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"colony hybridisation"¿¡ ´ëÇÑ °Ë»ö °á°úÀÔ´Ï´Ù. °Ë»ö °á°ú º¸´Â µµÁß¿¡ Tab ۸¦ ´©¸£½Ã¸é °Ë»ö âÀÌ ¼±Åõ˴ϴÙ.
À̰ÍÀ» ¿øÇϼ̽À´Ï±î?
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¿µ¹® colony ÇÑ±Û Áý¶ô
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  ¼¼±Õ ¶Ç´Â ´Ü¼¼Æ÷ Á¶·ù-±Õ·ù µîÀÌ °íÇü¹èÁö¿¡¼­ À°¾ÈÀ¸·Î º¼ ¼ö Àִ Áý´Ü. ´ëÀå±ÕÀ̳ª °íÃʱհú °°ÀÌ Áõ½ÄÀÌ ºü¸¥ ±ÕÀ» Àû´çÇÑ ¹èÁö¿¡¼­ ¹è¾çÇϸé 24½Ã°£ À̳»¿¡ À°¾ÈÀ¸·Î º¼ ¼ö Àִ Äݷδϸ¦ ¸¸µå´Âµ¥ °áÇÙ±Õ µîÀº 1ÁÖÀÏ ÀÌ»óÀÌ ¼Ò¿äµÈ´Ù. Áý¶ôÀÇ Çü¼ºÀº ±ÕÀÇ Á¾·ù³ª ¹èÁöÀÇ Á¶¼º-¹è¾ç½Ã°£-¿Âµµ-½Àµµ µî ¸¹Àº ÀÎÀÚ¿¡ ÀÇÇÏ¿© ¿µÇâÀ» ¹Þ´Â´Ù. Áý¶ôÀÇ ¼º»óÀ» Å©±â-¸ð¾ç-ºû±ò-Åõ¸íµµ -±»±â µî¿¡ ´ëÇÏ¿© °üÂûÇÏ¿© ±ÕÁ¾À» µ¿Á¤Çϴ µ¥ Âü°í·Î ÇÒ ¼ö ÀÖ´Ù. ¶ÇÇѠƯÈ÷ ¼¼Æ÷ÀÇ °æ¿ì¿¡´Â ÀÏÁ¤ÇÑ ¹èÁö-Á¶°Ç ¾Æ·¡¼­ ´ÜÀÏÁ¾ÀÇ Áý¶ôÀÇ ÇüÅ´ Á¾ÀǠƯ¡À¸·Î °Å·ÐµÇ´Â ÀÏÀÌ ÀÖ´Ù. ±ÕÀÇ º¯ÀÌ Áß¿¡´Â Áý¶ô ¼º»óÀÇ º¯È­¸¦ ¼ö¹ÝÇϴ °ÍÀÌ ÀÖ´Ù.
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  • ¿µ¹®
    ÇѱÛ
  • bacterial colony
    ¼¼±ÕÁý¶ô
  • colony
    Áý¶ô
  • colony count
    Áý¶ô¼ö, Áý¶ô°è»ê
  • colony counter
    Áý¶ô°è¼ö±â
  • colony hybridization
    Áý¶ôºÎÇÕÈ­
  • colony-forming unit
    Áý¶ôÇü¼º´ÜÀ§
  • colony-stimulating factor
    Áý¶ôÀÚ±ØÀÎÀÚ
  • dwarf colony
    ¿Ö¼ÒÁý¶ô
  • dysgonic colony
    ´úÀÚ¶ó´ÂÁý¶ô
  • daughter colony
    µþÁý¶ô
  • eugonic colony
    ÀßÀÚ¶ó´ÂÁý¶ô, ¹ßÀ°¾çÈ£Áý¶ô
  • giant colony
    °Å´ëÁý¶ô
  • glossy colony
    ±¤ÅÃÁý¶ô
  • granulocyte colony-stimulating factor
    °ú¸³±¸Áý¶ôÀÚ±ØÀÎÀÚ
  • granulocyte-macrophage colony-stimulating factor
    °ú¸³±¸Å«Æ÷½Ä¼¼Æ÷Áý¶ôÀÚ±ØÀÎÀÚ, °ú¸³±¸´ë½Ä±¸Áý¶ôÀÚ±ØÀÎÀÚ
´ëÇÑÀÇÇù Çʼö ÀÇÇпë¾îÁý »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 2 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • colony
    Áý¶ô
  • bacterial colony
    ¼¼±ÕÁý¶ô
¿¾ ´ëÇÑÀÇÇù ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • bacterial colony
    ¼¼±ÕÁý¶ô
  • colony
    Áý¶ô
  • colony count
    Áý¶ô¼ö, Áý¶ô°è»ê
  • colony counter
    Áý¶ô°è¼ö±â
  • colony hybridization
    Áý¶ôºÎÇÕÈ­
  • colony inhibition test
    ¼¼Æ÷±ºÇü¼º¾ïÁ¦°Ë»ç, Áý¶ôÇü¼º¾ïÁ¦°Ë»ç
  • colony-forming unit
    Áý¶ôÇü¼º´ÜÀ§
  • colony-stimulating factor
    Áý¶ôÀÚ±ØÀÎÀÚ
  • daughter colony
    µþÁý¶ô
  • dew-drop colony
    À̽½¹æ¿ïÁý¶ô
  • dwarf colony
    ¿Ö¼ÒÁý¶ô
  • dysgonic colony
    ´úÀÚ¶ó´ÂÁý¶ô
  • eugonic colony
    ÀßÀÚ¶ó´ÂÁý¶ô
  • giant colony
    °Å´ëÁý¶ô
  • glossy colony
    ±¤ÅÃÁý¶ô
¿¾ ´ëÇÑÀÇÇù 2 ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 12 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • G-CSF (Granulocyte colony-stimulating factor)
    °ú¸³¼¼Æ÷±ºÃËÁøÀÎÀÚ(Î¨Ø£á¬øàÏØõµòäì×í­)
  • Macrophage colony-stimulating factor
    ´ë½Ä¼¼Æ÷Áý¶ôÇü¼ºÃËÁøÀÎÀÚ(ÓÞãÝá¬øàó¢Õªû¡à÷õµòäì×í­)à÷õµòäì×?
  • R colony
    RÁý¶ô, °ÅÄ£Áý¶ô, Á¶¸éÁý¶ô
  • giant colony
    °Å´ëÁý¶ô(¡­ó¢Õª).
  • giant colony
    °Å´ëÁý¶ô(¡­ó¢Õª).
  • glossy colony
    ±¤ÅÃÁý¶ô
  • granulocyte colony-stimulating factor
    °ú¸³±¸Áý¶ôÀÚ±ØÀÎÀÚ
  • granulocyte colony-stimulating factor=G-CSF
    °ú¸³±¸Áý¶ôÀÚ±ØÀÎÀÚ
  • granulocyte-macrophage colony- stimulating factor
    °ú¸³±¸´ë½Ä¼¼Æ÷Áý¶ôÀÚ±ØÀÎÀÚ
  • granulocyte-macrophage colony-stimulating factor=GM-CSF
    °ú¸³±¸-´ë½Ä¼¼Æ÷Áý¶ôÀÚ±ØÀÎÀÚ
  • hybridization, colony
    Áý¶ôºÎÇÕÈ­(~ݬùêûù), ¼¼Æ÷±ººÎÇÕÈ­
  • plating colony count technique
    ÆòÆÇ¹è¾ç Áý¶ô°è¼ö¹ý
¿¾ ´ëÇÑÀÇÇù 3 ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • bacterial colony
    ¼¼±ÕÁý¶ô(¡­ó¢Õª).
  • colony
    Áý¶ô(ó¢Õª) ¡ì¼¼±ÕÀÇ¡í, ±ºÃ¼(ÏØô÷) ¡ìµ¿¹°ÀÇ¡í, ÄݷδÏ.
  • colony
    Áý¶ô
  • colony
    Áý¶ô(ó¢Õª) ¡ì¼¼±ÕÀÇ¡í, ±ºÃ¼(ÏØô÷) ¡ìµ¿¹°ÀÇ¡í, ÄݷδÏ.
  • colony counter
    Áý¶ô°è»ê±â(¡­Íªß©Ðï), Áý¶ô°è¼ö±â.
  • colony counter
    Áý¶ô°è»ê±â(¡­Íªß©Ðï), Áý¶ô°è¼ö±â.
  • colony formation assay
    Áý¶ôÇü¼º´ÉÃøÁ¤
  • colony forming cell
    ³»ºÎ Áý¶ôÇü¼º¼¼Æ÷.
  • colony forming unit
    Áý¶ôÇü¼º´ÜÀ§(ó¢Õªû¡à÷Ó¤êÈ)
  • colony forming unit (CFU)
    Áý¶ô¼ö, »ý±Õ¼ö, ¼¼Æ÷±º¼ö
  • colony hybridization
    Áý¶ôºÎÇÕÈ­(~ݬùêûù), ¼¼Æ÷±ººÎÇÕÈ­(~ݬùêûù)
  • colony inhibition
    ±ÕÁý¶ô¾ïÁ¦(жó¢Õªåäð¤), ±ºÃ¼¾ïÁ¦(ÏØô÷åäð¤).
  • colony inhibition test
    Áý¶ôÇü¼º ÀúÁö½ÃÇè, ¼¼Æ÷±ºÇü¼º ÀúÁö½ÃÇè
  • colony stimulating factor
    Áý¶ôÀÚ±ØÀÎÀÚ(ó¢Õªí©Ð½ì×í­)
  • colony stimulating factor 1 (CSF-1)
    Áý¶ôÀÚ±ØÀÎÀÚ-1, ¼¼Æ÷±ºÀÚ±ØÀÎÀÚ-1
´ëÇÑ»ýÈ­ÇкÐÀÚ»ý¹°ÇÐȸ ¿ë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 4 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • colony
    ÄݷδÏ
  • colony bank
    ÄÝ·Î´Ï ÀºÇà(ëÞú¼)
  • colony hybridization
    "ÄÝ·Î´Ï Æ¢±â Çü¼º(û¡à÷),"
  • colony-stimulating factor
    ÄݷδÏÀÚ±Ø ÀÎÀÚ(í©Ð½ì×í­)
KI ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 1 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
  • colony
    Áý¶ô, ±ºÃ¼, ÄݷδÏ
KMLE ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 1
CFC capillary filtration coefficient; colony-forming capacity; cardiofaciocutaneous [syndrome]; chlorofl...
CFU-S, CFUS colony-forming unit, spleen; colony-forming unit, stem cells
CFU Colony Forming Unit
CFUe erythroid Colony Forming Unit
CSF   1) Cerebro-Spinal Fluid; ³úô¼ö¾×
  2) Colony Stimulating Factor
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 1
GM-CSF Granulocyte colony-stimulating factor , granulocyte-macrophage colony-stimulating factor
G-CSF Granulocyte-Macrophage Colony-Stimulating Factor , Granulocyte Colony-Stimulating Factor
CGH Comparative Genomic Hybridisation
ISH In Situ Hybridisation
ISHH In situ hybridisation histochemistry
°æºÏ´ë Ä¡°ú´ëÇÐ ±¸°­³»°ú ±³½Ç »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 1
  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • colony
    Áý¶ô, ±ºÃ¼, ÄݷδÏ
    °á¸®µÈ ÇÑ °³ÀÇ ¼¼±Õ ¶Ç´Â ¿©·¯ ¼¼±ÕÀÇ ¹«¸®¿¡¼­ À¯·¡ÇÏ¿© ¹èÁö»ó¿¡ Áõ½ÄµÈ ¼¼±ÕÀÇ ÁýÇÕü ¶Ç´Â ¹«¸®.
  • colony formation assay
    Áý¶ô Çü¼º´É ÃøÁ¤
  • colony stimulating factor
    ±ºÃ¼ ÀÚ±Ø ¿ä¼Ò, Áý¶ô ÀÚ±Ø ÀÎÀÚ
    ¹ß´Þ ´Ü°èÀÇ Àü±¸Àû ¼¼Æ÷°¡ Áý¶ôÀ» Çü¼ºÇÏ´Â °úÁ¤¿¡´Â À̰ÍÀÇ ÀÛ¿ëÀÌ ÇÊ¿äÇÏ´Ù´Â °ÍÀÌ ÀνĵǾú´Ù. ÀÌ ÀÎÀÚ´Â ¼¶À¯¾Æ¼¼Æ÷, ³»ÇǼ¼Æ÷, ´ë½Ä¼¼Æ÷ µî¿¡¼­ »ý»êµÇ¸ç ¼º¼÷ÇÑ ¸é¿ª°è ¼¼Æ÷ÀÇ ÀÛ¿ë¿¡µµ ¿µÇâÀ» ³¢Ä£´Ù.
  • colony-building unit
    ±ºÃ¼ Çü¼º ´ÜÀ§
  • smooth colony
    ½º¹«µå Áý¶ô, SÁý¶ô
CancerWEB ¿µ¿µ ÀÇÇлçÀü ¸ÂÃã °Ë»ö °á°ú : 1 ÆäÀÌÁö: 1
colony hybridisation <molecular biology> A genetics lab technique used to identify which colonies of bacteria on an agar plate contain a particular sequence of DNA or a particular gene.
The technique involves pressing a nylon or nitrocellulose membrane onto the plate so that each colony contributes a small smudge of itself to the membrane, then treating the membrane with chemicals and heat, then washing the membrane with a labelled probe to find the specific DNA sequence. The smudges which are indicated by the probe are then compared back to the colonies on the agar plate. This technique is often used in conjunction with experiments involving the making of genomic libraries.
(09 Oct 1997)
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 1
competition hybridisation <molecular biology, technique> A lab technique used to determine how similar two strands of single-stranded nucleic acids are to each other by putting them with a third strand (called a standard) and observing how well they can bond with each other to become double-stranded (how well they hybridize).
(05 Jan 1998)
cross-hybridisation <molecular biology> The hydrogen bonding of asingle-stranded DNA sequence that is partially but not entirely complementary to a single-stranded substrate. Often, this involves hybridising a DNA probe for a specific DNA sequence to the homologous sequences of different species.
(09 Oct 1997)
hybridisation <molecular biology> The process of joining two complementary strands of DNA or one each of DNA and RNA to form a double-stranded molecule.
Technique in which single stranded nucleic acids are allowed to interact so that complexes or hybrids, are formed by molecules with sufficiently similar, complementary sequences. By this means the degree of sequence identity can be assessed and specific sequences detected. The hybridisation can be carried out in solution or with one component immobilised on a gel or, most commonly, nitrocellulose paper.
Hybrids are detected by various means: visualisation in the electron microscope, by radioactively labelling one component and removing noncomplexed DNA or by washing or digestion with an enzyme that attacks single stranded nucleic acids and finally estimating the radioactivity bound. Hybridisations are done in all combinations: DNA DNA (DNA can be rendered single stranded by heat denaturation), DNA RNA or RNA RNA.
In situ hybridisations involve hybridising a labelled nucleic acid (often labelled with a fluorescent dye) to suitably prepared cells or histological sections. This is used particularly to look for specific transcription or localisation of genes to specific chromosomes (FISH analysis).
<zoology> The mating of individuals from different species or sub-species.
(13 Oct 1997)
hybridisation stringency <molecular biology> The percentage of nucleotides which must match on two unrelated single-stranded nucleic acid molecules before they will base pair with each other to form a duplex, given a certain set of physical and chemical conditions.
The hybridisation stringency is used to determine when a hybridisation probe and a target nucleic acid will come together, and can be set by the researcher by varying the conditions. In general, if the percentage of matching nucleotides is lower than 70 percent, the two single-stranded nucleic acid molecules are considered nonhomologous and any hybridisation is considered nonstringent.
(13 Oct 1997)
DNA hybridisation <molecular biology> The process of joining two complementary strands of DNA or one each of DNA and RNA to form a double-stranded molecule.
Technique in which single stranded nucleic acids are allowed to interact so that complexes or hybrids, are formed by molecules with sufficiently similar, complementary sequences. By this means the degree of sequence identity can be assessed and specific sequences detected. The hybridisation can be carried out in solution or with one component immobilised on a gel or, most commonly, nitrocellulose paper.
Hybrids are detected by various means: visualisation in the electron microscope, by radioactively labelling one component and removing noncomplexed DNA or by washing or digestion with an enzyme that attacks single stranded nucleic acids and finally estimating the radioactivity bound. Hybridisations are done in all combinations: DNA DNA (DNA can be rendered single stranded by heat denaturation), DNA RNA or RNA RNA.
In situ hybridisations involve hybridising a labelled nucleic acid (often labelled with a fluorescent dye) to suitably prepared cells or histological sections. This is used particularly to look for specific transcription or localisation of genes to specific chromosomes (FISH analysis).
<zoology> The mating of individuals from different species or sub-species.
(13 Oct 1997)
DNA-RNA hybridisation <molecular biology> A type of hybridisation. In this case, a strand of DNA is joined with a complementary strand of RNA to form a double-stranded molecule (or one which is partly double-stranded, if one of the original single strands is shorter than the other).
(09 Oct 1997)
in situ hybridisation <molecular biology, technique> Use of a DNA or RNA probe todetect the presence of the complementaryDNA sequence in cloned bacterial or cultured eukaryotic cells.Also used for locating geneson chromosomes. The process is:
Prepare microscope slide with cells in metaphase of mitosis, Treat slide with a weak base. Thus denaturing the DNA. Pour radioactively labelled probe onto the slide. Expose slide to photographic emulsion for a few days or weeks. Develop emulsion.
(13 Oct 1997)
macrophage colony-stimulating factor <growth factor> A glycoprotein growth factor that causes the committed cell line to proliferate and mature into macrophages.
A cytokine synthesised by mesenchymal cells that stimulates pluripotent stem cells of bone marrow into differentiating towards the production of monocytes (mononuclear phagocytes).
The compound stimulates the survival, proliferation, and differentiation of haematopoietic cells of the monocyte-macrophage series. It is a disulfide-bonded glycoprotein dimer with a mw of 70 kD and binds to a single class of high affinity receptor which is identical to the product of the c-fms proto-oncogene.
See: colony-stimulating factors.
Chemical name: Colony-stimulating factor 1
Acronym: M-CSF
(12 Dec 1998)
receptors, colony-stimulating factor Cell surface receptors for colony-stimulating factors, local mediators, and hormones that regulate the survival, proliferation, and differentiation of haemopoietic cells.
(12 Dec 1998)
receptors, granulocyte-colony-stimulating factor Receptors that bind and internalise granulocyte-colony-stimulating factor. Their mw is believed to be 150 kD. These receptors are found mainly on a subset of myelomonocytic cells.
(12 Dec 1998)
receptors, granulocyte-macrophage colony-stimulating factor Receptors that bind and internalise the granulocyte-macrophage stimulating factor. Their mw is believed to be 84 kD. The most mature myelomonocytic cells, specifically human neutrophils, macrophages, and eosinophils, express the highest number of affinity receptors for this growth factor.
(12 Dec 1998)
receptors, macrophage colony-stimulating factor Glycoproteins of mw 165 kD which are encoded by the c-fms proto-oncogene. The binding of csf-1 to its receptors activates an intrinsic tyrosine kinase activity resulting in autophosphorylation of the receptors on tyrosine, rapid receptor down-regulation, and phosphorylation of as yet unidentified physiologic substrates that initiate a mitogenic response.
(12 Dec 1998)
Gheel colony A colony in Gheel, Belgium, originating in the 13th century, for the informal communal care, in private homes, of severely mentally disordered persons.
(05 Mar 2000)
granulocyte-colony-stimulating factor <growth factor, haematology, oncology> A glycoprotein of 25 kD containing internal disulfide bonds.
It induces the survival, proliferation, and differentiation of neutrophilic granulocyte precursor cells and functionally activates mature blood neutrophils. Among the family of colony-stimulating factors, G-CSF is the most potent inducer of terminal differentiation to granulocytes and macrophages of leukaemic myeloid cell lines.
A protein that stimulates the growth and maturation of granulocytes. It is used to promote the recovery of the white cells following chemotherapy.
See: colony-stimulating factor.
Acronym: G-CSF
(12 Dec 1998)
granulocyte-macrophage colony-stimulating factor <growth factor, haematology, oncology> An acidic glycoprotein of mw 23 kD with internal disulfide bonds.
It is produced in response to a number of inflammatory mediators by mesenchymal cells present in the haemopoietic environment and at peripheral sites of inflammation.
It stimulates the production of neutrophilic granulocytes, macrophages, and mixed granulocyte-macrophage colonies from bone marrow cells and can stimulate the formation of eosinophil colonies from foetal liver progenitor cells. It also has some functional activities in mature granulocytes and macrophages.
It is used to promote the recovery of the white blood cells following chemotherapy.
Chemical name: Colony-stimulating factor 2
See: colony-stimulating factor.
Acronym: GM-CSF
(12 Dec 1998)
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  • ¿µ¹®
    ÇѱÛ
  • colony
    ±ºÃ¼
  • charter colony
    ƯÇ㠽ĹÎÁö(¿µ±¹¿ÕÀÌ °³ÀÎ.»ó»ç µî¿¡ ´ëÇØ ±³ºÎÇÑ Æ¯ÇãÀåÀ¸·Î °Ç¼³µÈ ½Ä¹ÎÁö)
  • colony
    ½Ä¹ÎÁö;½Ä¹Î;À̹δÜ;°Å·ùÁö;Á¶°è;°Å·ù¹Î;...ÀδÜ;±º°ÅÁö;Áý´Ü°ÅÁÖÁö;(»õ.°³¹Ì.²Ü¹úµîÀÇ)Áý´Ü.±º»ý;ÄݷδÏ;±ºÃ¼;(´Ù¸¥ °èÅë ¾È¿¡ ÀÖ´Â)È­¼®±º;½Ç¾÷ÀÚ ±¸Á¦±â°ü(ÀÏÀÚ¸®¸¦ ÁÖ°í ±³À°À» º£Çª´Â)
  • convict colony
    À¯Çü¼ö ½Ä¹ÎÁö
  • cottage colony
    (ÈÞ°¡ µîÀ» ÀÌ¿ëÇÏ¿© °¡´Â)ÈÞ¾çÁö
  • crown colony
    ¿µ±¹ÀÇ Á÷ÇÒ ½Ä¹ÎÁö
  • proprietary colony
    µ¶Á¡ ½Ä¹ÎÁö(µ¶¸³ÀüÀÇ)
  • royal colony
    Á÷ÇÒ ½Ä¹ÎÁö !
ÀÌ ¾Æ·¡ ºÎÅÍ´Â °á°ú°¡ ¾ø½À´Ï´Ù.
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  • Á¦Ç°¸í
    ¼ººÐ/ÇÔ·®
    ±¸ºÐ/º¸Çè±Þ¿©
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    ±¸ºÐ/º¸Çè±Þ¿©
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