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"In Situ Hybridization, Fluorescence"¿¡ ´ëÇÑ °Ë»ö °á°úÀÔ´Ï´Ù. °Ë»ö °á°ú º¸´Â µµÁß¿¡ Tab ۸¦ ´©¸£½Ã¸é °Ë»ö âÀÌ ¼±Åõ˴ϴÙ.
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  • ¿µ¹®
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  • particle concentration fluorescence
    ÀÔÀÚ³óÃàÇü±¤
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  • cell hybridization
    ¼¼Æ÷ºÎÇÕÈ­, ¼¼Æ÷ÇÏÀ̺긮µåÈ­
  • colony hybridization
    Áý¶ôºÎÇÕÈ­
  • hybridization colony
    Áý¶ôºÎÇÕÈ­
  • dot blot hybridization
    ¹ÝÁ¡Å¹º»ºÎÇÕ¹ý
  • hybridization
    ºÎÇÕÈ­
  • hybridization plaque
    ÇöóÅ©ºÎÇÕ¹ý
  • Northern hybridization
    ³ë´øºÎÇÕ¹ý
  • nucleic acid hybridization
    ÇÙ»êºÎÇÕÈ­
  • Southern hybridization
    ¼­´øºÎÇÕ¹ý
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  • ¿µ¹®
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  • hybridization, Northern
    ³ë´øºÎÇÕ¹ý(ݬùêÛö)
  • hybridization, Southern
    ¼­´øºÎÇÕ¹ý(ݬùêÛö)
  • hybridization, colony
    Áý¶ôºÎÇÕÈ­(~ݬùêûù), ¼¼Æ÷±ººÎÇÕÈ­
  • hybridization, dot blot
    ¹ÝÁ¡Å¹º»ºÎÇÕ¹ý(~ݬùêÛö), ¹ÝÁ¡Ç¥Áö¹ý
  • hybridization, nucleic acid
    ÇÙ»êºÎÇÕ¹ý(ݬùêÛö)
  • hybridization, plaque
    ÇöóÅ©ºÎÇÕ¹ý(ݬùêÛö)
  • plaque hybridization
    ÇöóÅ© ºÎÇÕ¹ý(ݬùêÛö)
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  • hybridization, DNA-DNA
    DNA-DNA ¦Áö¿ì±â, DNA-DNA ºÎÇÕÈ­(~ݬùêûù)
  • hybridization, DNA-RNA
    DNA-RNA ¦Áö¿ì±â, DNA-RNA ºÎÇÕÈ­(~ݬùêûù)
  • hybridization, Northern
    ³ë´øºÎÇÕ¹ý(ݬùêÛö)
  • hybridization, Southern
    ¼­´øºÎÇÕ¹ý(ݬùêÛö)
  • hybridization, colony
    Áý¶ôºÎÇÕÈ­(~ݬùêûù), ¼¼Æ÷±ººÎÇÕÈ­
  • hybridization, dot blot
    ¹ÝÁ¡Å¹º»ºÎÇÕ¹ý(~ݬùêÛö), ¹ÝÁ¡Ç¥Áö¹ý
  • hybridization, nucleic acid
    ÇÙ»êºÎÇÕ¹ý(ݬùêÛö)
  • hybridization, plaque
    ÇöóÅ©ºÎÇÕ¹ý(ݬùêÛö)
  • nucleic acid hybridization
    ÇÙ»êºÎÇÕ¹ý(~ݬùêÛö)
  • plaque hybridization
    ÇöóÅ© ºÎÇÕ¹ý(ݬùêÛö)
  • background fluorescence
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  • fluorescence
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  • fluorescence activated cell sorter
    Çü±¤Ç¥Áö¼¼Æ÷ºÐ¸®±â FACS
  • fluorescence correlation
    Çü±¤»ó°ü
  • fluorescence correlation immunoassay
    Çü±¤»ó°ü¸é¿ªÃøÁ¤(¹ý)
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  • cell hybridization
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  • colony hybridization
    "ÄÝ·Î´Ï Æ¢±â Çü¼º(û¡à÷),"
  • cross-hybridization
    ±³Â÷(Îßó©)Æ¢±â Çü¼º(û¡à÷)
  • DNA-driven hybridization
    DNAÃßÁø(õÏòä) Æ¢±âÇü¼º(û¡à÷)
  • filter hybridization
    ¿©Áö(æ¤òµ) Æ¢±âÇü¼º
  • gel blot hybridization
    Á© ºí·Ô Æ¢±âÇü¼º(û¡à÷)
  • hybridization
    Æ¢±â»ý¼º(ßæà÷)
  • liquid hybridization
    ¾×ü(äûô÷) Æ¢±â»ý¼º(ßæà÷)
  • RNA-driven hybridization
    RNA ÁÖµ¿(ñ«ÔÑ) ÇÏÀ̺긮µåÈ­(ûù)
  • saturation hybridization
    Æ÷È­(øéûù) Æ¢±â Çü¼º(û¡à÷)
  • solution hybridization
    ¿ë¾×(éÁäû) Æ¢±âÇü¼º(û¡à÷)
KMLE ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
OH hydroxycorticosteroid; obstructive hypopnea; occipital horn; occupational health; occupational histo...
CIS Carcinoma In Situ
CIN 3, CIN III cervical intraepithelial neoplasia, grade 3 (severe dysplasia and carcinoma in situ)
CIS carcinoma in situ; catheter-induced spasm; central inhibitory state; Chemical Information Service; c...
DCIS ductal carcinoma in situ
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
ISH In situ hybridization histochemistry
RISH RNA in situ hybridization
CGH Comparative genome hybridization
3H Hybridization of
3H Hybridization with
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
somatic cell hybridization Production of a heterokaryon.
(05 Mar 2000)
nucleic acid hybridization Widely used technique which exploits the ability of complementary sequences in single-stranded dnas or rnas to pair with each other to form a double helix. Hybridization can take place between two complimentary DNA sequences, between a single-stranded DNA and a complementary RNA, or between two RNA sequences. The technique is used to detect and isolate specific sequences, measure homology, or define other characteristics of one or both strands. (kendrew, encyclopedia of molecular biology, 1994, p503; dorlands, 28th ed, p781)
(12 Dec 1998)
DNA hybridization A technique used to determine the relatedness of microorganisms by the speed and efficiency of the reassociation of single-stranded DNA to form double-stranded DNA when one of the strands originates from one organism and the other strand from another organism; occurs when the base sequences are complementary or nearly so.
(05 Mar 2000)
overlap hybridization A procedure to find and sequence a gene whose approximate position in a chromosome is known by classical genetic linkage studies. Starting with the known sequence of a gene shown by classical genetics to be near to the novel gene, new clones are picked from a genomic library by hybridisation with a short probe generated from the appropriate end of the known sequence. The new clones are then sequenced, new probes generated and the process repeated until the gene of interest is reached.
(18 Nov 1997)
ratio imaging fluorescence microscopy <procedure> A method of measurement of intracellular pH or intracellular calcium levels, using a fluorescent probe molecule (see fura-2), in which the two different excitation wavelengths are used and the emitted light levels compared.
If emission at one wavelength is sensitive to the intracellular ion level and emission at the other wavelength is not, then standardisation for intracellular probe concentration, efficiency of light collection, inactivation of probe and thickness of cytoplasm can all be performed automatically.
(17 Dec 1997)
microscopy, fluorescence Microscopy of specimens stained with fluorescent dye (usually fluorescein isothiocyanate) or of naturally fluorescent materials, which emit light when exposed to ultraviolet or blue light. Immunofluorescence microscopy utilises antibodies that are labelled with fluorescent dye.
(12 Dec 1998)
spectrometry, fluorescence Measurement of the intensity and quality of fluorescence.
(12 Dec 1998)
Eranko's fluorescence stain <technique> Exposure of frozen sections to formaldehyde which produces a strong yellow-green fluorescence from cells containing norepinephrine.
(05 Mar 2000)
fluorescence <chemistry, physics> The emission of one or more photons by a molecule or atom activated by the absorption of a quantum of electro magnetic radiation.
Typically the emission, that is of longer wavelength than the excitatory radiation, occurs within 10exp 8 seconds: phosphorescence is a phenomenon with a longer or much longer delay in re radiation. Note that rays, X-rays, UV, visible light and IR radiations may all stimulate fluorescence.
(25 Jun 1999)
fluorescence-activated cell sorter <technique> Flow cytometry is an emerging technique which holds great promise for the separation, classification and quantitation of blood cells and antibodies which affect blood cells.
Complex computerised instruments are used to pass a monocellular stream of cells, platelets or other microscopic particulate elements through a beam of laser light. The cells are categorised first by size and then computer analysed to sort the mixture of cellular elements into cell type by size.
Cells are labelled with fluorescent dye and then passed, in suspending medium, through a narrow dropping nozzle so that each cell is in a small droplet. A laser based detector system is used to excite fluorescence and droplets with positively fluorescent cells are given an electric charge. Charged and uncharged droplets are separated as they fall between charged plates and so collect in different tubes. The machine can be used either as an analytical tool, counting the number of labelled cells in a population or to separate the cells for subsequent growth of the selected population. Further sophistication can be built into the system by using a second laser system at right angles to the first to look at a second fluorescent label or to gauge cell size on the basis of light scatter. The great strength of the system is that it looks at large numbers of individual cells and makes possible the separation of populations with, for example: particular surface properties.
Tabulation of counted data in conjunction with size analysis enables determination of relative percentages of each specific cellular subset for which monoclonal antibody conjugates are utilised, even when the size of the cell is identical to other subset species.
Flow cytometry is a slightly imprecise but common term for the use of the Fluorescence-activated Cell Sorter (FACS).
(01 Dec 1998)
fluorescence-activated cell sorting <technique> A technique for separating and sorting cells marked with a fluorescent label based on how much they fluoresce at a particular wavelength.
(12 Jan 1998)
fluorescence energy transfer <technique> Transfer of energy from one fluorochrome to another. The emission wavelength of the fluorochrome excited by the incident light must approximately match the excitation wavelength of the second fluorochrome.
If light at the second emission wavelength is detected, it implies that the two fluorochromes were physically within a few nanometres. Used as a technique to probe protein or cell interactions.
(25 Jun 1999)
fluorescence immunoassay <technique> A sensitive technique which uses fluorescein, a fluorescent molecule, to measure the antigen or antibody concentration in a solution.
(09 Oct 1997)
fluorescence microscope <instrument, microscopy> A microscope illuminated by ultraviolet or blue light so that the object may re-radiate light of longer wavelengths. To protect the eyes, a W-absorbing filter should be provided if not built into the fluorescence microscope.
(05 Aug 1998)
fluorescence microscopy <procedure> Any type of microscopy in which intrinsic or applied reagents are visualised. Intrinsic fluorescence is often referred to as auto fluorescence. The applied reagents typically include fluorescently labelled proteins that are reactive with sites in the specimen. In particular, fluorescently labelled antibodies are widely used to detect particular antigens in biological specimens.
(18 Nov 1997)
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