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  • ¿µ¹®
    ÇѱÛ
  • radiation colitis
    ¹æ»ç¼±Àß·ÏâÀÚ¿°, ¹æ»ç¼±°áÀå¿°
  • radiation contamination
    ¹æ»ç¼±¿À¿°
  • radiation dermatitis
    ¹æ»ç¼±ÇǺο°
  • radiation detector
    ¹æ»ç¼±°ËÃâ±â
  • radiation dose
    1. ¹æ»ç¼±·® 2. º¹»ç¼±·®
  • radiation effect
    ¹æ»ç¼±È¿°ú
  • radiation enteritis
    ¹æ»ç¼±Ã¢ÀÚ¿°, ¹æ»ç¼±Àå¿°
  • radiation esophagitis
    ¹æ»ç¼±½Äµµ¿°
  • radiation exposure
    ¹æ»ç¼±³ëÃâ
  • radiation field
    ¹æ»ç¼±Á¶»ç¿µ¿ª, ¹æ»ç¼±ÂØÀÓ¿µ¿ª
  • radiation fluctuation
    º¹»ç¿äµ¿
  • radiation hazard
    ¹æ»ç¼±ÀçÇØ
  • radiation injury
    ¹æ»ç¼±¼Õ»ó
  • radiation interaction
    ¹æ»ç¼±»óÈ£ÀÛ¿ë
  • relative biologic effectiveness radiation
    »ó´ë»ý¹°ÇÐÀûÈ¿°ú¹æ»ç¼±
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  • ¿µ¹®
    ÇѱÛ
  • vascularized free joint transfer
    Ç÷°ü°æÀ¯¸®°üÀýÀü´Þ
  • zygote intrafallopian transfer
    Á¢ÇÕÀÚÀڱðü³»À̽Ä, Á¢ÇÕüÀڱðü³»Àü´Þ
  • acoustic radiation
    û°¢ºÎê»ì
  • acute radiation sickness
    ±Þ¼º¹æ»ç¼±º´
  • acute radiation syndrome
    ±Þ¼º¹æ»ç¼±ÁõÈıº
  • adaptive radiation
    ÀûÀÀ¹æ»ç¼±
  • adaptive radiation therapy
    ÀûÀÀ¹æ»ç¼±Ä¡·á, ¼øÀÀ¹æ»ç¼±¿ä¹ý
  • annihilation radiation
    ¼Ò¸ê¹æ»ç¼±
  • auditory radiation
    û°¢·ÎºÎê»ì
  • background radiation
    ¹èÈĹæ»ç¼±
  • braking radiation
    ÀúÁö¹æ»ç¼±, Á¦µ¿¹æ»ç¼±, Á¦µ¿º¹»ç
  • molecular radiation biology
    ºÐÀÚ¹æ»ç¼±»ý¹°ÇÐ
  • radiation beam
    ¹æ»ç¼±ºö, ¹æ»ç¼±¼Ó
  • radiation biology
    ¹æ»ç¼±»ý¹°ÇÐ
  • charged particle radiation
    ÇÏÀüÀÔÀÚ¹æ»ç¼±
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  • ¿µ¹®
    ÇѱÛ
  • radiation dosimetry
    ¹æ»ç¼±·®ÃøÁ¤¹ý
  • radiation effect
    ¹æ»ç¼±È¿°ú
  • radiation epithelitis
    ¹æ»ç¼±»óÇÇ¿°
  • radiation esophagitis
    ¹æ»ç¼±½Äµµ¿°.
  • radiation fibrosis
    ¹æ»ç ¹æ»ç¼±¼¶À¯Áõ(Û¯ÞÒàÊ àéë«ñø).
  • radiation fibrosis
    ¹æ»ç¼± ¼¶À¯Áõ(Û¯ÞÒàÊ àéë«ñø)
  • radiation fibrosis
    ¹æ»ç¼±¼¶À¯Áõ
  • radiation fibrosis of lung
    ¹æ»ç¼±Æó¼¶À¯Áõ(Û¯ÞÒàÊøËàéë«ñø).
  • radiation fibrosis of lung
    ¹æ»ç¼±Æó¼¶À¯Áõ(Û¯ÞÒàÊøËàéë«ñø)
  • radiation fields
    ¹æ»ç¼±Á¶»ç¿µ¿ª
  • radiation fluctuation
    º¹»ç¿äµ¿.
  • radiation glaucoma
    ¹æ»ç¼±³ì³»Àå
  • radiation hazard
    ¹æ»ç¼±ÀåÇØ
  • radiation hormesis
    ¹æ»ç¼± È£¸£¸Þ½Ã½º
  • radiation induced cancer
    ¹æ»ç¼±À¯¹ß¾Ï
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  • ¿µ¹®
    ÇѱÛ
  • linear eccrine naevi with comedones => porokeratotic eccrine ostial an
  • linear electronic scanner
    ¼±Çü ÀüÀÚ½Ä ÃÊÀ½ÆÄ±â±â (àÊû¡ ï³í­ãÒ õ±ëå÷îÐïѦ)
  • linear electronic scanner
    ¼±Çü ÀüÀÚ½Ä ½ºÄ³³Ê
  • linear equation
    ÀÏÂ÷¹æÁ¤½Ä(ìéó­Û°ïïãÒ).
  • linear expansion
    ¼±ÆØÃ¢(àÊø³óì).
  • linear extraction
    ¼±»óÀûÃâ(¼ú)
  • linear extraction of cataract
    ¹é³»Àå¼±»óÀûÃâ(¼ú)
  • linear focal elastosis
    ¼±»ó±¹¼Òź·Â¼¶À¯Áõ
  • linear fracture
    ¼±»ó °ñÀý(àÊßÒÍéï¹).
  • linear function
    ÀÏÂ÷ÇÔ¼ö(Ëö̤̰Ëà).
  • linear lichen planus
    ¼±»ó ÆíÆòż±
  • linear lichenoid dermatosis
    ¼±»ó ż±¾ç ÇǺκ´
  • linear molecule
    ¼±»óºÐÀÚ(ÊÙËÓËö).
  • linear nevus
    ¼±»ó¸ð¹Ý(àÊßÒÙ½Úè)
  • linear nevus sebaceous syndrome
    ¼±»ó ¸ð¹Ý ÇÇÁö¼± ÁõÈıº
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  • ¿µ¹®
    ÇѱÛ
  • phase transfer
    »óÀüÀÌ(ßÓï®ì¹)
  • phosphate group transfer
    Àλê±â ÀüÀÌ(×òß«Ðñï®ì¹)
  • phosphate transfer potential
    ÀλêÀüÀÌ ÀüÀ§(×òß«ï®ì¹ï³êÈ)
  • phosphoryl-group transfer
    ÀλêÈ­±â ÀüÀÌ(×òß«ûùÐñï®ì¹)
  • phosphoryl transfer potential
    ÀλêÈ­ ÀüÀÌ ÀüÀ§(×òß«ûùï®ì¹ï³êÈ)
  • plasmid transfer
    Çö󽺹̵å Àü´Þ(îîÓ¹)
  • precursor transfer RNA
    Àü´Þ(îîÓ¹) RNA Àü±¸Ã¼(îñÏÌô÷)
  • pre-transfer RNA
    Àü±¸(îñÏÌ)ÀüÀÌ(ï®ì¹)RNA
  • proton transfer potential
    ¾ç¼ºÀÚ(åÕàõí­) ÀüÀÌ ÀüÀ§(ï®ì¹ï³êÈ)
  • resistance-transfer factor
    ÀúÇ×ÀüÀÌ ÀÎÀÚ(ï®ì¹ì×í­)
  • stripped transfer RNA
    ³ª(Ñß) Àü´Þ(îîÓ¹)RNA
  • suppressor transfer RNA
    ¾ï¾Ð(åääâ) Àü´Þ(îîÓ¹) RNA
  • transfer
    ÀüÀÌ(ï®ì¹)
  • transfer factor
    "ÀüÀÌ(ï®ì¹) ÀÎÀÚ(ì×í­), Àü´ÞÀÎÀÚ(îîÓ¹ì×í­)"
  • Transfer origin
    ÀüÀÌ ±â¿ø(ï®ì¹ÑÃê¹)
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  • ¿µ¹®
    ÇѱÛ
  • reflected radiation
    ¹Ý»ç¹æ»ç¼±, ¹Ý»çº¹»ç
  • thermal radiation
    ¿­¹æ»ç, ¿Âµµ¹æ»ç
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PEM Protein-Energy Malnutrition
  = PCM; Protein Calorie Malnutrition
RMR Resting Metabolic Rate
  = Resting Energy Expenditure
ADE acute disseminated encephalitis; adverse drug event; antibody-dependent enhancement; apparent digest...
AE above-elbow [amputation]; acrodermatitis enteropathica; activation energy; adult erythrocyte; advers...
AEC ankyloblepharon, ectodermal defects, and cleft lip [syndrome]; at earliest convenience; Atomic Energ...
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L linear
I-V linear current-voltage
LPA linear poly(acrylamide
CRT Cranial radiation therapy
CRE Cumulative Radiation Effect
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • radiation chemistry
    ¹æ»çÈ­ÇÐ, ¹æ»ç¼± È­ÇÐ
  • radiation contamination
    ¹æ»ç¼± ¿À¿°
  • radiation cystitis
    ¹æ»ç¼± ¹æ±¤¿°
  • radiation dental caries
    ¹æ»ç¼± Ä¡¾Æ¿ì½Ä, ¹æ»ç¼± Ä¡¾Æ¿ì½ÄÁõ
    »ý¹°ÇÐÀûÀ¸·Î À¯È¿ÇÑ ¼±·®ÀÇ Àü¸® ¹æ»ç¼±¿¡ Æø·ÎµÇ¾î »ý±ä Ä¡¾Æ ¿ì½Ä.
  • radiation detector
    ¹æ»ç¼± °ËÃâ±â
    ¹æ»ç ¿¡³ÊÁö¸¦ Áï½Ã °üÃøÇÒ ¼ö ÀÖ´Â ÇüÅ·Πº¯°æÇϱâ À§ÇÑ ÀåÄ¡.
  • radiation dose
    ¼±·®
    ¹°ÁúÀ̳ª Á¶Á÷ ¶Ç´Â Àü½Å ¹× ±¹ºÎ µîÀÌ ¹ÞÀº ¹æ»ç¼±ÀÇ ¾ç. Á¶»ç ½Ã°£ ÁßÀÇ ¹æ»ç¼± ¿¡³ÊÁöÀÇ Èí¼ö·®¿¡ ÇØ´çÇÑ´Ù.
  • radiation effect
    ¹æ»ç¼± È¿°ú
  • radiation exposure
    ¹æ»ç¼± ³ëÃâ, ¹æ»ç¼± Á¶»ç
  • radiation fibrosis of lung
    ¹æ»ç¼± Æó ¼¶À¯Áõ
  • radiation induced cancer
    ¹æ»ç¼± À¯¹ß ¾Ï, X¼± ¾Ï
  • radiation leukemia
    ¹æ»ç¼± ¹éÇ÷º´
  • radiation monitor
    ¹æ»ç¼± ¸ð´ÏÅÍ
  • radiation necrosis
    ¹æ»ç¼± ±«»ç
  • radiation pneumonitis
    ¹æ»ç¼± Æó·Å
  • radiation protection
    ¹æ»ç¼± ¹æ¾î
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 7
gibbs free energy The total amount of energy which is either used up or released during a chemical reaction. Gibbs free energy (delta G) = (delta H) - t (delta s): where (delta H) is the change in enthalpy, calculated by adding up the amount of energy released or used up to break or form chemical bonds during the reaction, t is the temperature at which the reaction took place, and (delta S) is the change in entropy, or amount of disorder, that occurs in the molecules involved during the reaction.
(09 Oct 1997)
renewable energy resource <ecology> An energy resource replenished continuously or that is replaced after use through natural means. Sustainable energy.
Renewable energy resources include bioenergy, solar energy, wind energy, geothermal power, and hydropower.
(25 Jun 1999)
chemical energy Energy liberated or absorbed by a chemical reaction, e.g., oxidation of carbon, or absorbed in the formation of a chemical compound.
(05 Mar 2000)
conservation of energy The principle that the total amount of energy in a closed system remains always the same, none being lost or created in any chemical or physical process or in the conversion of one kind of energy into another, within that system.
(05 Mar 2000)
conservation of energy resources Planned management, use, and preservation of energy resources.
(12 Dec 1998)
potential energy <chemistry> Energy due to position, it is stored energy which can be used to do work.
(09 Jan 1998)
primary energy <radiobiology> Energy before conversion. For instance, the United States uses about 30,000 megajoules of electricity per capita per year, but electricity is generally obtained by converting other forms of energy (primarily chemical/heat) at an efficiency of around 30%, so the U.S. Consumes 90,000 megajoules of primary energy per capita for electrical use. (Total U.S. Primary energy consumption is 300,000 megajoules per capita.)
(09 Oct 1997)
Helmholtz energy Energy equivalent to the internal energy minus the entropy contribution (TS).
(05 Mar 2000)
protein-energy malnutrition The lack of sufficient energy or protein to meet the body's metabolic demands, as a result of either an inadequate dietary intake of protein, intake of poor quality dietary protein, increased demands due to disease, or increased nutrient losses.
(12 Dec 1998)
high energy bond <chemistry> Chemical bonds that release more than 25kJ/mol on hydrolysis: their importance is that the energy can be used to transfer the hydrolysed residue to another compound. The risk in using the term is that students may think the bond itself is different in some way, whereas it is the compound that matters. Hydrolysis of creatine phosphate yields 42.7kJ/mol, of phosphoenolpyruvate, 53.2, ATP to ADP, 30.5: the latter is important because it shows that energetically the hydrolysis of creatine phosphate will suffice to reconstitute ATP, hence the use of creatine phosphate in muscle.
(18 Nov 1997)
high energy compounds Classically, a group of phosphoric esters whose hydrolysis takes place with a standard free energy change of -5 to -15 kcal/mol (or, -20 to -63 kJ/mol) (in contrast to -1 to -4 kcal/mol or, -4 to -17 kJ/mol) for simple phosphoric esters like glucose-6-phosphate or alpha-glycerophosphates), thus being capable of driving energy-consuming reactions in living cells or reconstituted cell-free systems; adenosine 5'-triphosphate, with respect to the beta-and gamma-phosphates, is the best known and is regarded as the immediate energy source for most metabolic syntheses. The general types are acid anhydrides, phosphoric esters of enols, phosphamic acid (R-NH-PO3H2) derivatives, acyl thioesters (e.g., of coenzyme A), sulfonium compound's (R3-S+), and aminoacyl esters of ribosyl moieties.
See: high energy phosphates.
(05 Mar 2000)
high energy particle generating unit A machine capable of providing highly energised radiation for the purposes of radiotherapy treatment.
(16 Dec 1997)
high energy phosphate bond See: high energy phosphates.
(05 Mar 2000)
high energy phosphates Those phosphate's that, on hydrolysis, yield an unusually large amount of energy; e.g., nucleotide polyphosphates such as ATP, enol phosphate's such as phosphoenolpyruvate.
See: high energy compounds.
Synonym: energy-rich phosphates.
(05 Mar 2000)
high-energy shock waves Compression waves of large amplitude, across which density, pressure, and particle velocity change drastically.
(12 Dec 1998)
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