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Basic concepts and practical equations on osmolality: Biochemical approach

机译:渗透压的基本概念和实用方程式:生化方法

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The terms osmotic pressure, osmotic coefficient, osmole, osmolarity, osmolality, effective osmolality and delta osmolality are formally defined. Osmole is unit of the amount of substance, one mole of nonionized impermeant solute is one osmole. Assuming an ideal solution, osmotic pressure (pi) in mmHg is 19.3 times the osmolarity. Osmolarity is defined as the number of milliosmoles of the solutes per liter of solution. Suitable equations are presented for the rapid calculation of the osmolarity of different solutions. The concentrations of electrolytes are expressed by mEq/L that is, equal to their osmolarity as mOsm/L. If the solute concentration (C) is expressed as mg/L, mg/dL and g%, osmolarity is calculated as: C.n' /MW, C.n' (10)/MW and C.n' (10(4))/MW respectively. Osmolality is milliosmoles of solutes per one kilogram (or liter) of water of solution (plasma) and is calculated by osmolarity divided to plasma water. The osmolal concentration is corrected to osmolal activity by using the osmotic coefficient, phi. The salts of sodium (choloride and bicarbonate) and nonelectrolyte glucose and urea are the major five osmoles of plasma. The equation: Posm = 2 [Na+] + glucose (mg/dL)/18 + BUN (mg/dL)// 2.8 is also the simplest and best formula to calculate plasma osmolality. The concentration of only effective osmoles evaluates effective osmolality or tonicity as: Eosm = 2 [Na+] + glucose/18. The normal range of plasma tonicity is 275-295 mOsm/kg of water. The difference between the measured and calculated osmolality is called osmolal gap. It is recommended to withdraw the formula of Dorwart-Chalmers from the textbooks and autoanalyzers and to use the simplest equation of Worthley et al. as the best equation for calculating serum osmolality. Furthermore the normal ranges of osmolal gap also must be corrected to 0 +/- 2 mOsm/L. (C) 2016 The Canadian Society of Clinical Chemists. Published by Elsevier Inc. All rights reserved.
机译:正式定义了渗透压,渗透系数,重量克分子渗透压浓度,重量克分子渗透压浓度,重量克分子渗透压浓度,有效重量克分子渗透压浓度和δ重量克分子渗透压浓度。渗透压是物质量的单位,一摩尔非离子化的不渗透溶质是一个渗透压。假设是理想的解决方案,单位为mmHg的渗透压(pi)是渗透压的19.3倍。渗透压定义为每升溶液中溶质的毫摩尔数。提出了适合的方程式,用于快速计算不同溶液的摩尔渗透压浓度。电解质的浓度用mEq / L表示,等于它们的克分子渗透压浓度为mOsm / L。如果溶质浓度(C)表示为mg / L,mg / dL和g%,则摩尔渗透压浓度分别计算为:Cn'/ MW,Cn'(10)/ MW和Cn'(10(4))/ MW 。重量克分子渗透压浓度是每千克(或升)溶液(血浆)水溶质的毫摩尔浓度,通过将摩尔渗透压浓度除以血浆水来计算。通过使用渗透系数phi将渗透压浓度校正为渗透压活性。钠盐(胆酸盐和碳酸氢盐)以及非电解质葡萄糖和尿素是血浆中的主要五个渗透压。等式:Posm = 2 [Na +] +葡萄糖(mg / dL)/ 18 + BUN(mg / dL)// 2.8也是计算血浆渗透压的最简单,最好的公式。仅有效渗透压的浓度评估有效渗透压或渗透压为:Eosm = 2 [Na +] +葡萄糖/ 18。血浆张力的正常范围是275-295 mOsm / kg水。测量和计算的重量克分子渗透压浓度之间的差异称为重量克分子渗透压浓度间隙。建议从教科书和自动分析仪中删除Dorwart-Chalmers的公式,并使用Worthley等人的最简单公式。作为计算血清渗透压的最佳方程。此外,渗透压间隙的正常范围也必须校正为0 +/- 2 mOsm / L。 (C)2016加拿大临床化学家学会。由Elsevier Inc.出版。保留所有权利。

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