationship between cancer and cell chromosome changes; [0003] Tumor morphology observation method for early detection of chromosomal changes in cancer cells; Quantitative detection of genetic material (DNA) ploidy in the nucleus through the quantitative analysis system of cell DNA, changes in t...

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Application Information

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IPC IPC(8): G01N21/33
Inventor 王汉成
Owner 王汉成
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