| ¿µ¹® | growth hormone | ÇÑ±Û | ¼ºÀåÈ£¸£¸ó |
|---|---|---|---|
| ¼³¸í | ³úÇϼöü Àü¿±¿¡¼ ºÐºñµÇ´Â È£¸£¸óÁß Çϳª·Î¼ ½Ã»óÇϺÎÀÇ ¼ºÀåÈ£¸£¸ó¹æÃâ È£¸£¸ó¿¡ ÀÇÇØ ºÐºñ°¡ ÀÚ±ØµÇ¸ç ¼Ò¸¶Å佺Ÿƾ(somatostatin: ÀÌÀÚ¿¡¼ ºÐºñµÇ¸ç, ¼ºÀåÈ£¸£¸ó¿¡ ¹Ý´ëµÇ´Â ÀÛ¿ëÀ» ÇÔ)¿¡ ÀÇÇØ ºÐºñ°¡ ¾ïÁ¦µÈ´Ù. ¼ºÀå È£¸£¸ó ¹æÃâ È£¸£¸óÀº µµÆÄ¹Î(dopamine)À¸·Î ¾Ë·ÁÁ® ÀÖ´Ù. ¼ºÀå È£¸£¸óÀº ¼¼Æ÷ÀÇ ¼ºÀåÀ» ÃËÁø½Ã۸ç ƯÈ÷ °ñÀÇ ¼ºÀåÀ» ÀÚ±ØÇϴµ¥ ±× ÀÛ¿ëÀº Á÷Á¢ ¼¼Æ÷¿¡ ÀÛ¿ëÇÏ´Â °ÍÀÌ ¾Æ´Ï¶ó °£°ú ±ÙÀ°¿¡ ÀÛ¿ëÇÏ¿© ±×°÷¿¡¼ ¼Ò¸¶Åä¸ÞµòÀ» »ý¼ºÇϸç ÀÌ ¼Ò¸¶Åä¸ÞµòÀÌ ¼¼Æ÷ÀÇ ¼ºÀåÀ» ÃËÁø½ÃŲ´Ù. ÇÑÆí ¼ºÀå È£¸£¸óÀº ¼ºÀå¿¡ ÇÊ¿äÇÑ ´Ü¹éÁú ÇÕ¼ºÀ» Ç×Áø½ÃŰ°í ¿¡³ÊÁö´Â Áö¹æÀ» ÀÌ¿ëÇÏ¿© ¾ò°ÔÇϹǷΠÁö¹æÀÌ¿ëÈ£¸£¸óÀ̶ó°íµµ ºÒ¸°´Ù. ¼ºÀå È£¸£¸óÀÌ °ú´Ù ºÐºñµÇ¸é °ÅÀÎÁõ, ¸»´Üºñ´ëÁõÀÌ À¯¹ßµÇ¸ç ¼ºÀå È£¸£¸óÀÌ °áÇÌµÇ¸é ¼ºÀåºÎÁøÀÌ ¿Â´Ù. |
||
| ¿µ¹® | growth factor | ÇÑ±Û | ¼ºÀåÀÎÀÚ |
|---|---|---|---|
| ¼³¸í | ¼¼Æ÷ÀÇ ºÐÈ ¹× ¼ºÀå¿¡ °ü¿©ÇÏ´Â ´Ü¹éÁú. ¼ºÀåÀÎÀÚ´Â Á¤»ó ¼¼Æ÷Áֱ⿡ ÇʼöÀûÀ̱⠶§¹®¿¡ µ¿¹°ÀÇ »ý¸í¿¡ Áß´ëÇÑ ¿ä¼Ò°¡ µÈ´Ù. ¹«¾ùº¸´Ùµµ ¼ºÀåÀÎÀڴ žÆÀÇ ¹ßÀ°À» Á¶Á¤Çϰí Á¶Á÷ÀÇ À¯Áö ¹× º¸¼ö¿¡ Áß´ëÇÑ ¿ªÇÒÀ» Çϸç, Ç÷±¸ÀÇ »ý¼ºÀ» ÀÚ±ØÇÑ´Ù. ¶ÇÇÑ ¾ÏÀÇ ÁøÇà°úÁ¤¿¡µµ °ü¿©ÇÑ´Ù. |
||
| NORML | National Organization for the Reform of Marijuana Laws |
|---|---|
| HCG, hCG | Human Chorionic Gonadotropin; »ç¶÷À¶¸ð¼º¼º¼±ÀÚ±ØÈ£¸£¸ó 1. Placental Glycoprotein Hormone &nbs... |
| NG | nasogastric; neoplastic growth; new growth; nitroglycerin; nodose ganglion; no growth; not given |
| TGF | T-cell growth factor; transforming growth factor; tuboglomerular feedback; tumor growth factor |
| IDA | 1) Imino-Diacetic Acid 2) Iron Deficiency Anemia &nb... |
| HB-EGF | Heparin binding epidermal growth factor-like growth factor |
|---|---|
| HB-EGF | Heparin-binding epidermal growth factor (EGF)-like growth factor |
| GH-IGF-I | growth hormone-insulin-like growth factor I |
| EGF | 125)I-epidermal growth factor |
| NGF | 125)I-nerve growth factor |
IGF-II : insulin like growth factor-IIÀÇ ¾àÀÚ. ¸¹Àº Àå±â¿Í Á¶Á÷¿¡ ÀÛ¿ëÇÏ¿© ´Ü¹é ÇÕ¼º°ú DNA, RNAÀÇ ÇÕ¼ºÀ» Áõ°¡½ÃÄÑ ¼¼Æ÷ÀÇ ¼ö¿Í ¾çÀ» Áõ°¡
| Rubner's laws of growth | The law of constant energy consumption: the rapidity of growth is proportional to the intensity of the metabolic processes, the law of the constant growth quotient: in most young mammals, 24% of the entire food energy, or calories, is utilised for growth; in humans only 5% is utilised. (05 Mar 2000) |
|---|
| Rubner | Max, German hygienist and biochemist, 1854-1932. See: Rubner's laws of growth, Rubner's test. (05 Mar 2000) |
|---|---|
| Rubner's test | A test for lactose or glucose in the urine; lead acetate is added to the suspected urine which is then filtered; ammonia is added until a permanent precipitate is formed; if lactose is present, the precipitate will take on a pink to red colour when the fluid is heated; if there is glucose, the colour will be yellow to brown. (05 Mar 2000) |
| Ambard's laws | <physiology> Obsolete law's for output of urea: 1. With the urinary urea concentration constant, urea output varies directly as the square of the concentration of the blood urea. 2. With the blood urea concentration constant, urea output varies inversely as the square root of its urinary concentration. (05 Mar 2000) |
| antitrust laws | Those federal and state laws, and their enforcement, that protect trade and commerce from unlawful restraints and monopolies or unfair business practices. (12 Dec 1998) |
| Mendel's laws | <genetics> The two basic principles of genetics proposed by Gregor Mendel. The law of segregation, which states that the alleles governing a trait are separated during the creation of gametes (meiosis). The law of independent assortment, which states that the genes controlling different traits are distributed separately from each other during meiosis. (13 Nov 1997) |
| scaling laws | <radiobiology> These are mathematical rules explaining how variation in one quantity affects variations in other quantities. For instance, in a tokamak reactor its generally believed that energy confinement depends on the size of the device and the strength of the magnetic field, but the precise nature of the dependence is not fully understood, so empirical scaling laws are tested to see what the dependence is. Scaling laws are useful for extrapolating from parameter regimes where the mathematical relationships between the various quantities are known, into unexplored regimes. (09 Oct 1997) |
| Thoma's laws | The development of blood vessels is governed by dynamic forces acting on their walls as follows: an increase in velocity of blood flow causes dilation of the lumen; an increase in lateral pressure on the vessel wall causes it to thicken; an increase in end-pressure causes the formation of new capillaries. (05 Mar 2000) |
| Faraday's laws | The amount of an electrolyte decomposed by an electric current is proportional to the amount of the current, when the same current is passed through several electrolytes, the amounts of the different substances decomposed are proportional to their chemical equivalents. (05 Mar 2000) |
| Fick's laws of diffusion | The direction of movement of solutes by diffusion is always from a higher to a lower concentration and the diffusive flux JA of solute A across a plane at x is proportional to the concentration gradient of A at x; i.e., JA = -D(CA/x), the increase of concentration of solute A with time, CA/t, is directly proportional to the change in the concentration gradient, i.e., CA/t = D(fl2/x2). (05 Mar 2000) |
| laws of association | Principles formulated by Aristotle to account for the functional relationships between ideas; the law of contiguity (association) proved most useful to experimental psychologists, culminating in modern studies of respondent conditioning. (05 Mar 2000) |
| accretionary growth | Growth by an increase of intercellular material. (05 Mar 2000) |
| appositional growth | Growth accomplished by the addition of new layers on those previously formed; e.g., the addition of lamellae in the formation of bone; it is the characteristic method of growth when rigid materials are involved. (05 Mar 2000) |
| auxetic growth | Growth by increase in the size of component cells. Synonym: intussusceptive growth. (05 Mar 2000) |
| bacterial growth | Growth of a bacterial culture either by increase in cell material or cell number. (05 Mar 2000) |
| B-cell differentiation/growth factors | Various substances, usually obtained from the supernatant of T-cell cultures, such as interleukin 4, 5, and 6. These substances are necessary for B-cell growth, maturation, and differentiation into plasma cells or B memory cells. (05 Mar 2000) |
Á¦Ç°¸í |
ÆÇ¸Å»ç |
º¸ÇèÄÚµå | ¼ººÐ/ÇÔ·® | ±¸ºÐ/º¸Çè±Þ¿© |
|---|
Á¦Ç°¸í |
ÆÇ¸Å»ç |
º¸ÇèÄÚµå | ¼ººÐ/ÇÔ·® | ±¸ºÐ/º¸Çè±Þ¿© |
|---|