| 영문 | basal metabolic rate(BMR) | 한글 | 기초대사율 |
|---|---|---|---|
| 설명 | 표준 기초대사량과 비교했을 때 개체 기초대사량이 보이는 편차를 표시하는 지수. 기초대사량은 생명을 유지하는데 필요한 최소한의 에너지 대사량이며, 성과 연령이 동일한 건강인의 기초대사량은 체표면적에 비례한다. 이것을 체표면적의 법칙이라고 하며, 1882년 독일의 대사생리학자 M. 브루너에 의해 제창되었다. 체표면적은 신장과 체중에 의해 산출된다. 따라서 성-연령-신장-체중을 알면 표준기초량 Y가 산출되고 실제의 기초대사량 X는 산소소비량과 이산화탄소 발생량에서 산출된다. 그리고 X와 Y의 차이를 Y로 나눈 값(%)을 기초대사율이라고 한다. 경험적으로 얻은 BMR의 간단한 측정법도 있으며 다음과 같은 식으로 구한다. 이 식에서 맥폭이란 최고혈압과 최저혈압의 차를 말한다. BMR(%)=0.75(1분 맥박수 + 0.74×맥폭)-72. BMR이 10% 이내이면 정상범위, +10% 이상이면 기초대사항진, -10% 이하이면 기초대사 저하라고 한다. 기초대사는 공복시(식후 10시간 경과)에 안정된 상태에서 단위 시간당 이용되는 에너지의 양, 즉, 한 시간당, 몸 표면의 1m2당 또는 몸무게 1kg 당 칼로리로 나타낸다. 이것은 개인에 따라 다르며 장기간에는 거의 변화가 없지만 질병 등으로 인해 변동된다. 실측한 기초대사를 표준치와 비교함으로써 질병의 진단 등에 응용할 수 있다 BMR=(실측치-표준치)/표준치 ×100(%)로 나타낸다. |
||
| EGRA | equilibrium-gated radionuclide angiography |
|---|---|
| MGES | multiple gated equilibrium scintigraphy |
| BMR | Basal Metabolic Rate; 기초대사율 |
| CLO | 의복의 열차단 단위 1 CLO; 기온 21℃, 기습 50 %, 기류 5cm/sec에서 Metabolic Rate 50 Kcal/m2/Hr로 피부온도가 ... |
| L/S ratio | Lecithin/Sphingomyelin > 2이나 IRDS가 오는 경우 1. DM Mother ... |
| E.D. | Equilibrium dialysis |
|---|---|
| ERNA | Equilibrium radionuclide angiocardiography |
| ERNA | Equilibrium radionuclide angiography |
| HWE | Hardy-Weinberg Equilibrium |
| OEC | Oxygen equilibrium curves |
| acid-base equilibrium | A condition in which the net rate of acid or alkali production by the body is balanced by the net rate of acid or alkali excretion from the body, resulting in a stable concentration of hydrogen ions in the body fluids. (12 Dec 1998) |
|---|---|
| radioactive equilibrium | <radiobiology> That condition in which the activities of the members of a radioactive chain decrease exponentially in time with the half-life of the chain precursor. Such radioactive equilibrium is only possible when the half-life of the precursor is longer than that of any other chain member. If the precursor half-life is so long that the change in the precursor population during the period of interest can be ignored, all the activities become sensibly equal and the equilibrium is said to be secular, otherwise it is said to be transient. (16 Dec 1997) |
| random mating equilibrium | <genetics> In a population containing the genotypes of AA, aa, and Aa, the frequency of AA will be p2, the frequency of aa will be q2, and the frequency of Aa will be 2 pq at equilibrium, where p is the frequency of A and q is the frequency of a. By the Hardy-Weinberg law, a ramdonly-mating population will eventually reach these frequencies and be at this equilibrium as long as there are no selection pressures on the population. (09 Oct 1997) |
| genetic equilibrium | A condition in which the rate of an allele's forward mutation is cancelled out by its rate of reverse mutation. (09 Oct 1997) |
| Gibbs-Donnan equilibrium | An equilibrium established between a charged, immobile colloid (such as clay, ion exchange resin or cytoplasm) and a solution of electrolyte. Characteristics: ions of like charge to the colloid tend to be excluded, ions of opposite charge tend to be attracted, the colloid compartment is electrically polarized relative to the solution in the same direction as the colloid charges (a Donnan potential) and the osmotic pressure is higher in the colloid compartment. (18 Nov 1997) |
| chemical equilibrium | <chemistry> A state in a reversible chemical reaction at which the reactants are turning into products at the same rate as the products are turning back into the reactants, so that the amounts of each reactant and product remains constant. (09 Oct 1997) |
| physiologic equilibrium | nutritive equilibrium |
| Hardy-Weinberg equilibrium | <genetics> In a population containing the genotypes of AA, aa, and Aa, the frequency of AA will be p2, the frequency of aa will be q2, and the frequency of Aa will be 2 pq at equilibrium, where p is the frequency of A and q is the frequency of a. By the Hardy-Weinberg law, a ramdonly-mating population will eventually reach these frequencies and be at this equilibrium as long as there are no selection pressures on the population. (09 Oct 1997) |
| secular equilibrium | A type of radioactive equilibrium in which the half-life of the precursor (parent) radioisotope is so much longer than that of the product (daughter) that the radioactivity of the daughter becomes equal to that of the parent with time. Stable equilibrium, equilibrium in which, after every small perturbation, the original state will tend to be restored. Transient equilibrium, a type of radioactive equilibrium in which the half-life of the parent radioisotope is longer than that of the daughter so that the ratio of activities of parent and daughter become constant as they decrease with time. Unstable equilibrium, equilibrium in which the response to a small perturbation will tend to make the perturbation greater (e.g., a logged feedback process of zero order). (05 Mar 2000) |
| homeostatic equilibrium | See: homeostasis. Nitrogenous equilibrium, a condition in which the amount of nitrogen excreted from the body equals that taken in with the food; nutritive equilibrium so far as protein is concerned. Nutritive equilibrium, condition in which there is a perfect balance between intake and excretion of nutritive material, so that there is no increase or loss in weight. Synonym: physiologic equilibrium. (05 Mar 2000) |
| sense of equilibrium | The sense that makes possible a normal physiologic posture. Synonym: static sense. (05 Mar 2000) |
| Donnan equilibrium | An equilibrium established between a charged, immobile colloid (such as clay, ion exchange resin or cytoplasm) and a solution of electrolyte. Characteristics: ions of like charge to the colloid tend to be excluded, ions of opposite charge tend to be attracted, the colloid compartment is electrically polarized relative to the solution in the same direction as the colloid charges (a Donnan potential) and the osmotic pressure is higher in the colloid compartment. (18 Nov 1997) |
| dynamic equilibrium | Balance A condition in which no further net change is occuring in a system, and free energy is minimimal. (09 Oct 1997) |
| thermodynamic equilibrium | <radiobiology> There is a very general result from statistical mechanics which states that, if a system is in thermodynamic equilibrium with another (or several other) system, all processes by which the systems can exchange energy must be exactly balanced by their reverse processes, so that there is no net exchange of energy. For plasma systems in thermodynamic equilibrium, ionisation must be balanced by recombination, Bremsstrahlung by absorption, and so on. When thermodynamic equilibrium exists, the distribution function of particle energies and excited energy levels of the atoms can be obtained from the Maxwell-Boltzmann distribution (which is a function only of the temperature). The Saha equation is a special application of this. (09 Oct 1997) |
| equilibrium | Balance A condition in which no further net change is occuring in a system, and free energy is minimimal. (09 Oct 1997) |
제품명 |
판매사 |
보험코드 | 성분/함량 | 구분/보험급여 |
|---|
제품명 |
판매사 |
보험코드 | 성분/함량 | 구분/보험급여 |
|---|