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  • ¿µ¹®
    ÇѱÛ
  • heat-stable toxin
    ¿­ÀúÇ×µ¶¼Ò
  • initial heat
    Ãʱ⿭
  • local heat
    ±¹¼Ò¿­
  • maintenance heat
    À¯Áö¿­
  • moist heat
    Á¥Àº¿­
  • molar heat
    ¸ô¿­
  • molecular heat
    ºÐÀÚ¿­
  • radiant heat
    º¹»ç¿­, ¹æ»ç¿­
  • reduced heat
    ȯ»ê¿­·®
  • relaxation heat
    À̿Ͽ­
  • respiration heat
    È£Èí¿­
  • restitution heat
    º¹±¸¿­
  • reversible heat
    µÇÁý±â¿­, ¿­°¡¿ª¼º
  • shortening heat
    ´ÜÃà¿­
  • specific heat
    ƯÀÌ¿­
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  • ¿µ¹®
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  • heat of hydration
    ¼öÈ­¿­(â©ûúæð).
  • heat of ionization
    ÀÌ¿ÂÈ­¿­.
  • heat of maintenance
    À¯Áö¿­(ë«ò¥æð).
  • heat of maintenance
    À¯Áö¿­.
  • heat of polymerization
    ÁßÇÕ¿­(ñìùêæð).
  • heat of reaction
    ¹ÝÀÀ¿­(Úãëëæð).
  • heat of relaxation
    À̿Ͽ­(ì¬èÐæð).
  • heat of shortening
    ´ÜÃà¿­(Ó­õêæð).
  • heat of solidification
    ÀÀ°í¿­(ëêͳæð).
  • heat of sublimation
    ½ÂÈ­¿­(ã°ü¤æð).
  • heat of vaporization
    Áõ¹ß¿­(ñúÛ¡æð).
  • heat paralysis
    ¿Â¿­¸¶ºñ(è®æð Ýö).
  • heat production
    ¿­»ý»ê(æðßæß§).
  • heat prostration =h. exhaustion
    ¿­ÇÇ·Î(æðùªÖÌ), ´õÀ§¿¡ Áöħ.
  • heat pyrexia
    ¿­»çº´(æðÞÒÜ»).
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  • heat of ionization
    ÀÌ¿ÂÈ­¿­.
  • heat of maintenance
    À¯Áö¿­(ë«ò¥æð).
  • heat of maintenance
    À¯Áö¿­.
  • heat of polymerization
    ÁßÇÕ¿­(ñìùêæð).
  • heat of reaction
    ¹ÝÀÀ¿­(Úãëëæð).
  • heat of relaxation
    À̿Ͽ­(ì¬èÐæð).
  • heat of shortening
    ´ÜÃà¿­(Ó­õêæð).
  • heat of solidification
    ÀÀ°í¿­(ëêͳæð).
  • heat of sublimation
    ½ÂÈ­¿­(ã°ü¤æð).
  • heat of vaporization
    Áõ¹ß¿­(ñúÛ¡æð).
  • heat paralysis
    ¿Â¿­¸¶ºñ(è®æð Ýö).
  • heat production
    ¿­»ý»ê(æðßæß§).
  • heat prostration =h. exhaustion
    ¿­ÇÇ·Î(æðùªÖÌ), ´õÀ§¿¡ Áöħ.
  • heat pyrexia
    ¿­»çº´(æðÞÒÜ»).
  • heat radiation
    ¿­¹æ»ç(ËçËÑË×).
KMLE ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 5
HLF heat-labile factor; hepatic leukemia factor
HMX heat, massage, and exercise
HP halogen phosphorus; handicapped person; haptoglobin; hard palate; Harvard pump; health profession(al...
HS Haber syndrome; half strength; hamstring; hand surgery; Hartmann solution; head sling; healthy subje...
HSAP heat-stable alkaline phosphatase
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PDGFR Platelet Derived Growth Factor Receptors
PR Progestin receptors
PRL-R Prolactin receptors
PAR Protease activated receptors
RACK Receptors for activated C kinase
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 5
latent heat The amount of heat that a substance may absorb without an increase in temperature, as in conversion from solid to liquid state (ice to water at 0°C), or from liquid to gaseous state (water to steam at 100°C).
Compare: sensible heat.
(05 Mar 2000)
adrenergic receptors Reactive components of effector tissues, most of which are innervated by adrenergic postganglionic fibres of the sympathetic nervous system. Such receptor's can be activated by norepinephrine and/or epinephrine and by various adrenergic drugs; receptor activation results in a change in effector tissue function, such as contraction of arteriolar muscles or relaxation of bronchial muscles; adrenergic receptor's are divided into alpha-receptor's and beta-receptor's, on the basis of their response to various adrenergic activating and blocking agents.
Synonym: adrenoceptor, adrenoreceptors.
(05 Mar 2000)
alpha-adrenergic receptors Adrenergic receptor's in effector tissues capable of selective activation and blockade by drugs; conceptually derived from the ability of certain agents, such as phenoxybenzamine, to block only some adrenergic receptor's and of other agents, such as methoxamine, to activate only the same adrenergic receptor's. Such receptor's are designated as alpha-receptors. Their activation results in physiological responses such as increased peripheral vascular resistance, mydriasis, and contraction of pilomotor muscles.
(05 Mar 2000)
ANP clearance receptors Cell surface proteins that bind atrial natriuretic peptide and ANP fragments without initiating biological action.
(05 Mar 2000)
ANP receptors Cell surface receptors for atrial natriuretic peptide that have a single transmembrane spanning element; these have integral kinase and guanylate cyclase domains.
(05 Mar 2000)
B-cell antigen receptors In the primary immune response immunoglobulin D and monomeric immunoglobulin M are the B-cell antigen receptors. On memory B-cells, other immunoglobulin molecules can serve as antigen receptors.
(05 Mar 2000)
beta-adrenergic receptors Adrenergic receptor's in effector tissues capable of selective activation and blockade by drugs; conceptually derived from the ability of certain agents, such as propranolol, to block only some adrenergic receptor's and of other agents, such as isoproterenol, to activate only the same adrenergic receptor's. Such receptor's are designated as beta-receptors. Their activation results in physiological responses such as increases in cardiac rate and force of contraction (b1), and relaxation of bronchial and vascular smooth muscle (b2).
(05 Mar 2000)
mannose-6-phosphate receptors Receptors in Golgi apparatus to which newly synthesised proteins that are destined to enter lysosomes bind.
(05 Mar 2000)
receptors, adrenergic Cell-surface proteins that bind epinephrine and/or norepinephrine with high affinity and trigger intracellular changes. The two major classes of adrenergic receptors, alpha and beta, were originally discriminated based on their cellular actions but now are distinguished by their relative affinity for characteristic synthetic ligands. Adrenergic receptors may also be classified according to the subtypes of g-proteins with which they bind; this scheme does not respect the alpha-beta distinction.
(12 Dec 1998)
receptors, adrenergic, alpha One of the two major pharmacological subdivisions of adrenergic receptors. The alpha-beta distinction was originally based on cellular effects of receptor activation but now relies on the relative affinities for certain synthetic ligands. Alpha-adrenergic receptors are further subdivided into several subclasses based on studies of endogenous and cloned receptors.
(12 Dec 1998)
receptors, adrenergic, alpha-1 A subclass of alpha-adrenergic receptors (receptors, adrenergic, alpha). Alpha-1 adrenergic receptors can be pharmacologically discriminated, e.g., by their high affinity for the agonist phenylephrine and the antagonist prazosin. They are widespread, with clinically important concentrations in the liver, the heart, vascular, intestinal, and genitourinary smooth muscle, and the central and peripheral nervous systems.
(12 Dec 1998)
receptors, adrenergic, alpha-2 A subclass of alpha-adrenergic receptors (receptors, adrenergic, alpha). Alpha-2 adrenergic receptors can be pharmacologically discriminated, e.g., by their high affinity for the agonist clonidine and the antagonist yohimbine. They are found on pancreatic beta cells, platelets, and vascular smooth muscle, as well as both pre- and postsynaptically in the central and peripheral nervous systems.
(12 Dec 1998)
receptors, adrenergic, beta One of the two major pharmacologically defined classes of adrenergic receptors. The alpha-beta distinction was originally based on the cellular effects of receptor activation but now relies on the relative affinities for characteristic synthetic ligands. Beta adrenergic receptors are further subdivided based on information from endogenous and cloned receptors.
(12 Dec 1998)
receptors, adrenergic, beta-1 A subclass of beta-adrenergic receptors (receptors, adrenergic, beta). Beta-1 adrenergic receptors are equally sensitive to epinephrine and norepinephrine and bind the agonist dobutamine and the antagonist metoprolol with high affinity. They are found in the heart, juxtaglomerular cells, and in the central and peripheral nervous systems.
(12 Dec 1998)
receptors, adrenergic, beta-2 A subclass of beta-adrenergic receptors (receptors, adrenergic, beta). Beta-2 adrenergic receptors are more sensitive to epinephrine than to norepinephrine and have a high affinity for the agonist terbutaline. They are widespread, with clinically important roles in skeletal muscle, liver, and vascular, bronchial, gastrointestinal, and genitourinary smooth muscle.
(12 Dec 1998)
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