相关实验视频
Updated: May 24, 2025

08:19
The Mouse Isolated Perfused Kidney Technique
Published on: November 17, 2016
21.6K
同时控制和二碳酸盐血清度使用四流血液透析流体输送系统
Deepak Malhotra1, Susie Q Lew2, Raymond E Garrett3
1Department of Medicine, University of Toledo School of Medicine, Toledo, Ohio, USA.
概括
这项研究引入了一种新的血液透析流体输送系统,用于同时纠正和酸障碍. 该系统采用了四个流程的方法,可以精确控制治疗复杂的患者状况.
科学领域:
- 腎臟病學 (nephrology) 是一種醫學.
- 生物医学工程 生物医学工程
- 临床化学 临床化学
背景情况:
- 之前提出的四流透析液体输送系统旨在单独纠正失血症和代谢酸性疾病.
- 该系统包括一种酸缩剂,一种缩剂,一种化缩剂和用于血液透析的产品水.
研究的目的:
- 描述一种用于临床应用四流透析流体输送系统的新方法.
- 为了允许使用血液透析同时治疗失盐血症和代谢酸干扰.
主要方法:
- 一个四流系统,其中的控制产品水 (W),基缩物 (B) 和化缩物 (S) 的流量.
- 为了计算最终透析液中所需的和碳酸度的流量,我们得出了公式.
- 酸度 (A) 的流量和W:S:B:A的比率保持不变.
主要成果:
- 在一个EXCEL电子表格中实现了公式,以确定目标透析液组合的W:S:B:A流速比.
- 计算确定了透析液中和二碳酸盐的上下度极限.
- 该系统的临床应用和电解质测量尚未进行.
结论:
- 描述的系统提供了一种可行的方法来治疗严重的缺血症和代谢酸性疾病,无论是单独的还是同时的.
- 临床实施需要彻底的体外或体外研究和精细的专家监督,以确保安全可靠的使用.
相关概念视频
Renal Regulation of Acid-Base Balance
271
Metabolic reactions in the body produce nonvolatile acids, such as sulfuric acid, which generate an acid load of approximately 1 mEq of H+ per kilogram of body weight daily. Excreting H+ in the urine is essential to balance this acid load.
In the kidneys, cells within the proximal convoluted tubules (PCT) and the collecting ducts secrete hydrogen ions (H+) into the tubular fluid. Specifically, in the PCT, Na+/H+ antiporters secrete H+ while reabsorbing Na+.
However, the intercalated cells in...
In the kidneys, cells within the proximal convoluted tubules (PCT) and the collecting ducts secrete hydrogen ions (H+) into the tubular fluid. Specifically, in the PCT, Na+/H+ antiporters secrete H+ while reabsorbing Na+.
However, the intercalated cells in...
271
Dialysis
564
Dialysis is a diffusion-based purification process that separates analyte molecules from a complex matrix. This is accomplished by allowing molecules in the solution to pass through a semipermeable membrane into a liquid on the other side. The membrane is usually made of cellulose acetate or cellulose nitrate, and the second liquid must be miscible with the solution. Ions (e.g., chloride or sodium) or organic molecules (e.g., glucose) can pass through the membrane pores, which generally have...
564
Regulation of Sodium and Potassium
356
The regulation of sodium and potassium ion concentrations in the human body is a complex process governed primarily by hormones such as aldosterone, antidiuretic hormone (ADH), and atrial natriuretic peptide (ANP).
Sodium Regulation
Sodium ions make up approximately 90% of extracellular cations, with a normal blood plasma concentration of 136–148 mEq/L. A decrease in blood volume and pressure triggers the release of renin from granular cells in the juxtaglomerular complex (JGC), primarily...
Sodium Regulation
Sodium ions make up approximately 90% of extracellular cations, with a normal blood plasma concentration of 136–148 mEq/L. A decrease in blood volume and pressure triggers the release of renin from granular cells in the juxtaglomerular complex (JGC), primarily...
356
Formation of Concentrated Urine
1.3K
There is a gradient of solutes in the interstitial fluid from the renal cortex through the medulla, known as the medullary osmotic gradient. The juxtamedullary nephrons establish and maintain this gradient using countercurrent mechanisms with loops extending deep into the medulla. These nephrons also use countercurrent mechanisms to regulate urine volume and concentration. The interaction between the descending and ascending limbs of the nephron loop creates an osmotic gradient through...
1.3K
Antihypertensive Drugs: Potassium-Sparing Diuretics
429
Liddle syndrome is a genetically inherited form of hypertension characterized by the overactivity of epithelial sodium channels in the nephron, the functional unit of the kidney. This heightened activity leads to increased sodium reabsorption and excessive excretion of potassium. To counteract this, potassium-sparing diuretics such as amiloride are used. They function by blocking these sodium channels, thereby reducing the influx of sodium into the epithelial cells and minimizing the loss of...
429
Controlled-Current Coulometry: Overview
146
Controlled current coulometry, also known as amperostatic coulometry, is a technique used in electrochemical analysis to measure the quantity of a substance through the controlled passage of current. It involves the application of a constant current to an electrochemical cell containing the analyte of interest. As the current flows through the cell, the analyte undergoes a redox reaction at the electrode surface, resulting in a charge transfer. By monitoring the time required for a certain...
146

