The effects of ultrafiltration (UF) on plasma volume (PV) have been studied in eight patients using regular dialysis (RD) and controlled sequential ultrafiltration-haemodialysis (CSU) performed with a Rhodial 75 dialysis system. For a given value of UF the reduction of PV is determined by the plasma refilling rate. During CSU ultrafiltration induces a rapid increase in oncotic pressure without decreasing plasma osmolality. The high plasma refilling rate which can reach 1500 ml/hr allows moderate hypovolaemia despite high rates of UF and contributes to the usual good clinical tolerance of CSU. During RD a rapid decrease in plasma osmolality contributes to a water shift from the vascular space towards the interstitial and intracellular spaces and severe hypovolaemia can occur despite moderate ultrafiltration. CSU offers an adequate treatment for sodium overloaded patients with hypervolaemia, but is of no benefit in routine conditions.

Download full-text PDF

Source

Publication Analysis

Top Keywords

plasma refilling
12
refilling rate
12
regular dialysis
8
dialysis controlled
8
controlled sequential
8
sequential ultrafiltration-haemodialysis
8
plasma osmolality
8
plasma
6
rate genesis
4
genesis hypovolaemic
4

Similar Publications

Background: Glycocalyx degradation is implicated in endothelial damage and microcirculatory dysfunction in sepsis, whereas the effectiveness of plasma syndecan-1 levels and sublingual microcirculatory parameters in evaluating sepsis's prognosis has not yet been determined. This study aims to track their dynamic changes and investigate the prognostic utility of these indexes in sepsis.

Methods: In this prospective study conducted at the First Affiliated Hospital of Sun Yat-sen University, blood samples were collected from adult surgical septic patients within 2 days after intensive care unit admission measuring plasma syndecan-1 concentrations.

View Article and Find Full Text PDF

Three-weekly 4-h hemodialysis/hemodiafiltration (HD/HDF) per week has become the "standard HD/HDF" regimen in children across the globe, although increasingly criticized, since crucial determinants such as residual kidney function and patient preferences are not considered. As a consequence, several children fail to achieve adequate dialysis while on a "standard HD/HDF." In these circumstances, an extended dialysis prescription such as short daily (2-3 h/session, 5-7 days a week) or nocturnal HD/HDF (6-9 h/session, 3-5 days a week), either at home or in a dialysis center, may be considered.

View Article and Find Full Text PDF

This work unveils critical insights through spectroscopic analysis highlighting electrical phenomena and oxygen vacancy generation in self-aligned fully solution-processed oxide thin-film transistors (TFTs). Ar inductively coupled plasma treatment was conducted to fabricate an amorphous indium zinc oxide (a-InZnO) TFT in a self-aligned process. Results showed that the Ar plasma-activated a-InZnO regions became conductive, which means that a homogeneous layer can act as both channel and electrode in the device.

View Article and Find Full Text PDF

Background: Ultrafiltration (UF) is an essential process of restoring fluid homeostasis during hemodialysis (HD). Fluid shifts across the extracellular compartments during UF, predominantly across the capillary interface and between the macro- and microcirculation. A mismatch between UF and transcapillary fluid transport can lead to hemodynamic instability leading to cardiac morbidity.

View Article and Find Full Text PDF

Syneresis-Driven Self-Refilling Printing of Geometry/Component-Controlled Nano/Microstructures.

Adv Sci (Weinh)

October 2024

International Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba, Ibaraki, 305-0044, Japan.

Nano/microfabrication is of fundamental importance both in scientific and industrial situations. There are, therefore, many attempts at realizing easier, quicker, and more precise fabrication of various structures; however, achieving this aim without a bulky and costly setup is still challenging. Here, we introduce a facile and versatile means of printing an ordered structure consisting of nanoscale stripes and more complicated geometries including pillars and wavy form with a lateral resolution of single micrometers.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!