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  • ¿µ¹®
    ÇѱÛ
  • kinesthetic receptor
    ¿îµ¿°¨°¢¼ö¿ë±â
  • labyrinthine receptor
    ¹Ì·Î¼ö¿ë±â
  • muscarinic receptor
    ¹«½ºÄ«¸°¼ö¿ëü
  • neuromuscular receptor
    ½Å°æ±Ù(À°)¼ö¿ëü
  • nicotinic receptor
    ´ÏÄÚÆ¾¼ö¿ëü
  • olfactory receptor
    Èİ¢¼ö¿ë±â
  • opiate receptor
    ¾ÆÆíÁ¦¼ö¿ëü
  • opioid receptor
    ¾ÆÆíÀ¯»çÁ¦¼ö¿ëü
  • postsynaptic receptor
    ½Ã³À½ºÈļö¿ëü, ¿¬Á¢Èļö¿ëü
  • prejunctional receptor
    Á¢ÇÕÀü¼ö¿ëü
  • pressor receptor
    ½Â¾Ð¼ö¿ë±â
  • paciniform receptor
    ÆÄÄ¡´ÏÇü¼ö¿ë±â
  • progesterone receptor
    ÇÁ·Î°Ô½ºÅ׷мö¿ëü
  • receptor
    1. ¼ö¿ëü 2. ¼ö¿ë±â
  • receptor autoradiography
    ¼ö¿ëüÀÚ°¡Á¶Á÷¹æ»ç¼±ÃÔ¿µ(¼ú)
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  • ¿µ¹®
    ÇѱÛ
  • androgen receptor
    ¾Èµå·Î°Õ¼ö¿ëü
  • antigen receptor
    Ç׿ø¼ö¿ëü
  • antigen binding receptor
    Ç׿ø°áÇÕ¼ö¿ëü
  • receptor autoradiography
    ¼ö¿ëüÀÚ°¡¹æ»ç¼±¼ú
  • beta-adrenergic receptor kinase
    º£Å¸¾Æµå·¹³¯¸°¼º¼ö¿ëüÀλêÈ­È¿¼Ò
  • receptor binding
    ¼ö¿ëü°áÇÕ
  • receptor blocker
    ¼ö¿ëüÂ÷´ÜÁ¦
  • cell surface receptor
    ¼¼Æ÷Ç¥¸é¼ö¿ëü
  • cholinergic receptor
    Äݸ°¼ö¿ëü
  • cold receptor
    ³Ã°¢¼ö¿ëü
  • complement receptor
    µµ¿òü¼ö¿ëü, º¸Ã¼¼ö¿ëü
  • corpuscular receptor
    ¼Òü¼ö¿ëü
  • receptor cell
    ¼ö¿ëü¼¼Æ÷
  • distance receptor
    (¢¡teleceptor) ¿ø°Ý¼ö¿ëü
  • dominant receptor
    ¿ì¼º¼ö¿ëü
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  • ¿µ¹®
    ÇѱÛ
  • immunoglobulin receptor
    ¸é¿ª±Û·ÎºÒ¸° ¼ö¿ëü
  • insulin receptor
    Àν¶¸°¼ö¿ëü(áôé»ô÷).
  • insulin receptor
    Àν¶¸°¼ö¿ëü.
  • platelet receptor
    Ç÷¼ÒÆÇ¼ö¿ëü
  • postsynaptic receptor
    ¿¬Á¢Èļö¿ëü
  • prejunctional neuromuscular receptor
    ½Å°æ±ÙÁ¢ÇÕÀü¼ö¿ëü
  • pressor receptor
    ¾Ð·Â¼ö¿ëü(äâæ³áôé»ô÷).
  • pressor receptor reflex
    ¾Ð·Â¼ö¿ëü¹Ý»ç(äâæ³áôé»ô÷ÚãÞÒ).
  • pressure receptor
    ¾Ð¼ö¿ë±â, ¾Ð·Â¼ö¿ëü(¡­áôé»ô÷).
  • progesterone receptor
    ÇÁ·Î°Ô½ºÅ×·Ð(ÇÁ·ÎÁ¦½ºÅ×·Ð)¼ö¿ëü(¡­â¥é»ô÷)
  • receptor
    ¼ö¿ë±â
  • receptor amblyopia
    ¼ö¿ë±â¾à½Ã
  • receptor assay
    ¼ö¿ëÃ¼ÃøÁ¤
  • receptor autoradiography
    ¼ö¿ëü ÀÚ±â¹æ»ç¼±ÃÔ¿µ¼ú
  • receptor binding
    ¼ö¿ëü°áÇÕ
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  • ¿µ¹®
    ÇѱÛ
  • ionic theory
    À̿¼³.
  • libido theory ÀÇ»ç
    ¸®ºñµµÇм³, ¼º¿å¼³(àõ靿ò).
  • lipoid theory
    ¸®Æ÷À̵弳, À¯ÁöÁú¼³.
  • local current theory
    ±¹¼ÒÀü·ù¼³(¡­ï³êüæò).
  • membrane expansion theory
    ¸·ÆØÃ¢¼³
  • membrane theory
    ¸·¼³(دæò).
  • menophylectic theory
    ÀÏ¿ø¼³(ìéê«æò).
  • miasma theory
    ¹Ì¾Æ½º¸¶¼³ (Áúº´ÀÇ)
  • molecular theory
    ºÐÀÚ·Ð(ÝÂí­Öå).
  • momentum transfer theory
    ¿îµ¿·®ÀüÀÌÀÌ·Ð.
  • monoamine theory
  • object, relation theory
  • omega oxidation theory
    ¿À¸Þ°¡»êÈ­¼³(¡­ß«ûùæò).
  • one gene one enzyme theory
    ÀÏÀ¯ÀüÀÚ- ÀÏÈ¿¼Ò(´ëÀÀ)¼³(ìéë¶îîí­ìéý£áÈÓßëëæò).
  • operation, Piagets theory
    Á¶ÀÛ(ðÃíÂ)
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    ÇѱÛ
  • crystal field theory
    °áÁ¤ Àå·Ð(Ì¿ïÜíÞÖå)
  • elective theory
    ¼±Å÷Ð(àÔ÷ÉÖå)
  • error theory
    ¿À·ù ÀÌ·Ð (è¦×½×âÖå)
  • eversion theory
    ¿Ü¹øÀÌ·Ð (èâÛè×âÖå)
  • evolution theory
    ÁøÈ­·Ð(òäûùÖå)
  • exhaustion theory
    °í°¥ ÀÌ·Ð (ͽÊä×âÖå)
  • factor theory
    ÀÎÀÚ ÀÌ·Ð(ì×í­×âÖå)
  • fluctuation theory
    ¿äµ¿ ÀÌ·Ð(èôÔÑ×âÖå)
  • frozen accident theory
    »ç°í µ¿°á ÀÌ·Ð(ÞÀͺÔÐÌ¿×âÖå)
  • germ-line theory
    ¹èÀÚ°è¿­ ÀÌ·Ð(ÛÏí­Í§Öª×âÖå)
  • hit theory
    °¡°Ý ÀÌ·Ð(ʥ̪×âÖå)
  • imbalance theory
    ºÒ±ÕÇü ÀÌ·Ð(ÝÕгû¬×âÖå)
  • immune surveillance theory
    ¸é¿ª °¨½Ã ÀÌ·Ð(Øóæ¹ÊøãÊ×âÖå)
  • immunological surveillance theory
    ¸é¿ª °¨½Ã ÀÌ·Ð(Øóæ¹ÊøãÊ×âÖå)
  • inchworm theory
    ÀÚ¹ú·¹ ÀÌ·Ð(×âÖå)
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ERP early receptor potential; effective refractory period; elodoisin-related peptide; endoscopic retrogr...
GCGR glucagon receptor; glucocorticoid receptor
INSRR insulin receptor-related receptor
IRR insulin receptor-related receptor; intrarenal reflux
IRS immunoreactive secretion; infrared spectrophotometry; insulin receptor species; insulin receptor sub...
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 4
TCR 1(+)-T-cell receptor
VDR 1,25-dihydroxy-vitamin D3 receptor
IP3R 1,4,5)-trisphosphate receptor
AR 1-Adrenergic receptor
OR 1-opioid receptor
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • distance receptor
    °Å¸® ¼ö¿ë±â
  • dominant receptor
    ¿ì¼º ¼ö¿ëü
  • dopamine receptor
    µµÆÄ¹Î ¼ö¿ëü
  • down-regulation of receptor
    ¼ö¿ëü ÇÏÇâ Á¶Àý
  • drug receptor
    ¾à¹° ¼ö¿ëü
  • estrogen receptor protein
    ¿¡½ºÆ®·Î°Õ ¼ö¿ëü ´Ü¹éÁú
  • Fc receptor
    Fc ¼ö¿ëü
    Ç×üÀÇ Fc ºÐÀý°ú °áÇÕÇÏ´Â ¼¼Æ÷ Ç¥¸é ¼ö¿ëüÀ̸ç B ¼¼Æ÷, macro
  • free receptor
    À¯¸® ¼ö¿ëü
  • image receptor
    »ó ¼ö¿ë±â
  • k receptor
    k ¼ö¿ë±â
  • kapa receptor
    Ä«ÆÄ ¼ö¿ëü
  • ligand receptor binding
    ¸®°£µå ¼ö¿ë±â °áÇÕ
  • multiple somatic receptor
    ´Ù¹ß¼º ü ¼ö¿ëü, ´Ù¹ß¼º ü ¼ö¿ë±â
  • opiate analgesia receptor
    ¾ÆÆí¼º ÁøÅë ¼ö¿ëü, ¾ÆÆí¼º ÁøÅë ¼ö¿ë±â
  • opiate receptor
    ¾ÆÆí ¼ö¿ëü, ¾ÆÆí ¼ö¿ë±â
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receptor, chemokine A molecule that receives a chemokine and acts as a dock for a chemokine. Several chemokine receptors are essential co-receptors for HIV.
(12 Dec 1998)
receptor downregulation A phenomenon observed in many cells: following stimulation with a ligand the number of receptors for that ligand on the cell surface diminishes because internalisation exceeds replenishment. Often used very loosely, thus destroying the utility of the term.
(18 Nov 1997)
receptor mediated endocytosis Endocytosis of molecules by means of a specific receptor protein that normally resides in a coated pit, but may enter this structure after complex formation occurs. The structure then forms a coated vesicle that delivers its contents to the endosome whence it may enter the cytoplasm or the lysosomal compartment. Many bacterial toxins and viruses enter cells by this route.
(18 Nov 1997)
receptor potential The transmembrane potential difference of a sensory cell. Such cells are not generally excitable, but their response to stimulation is a gradual change in their resting potential.
(18 Nov 1997)
receptor protein An intracellular protein (or protein fraction) that has a high specific affinity for binding a known stimulus to cellular activity, such as a steroid hormone or adenosine 3',5'-cyclic phosphate.
(05 Mar 2000)
receptor protein-tyrosine kinase <enzyme> A catalytic protein-tyrosine kinase domain found on the cytoplasmic beta-portion of receptors. Many growth and differentiation factor receptors contain this domain. It is critical for the signal transduction pathways required for mitogenesis, transformation, and cell differentiation.
Registry number: EC 2.7.1.-
(12 Dec 1998)
receptor site Point of attachment of viruses, hormones, or other activators to cell membranes.
(05 Mar 2000)
receptor tyrosine kinase Class of membrane receptors that phosphorylate tyrosine residues. Many play significant roles in development or cell division.
Examples: insulin receptor family, c ros receptor, Drosophila sevenless, trk family.
(18 Nov 1997)
receptor, visual The layer of rods and cones, the visual cells, of the retina.
(12 Dec 1998)
Cek4 receptor protein-tyrosine kinase <enzyme> Isolated from mouse and chicken.
Registry number: EC 2.7.1.-
Synonym: cek4 protein, cek4 eph receptor, eph receptor cek4
(26 Jun 1999)
visual receptor cells The rod and cone cell's of the retina.
(05 Mar 2000)
glutamate receptor <physiology> See amino acid receptor superfamily. Glutamate receptors are implicated in many important brain functions including long-term potentiation (LTP).
at least 4 major glutamate gated ion channel subtypes are presently distinguished on pharmacological grounds, named after their most selective agonists: N methyl D aspartate (NMDA implicated in memory and learning, neuronal cell death, ischaemia and epilepsy), kainic acid (KA), quisqualate/AMPA and L 2 amino 4 phosphobutyrate (APB). A fifth subtype (APCD) trans 1 amino cyclopentane 1,3 dicarboxylate is a G-protein coupled receptor.
(18 Nov 1997)
glycine receptor <physiology> Chloride channel forming receptor. One of a family of neurotransmitter receptors with fast intrinsic ion channels.
See: amino acid receptors.
(18 Nov 1997)
peptide receptor Specific receptor for peptide neurotransmitters.
(18 Nov 1997)
G-protein coupled receptor <cell biology> Cell surface receptors that are coupled to G-proteins (GTP-binding protein).
G-protein coupled receptors are thought to have seven membrane spanning domains and have been divided into 2 subclasses: those in which the binding site is in the extracellular domain for example receptors for glycoprotein hormones, such as thyroid stimulating hormone (TSH) and follicle-stimulating hormone (FSH) and those in which the ligand binding site is likely to be in the plane of the 7 transmembrane domains for example rhodopsin and receptors for small neurotransmitters and hormones for example muscarinic acetylcholine receptor.
(18 Nov 1997)
ÀÌ ¾Æ·¡ ºÎÅÍ´Â °á°ú°¡ ¾ø½À´Ï´Ù.
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