| ¿µ¹® | radiation | ÇÑ±Û | ¹æ»ç¼± |
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| ¼³¸í | ºûÀÇ ÀüÀÚÀÚ±âÆÄ³ª ȤÀº ÀÔÀÚÆÄ(¥á, ¥â, ¥ã¼±)¸¦ ¸»Çϴµ¥, ¾î¶² ±Ù¿ø¹°Áú¿¡¼ »ý°Ü ¹æÃâµÈ´Ù. À̿½ÖÀ» »ý¼ºÇÏ´Â °í¿¡³ÊÁö ¹æ»ç¼±(X-¼±°ú °¨¸¶¼±)À» ¸»ÇÑ´Ù. ¹æ»ç¼±Çϸé, ÁÖ·Î Àü¸®¹æ»ç¼±À» ÀǹÌÇÑ´Ù. ÀÌ·± ¹æ»ç¼±À» ÀÌ¿ëÇÏ¿©, °¡Àå ±âº»ÀûÀÎ ¹æ»ç¼±ÇÐÀû °Ë»ç¸¦ ÇÒ ¼ö ÀÖÀ¸¸ç, ÀÌ¿Ü Ä¡·á¿¡µµ ÀÌ¿ëÇϰí ÀÖ´Ù. °¢ ¹æ»ç¼±ÀÇ Á¾·ù¿¡ µû¶ó Á¶±Ý¾¿ ÀÎü¿¡ ¹ÌÄ¡´Â ¿µÇâÀÌ ´Ù¸£¸ç, À̸¦ ÀÌ¿ëÇÏ¿© °¢±â ´Ù¸£°Ô Áø´Ü ¹× Ä¡·á¿¡ ÀÌ¿ëÇÑ´Ù. |
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| ¿µ¹® | radiation dose | ÇÑ±Û | ¹æ»ç¼±·® |
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| ¼³¸í | ¹æ»ç¼±Á¶»çÀÇ Á¤µµ. ¹æ»ç¼±»ý¹°ÇÐÀ̳ª ÀÎüÀÇ ¹æ»ç¼±¹æÈ£¿¡¼´Â Àü¸®¹æ»ç¼±ÀÇ ¾ç, Áï ¼±·®ÀÌ ¹®Á¦°¡ µÈ´Ù. ¹æ»ç¼±·®¿¡¼µµ ±¹Á¦´ÜÀ§°è(SI)°¡ ä¿ëµÇ¾î ±¹Á¦¹æ»ç¼±¹æÈ£À§¿øÈ¸(ICRP)ÀÇ ±Ç°í¿¡ µû¶ó¼ ´ÙÀ½ÀÇ ¿©·¯ ´ÜÀ§°¡ ³Î¸® »ç¿ëµÈ´Ù. ¨ç Èí¼ö¼±·®(absorbed dose). ¹°ÁúÀÇ ´ÜÀ§Áú·®ÀÌ ¹æ»ç¼±¿¡ ÀÇÇØ ¹Þ¾ÆµéÀÌ´Â ¿¡³ÊÁö. ÀÌ ´ÜÀ§´Â ¹æ»ç¼± ¹× ¹°ÁúÀÇ Á¾·ù°¡ ¾î¶°ÇÑ °ÍÀÌ´õ¶óµµ »ç¿ëÇÒ ¼ö ÀÖ´Ù. ±¹Á¦´ÜÀ§´Â J/kgÀ̸ç À̰Ϳ¡ °íÀ¯ÇÑ ¸íĪÀ¸·Î ±×·¹ÀÌ(gray, ±âÈ£ Gy)°¡ ºÎ¿©µÈ´Ù. 1Gy=100¶óµå(rad). ¨è Á¶»ç¼±·®(exposure) ¶Ç´Â °øÁß¼±·®. X¼± ¶Ç´Â ¥ã¼±¿¡ ÇÑÇØ¼ »ç¿ëµÈ´Ù. ±¹Á¦´ÜÀ§´Â C/kg. ¨é ¼±·®´ç·®(dose equivalent). ¹æ»ç¼±¹æÈ£¸¦ À§ÇØ »ç¿ëµÇ´Â ¾ç. ±âÈ£´Â H. H´Â ¹æ»ç¼±ÀÇ Á¾·ù¿Í ¿¡³ÊÁö¿¡ ÀÇÇØ »ýü¿¡ ÁÖ´Â È¿°ú¸¦ º¸Á¤ÇÏ´Â ¼±Áú°è¼ö(Q)¿Í ±× ¹ÛÀÇ ÀÎÀÚ(¿¹¸¦ µé¸é ¼±·®·ü, ¹æ»ç¼ºµ¿À§¿ø¼Ò¿¡ ÀÇÇÑ ³»ºÎÇÇÆø½Ã¿¡´Â ±× ÇÙÁ¾ÀÇ Ã¼³»ºÐÆ÷ µî)¿¡ ±Ù°ÅÇÑ º¸Á¤°è¼ö(N)¸¦ Èí¼ö¼±·®(D)¿¡ °öÇÑ °Í, Áï H=D-Q-N. ¶ÇÇÑ DÀÇ ´ÜÀ§¸¦ Gy ¶Ç´Â rad·Î Ç¥½ÃÇÏ¿´À» ¶§ HÀÇ ´ÜÀ§¸¦ °¢°¢ ½Ãº£¸£Æ®(sievert, ±âÈ£ Sv) ¹× ·½(rem)À̶ó°í ÇÑ´Ù. µû¶ó¼ 1 Sv=102rem. ÀϹÝÀûÀ¸·Î ´ÜÀ§½Ã°£´çÀÇ ¼±·®À» ¼±·®·ü(dose rate)À̶ó°í ÇÑ´Ù. |
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| ¿µ¹® | radiation therapy | ÇÑ±Û | ¹æ»ç¼±¿ä¹ý |
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| ¼³¸í | X¼±, ¥ã¼±ÀÇ ÀüÀÚ¹æ»ç¼±À̳ª ÀüÀÚ¼±, ¾çÀÚ¼±, Áß¼ºÀÚ¼± µîÀÇ ÀÔÀÚ¹æ»ç¼±À» ÀÌ¿ëÇØ, ÁÖ·Î ¾Ç¼º Á¾¾ç Ä¡·á¸¦ ¸ñÀûÀ¸·Î ÇÏ´Â Ä¡·á¹ýÀÌ´Ù. ¾Ï¼¼Æ÷°¡ ÁÖÀ§ÀÇ Á¤»ó¼¼Æ÷º¸´Ùµµ ¹æ»ç¼± °¨¼ö¼ºÀÌ ³ôÀº Á¡À» ÀÌ¿ëÇÏ¿©, Á¤»ó¼¼Æ÷ÀÇ ¼Õ»óÀ» °¡´ÉÇÑ ÇÑ ÃÖ¼Ò·Î ¾ïÁ¦ÇÏ¸é¼ ¾Ï¼¼Æ÷¸¦ ÆÄ±«ÇÑ´Ù. »ç¿ëµÇ´Â ¹æ»ç¼±¿¡´Â ¹ÐºÀ¼Ò¼±¿ø¿¡¼ ³ª¿À´Â ¥ã¼±, Á÷¼±°¡¼Ó±â¿¡¼ ¾ò¾îÁö´Â °í¿¡³ÊÁö X¼±°ú ÀüÀÚ¼±, ÅÚ·¹ÄÚ¹ßÆ®ÀåÄ¡¿¡ ÀÇÇÑ 60CoÀÇ ¥ã¼±°ú, º£Å¸Æ®·Ð¿¡ ÀÇÇÑ ÀüÀÚ¼±, »çÀÌÅ©·ÎÆ®·Ð¿¡¼ ¾ò¾îÁö´Â ¾çÀÚ¼±, Áß¼ºÀÚ¼± µîÀÌ ÀÖ´Ù. |
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| ¿µ¹® | radiation therapy | ÇÑ±Û | ¹æ»ç¼±Ä¡·á |
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| ¼³¸í | ¹æ»ç¼±ÀÇ »ì±ÕÈ¿°ú³ª ¼¼Æ÷¸¦ Á×ÀÌ´Â È¿°ú¸¦ Ä¡·á¿¡ ÀÌ¿ëÇÏ´Â ¹æ¹ýÀ¸·Î, Á¼Àº Àǹ̷Π¾ÏÀÇ ¹æ»ç¼±Ä¡·á¸¦ ÀǹÌÇÑ´Ù. ¾Ï¿¡ ´ëÇÑ ¹æ»ç¼±Ä¡·á´Â ¾Ï¼¼Æ÷¸¦ Á×À̴µ¥ È¿°ú°¡ Å« º£Å¸¼±À» ÁÖ·Î »ç¿ëÇÑ´Ù. ÇÏÁö¸¸, ÀÌ·± ¹æ»ç¼±Ä¡·á´Â Á¤»ó¼¼Æ÷¿¡µµ Å« ¿µÇâÀ» ³¢ÃÄ ÀÌ¿¡ µû¸¥ ±â´ÉÀÇ Àå¾Ö¸¦ °¡Á®¿Ã ¼ö ÀÖ´Ù. µû¶ó¼ ¹æ»ç¼±Ä¡·á¿¡ À־ ´ÜÁö ±× ¾Ï¼¼Æ÷¿¡ ´ëÇÑ ÀÛ¿ë»Ó¸¸ ¾Æ´Ï¶ó, Á¤»ó¼¼Æ÷¿¡ ´ëÇÑ ÀÛ¿ëµµ °í·ÁÇÏ¿© ½ÃÇàÇÑ´Ù. |
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| KIU | kallikrein inactivation unit |
|---|---|
| TIP | thermal inactivation point; Toxicology Information Program; translation-inhibiting protein; tumor-in... |
| XIC | X-inactivation center |
| XIST | X-inactivation specific transcript |
| HEIR | health effects of ionizing radiation; high-energy ionizing radiation |
| CALI | Chromophore assisted laser inactivation |
|---|---|
| KI | Inactivation |
| XCI | X chromosome inactivation |
| XCIP | X chromosome inactivation pattern |
| XIC | X inactivation center |
| radiation inactivation | The technique of inactivating proteins in freeze dried (lyophilised) preparations using high energy particles (e.g. Electrons). One high energy particle can apparently inactivate all of the components of a multisubunit polypeptide, the method is therefore used to determine the molecular weight of functional oligomers. (18 Nov 1997) |
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| X inactivation | <cell biology> The inactivation of one or other of each pair of X chromosomes to form the Barr body in female mammalian somatic cells. Thus tissues whose original zygote carried heterozygous X borne genes should have individual cells expressing one or other but not both of the X borne gene products. The inactivation is thought to occur early in development and leads to mosaicism of expression of such genes in the body. See: Lyon hypothesis. (18 Nov 1997) |
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| inactivation | <neurology, physiology> For example of voltage gated sodium channels: process by which sodium channels that have been activated or opened by depolarisation subsequently close during the depolarisation. Distinguished from activation by its slower kinetics. (18 Nov 1997) |
| insertional inactivation | The inactivation of a gene due to the insertion of exogenous genetic material into that gene. (14 Nov 1997) |
| enzyme inactivation | The disappearance of an enzyme's activity during in vitro conditions, such as during a lab preparation of the enzyme, where the enzyme is exposed to conditions not normally found within its environment inside a living cell (like different pH, excess or too little salt, temperature changes, etc.) (09 Oct 1997) |
| abnormalities, radiation-induced | Congenital changes in the morphology of organs produced by exposure to ionizing or non-ionizing radiation. (12 Dec 1998) |
| accidents, radiation | Accidental dispersal of radioactive materials from a radiation source. Accidents at nuclear reactors can involve large groups of the population from dispersion of radioactivity into the environment and through fallout or a few individuals with high injurious doses. (12 Dec 1998) |
| acoustic radiation | The fibres that pass from the medial geniculate body to the transverse temporal gyri of the cerebral cortex by way of the sublentiform part of the internal capsule. Synonym: radiatio acustica. (05 Mar 2000) |
| acute radiation syndrome | <syndrome> A syndrome caused by exposure of the body to large amounts of radiation, (e.g., from certain forms of therapy, accidents, and nuclear explosions; it is divided into three major forms which are, in ascending order of severity, the haematogic, gastrointestinal, and central nervous system-cardiovascular forms; its clinical manifestations are divided into prodromal, latent, overt, and recovery stages. (05 Mar 2000) |
| adaptive radiation | <chemistry> The evolution of new speciesor sub-species to fill unoccupied ecological niches. (06 May 1997) |
| alpha radiation | <physics, radiobiology> The most easily absorbable type of radiation, it consists of a stream of alpha particles, doubly ionised helium nuclei which are electrically charged and produce intense ionisation in matter. Alpha radiation can be deflected in electromagnetic fields. (09 Oct 1997) |
| annihilation radiation | The radiation resulting when a positron from beta positive decay comes to rest. It encounters an electron, and they annihilate each other and convert their rest mass into two 0.51-MeV gamma rays emitted in exactly opposite directions. (05 Mar 2000) |
| background radiation | <radiobiology> Level of environmental radation due to background sources. Background sources can be natural, such as cosmic rays and natural radioactive elements (principally radon, but including other elements such as isotopes of potassium (which people get substantial amounts of in foods like bananas)). They can also be man-made, such as from fossil-fuel combustion, everyday leakage from nuclear activities, and leftover from atmospheric nuclear weapons tests. Background radiation is usually distinguished from acute radiation, such as from medical X-rays, nuclear accidents, radioisotope therapy, or other short-term doses. The man-made contribution to background radiation is quite small compared to the natural contribution, medical uses dominate human exposure to acute radiation. (09 Oct 1997) |
| beta radiation | <radiobiology> Radiant energy from a source of beta rays. (05 Mar 2000) |
| radiation | <radiobiology> Propagation of energy through space. In the context of this report, it is electromagnetic radiation (X-rays or gamma rays) or corpuscular radiation (alpha particles, electrons, protons, neutrons) capable of producing ionisation. (16 Dec 1997) |
| radiation anaemia | Hypoplastic anaemia sometimes occurring after high-level acute or low-level chronic exposure to ionizing radiation. (05 Mar 2000) |
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