Related Experiment Video
Updated: Jan 5, 2026

The Collective Trust Game: An Online Group Adaptation of the Trust Game Based on the HoneyComb Paradigm
Published on: October 20, 2022
The early years of on-line HDF: how did it all start? How did we get here?
1Nephrology, Dialysis & Intensive Care Unit, and Institut de Recherche et Formation en Dialyse, Montpellier, France.
Insights
On-line hemodiafiltration (HDF) offers a superior method for clearing uremic toxins and reducing inflammation in kidney patients. This advanced dialysis technique has proven safe and effective, establishing itself as a new standard for high-quality chronic kidney disease care.
Area of Science:
- Nephrology
- Biomedical Engineering
Background:
- Traditional hemodialysis in the 1980s faced limitations including short treatment times, low-flux membranes, and acetate-buffered dialysate, contributing to high patient morbidity and cardiovascular mortality.
- These limitations spurred the development of innovative dialysis solutions to improve patient outcomes and reduce dialysis-related pathologies.
Observation:
- On-line hemodiafiltration (HDF) was conceptualized to overcome the shortcomings of conventional hemodialysis by integrating diffusive and convective clearances.
- This method utilizes ultrapure dialysis fluid and high-flux synthetic membranes, enhancing biocompatibility and mitigating inflammation.
- The system leverages advanced hemodialysis machines with integrated safety features and produces sterile dialysis fluid for high-volume exchanges.
Findings:
- The initial clinical trial of on-line HDF in 1984-85 demonstrated its feasibility and therapeutic potential.
- Over 25 years of clinical use, on-line HDF has consistently shown to be safe and efficacious in managing chronic kidney disease.
- The combination of efficient toxin removal and improved biocompatibility translates to significant clinical benefits for patients.
Implications:
- On-line HDF represents a significant advancement in dialysis technology, offering a more effective and safer treatment modality.
- The proven clinical benefits suggest that on-line HDF should be considered the new standard of care for patients requiring chronic dialysis.
- Widespread adoption of on-line HDF has the potential to improve long-term outcomes and quality of life for individuals with chronic kidney disease.
Abstract:
In the mid-1980s, limits and side effects of contemporary hemodialysis were basically due to short treatment time, use of low-flux membranes and employment of acetate-buffered dialysate. These were already associated with a relatively high morbidity and cardiovascular mortality as part of diaysis-related pathology. Based on these considerations, the concept of on-line hemodiafiltration (HDF) was proposed as an innovative solution. By combining diffusive and convective clearances, HDF offered the most efficient modality to clear small and middle-sized uremic toxins. Furthermore, by using ultrapure dialysis fluid and high-flux synthetic membranes, HDF also offered the most biocompatible dialysis system, thereby going a long way towards preventing inflammation. Through provision of virtually unlimited amounts of sterile dialysis fluid by cold sterilization of fresh dialysate, on-line HDF offered an economical and viable method of conducting high-efficiency HDF (high volume exchange) therapy. By keeping the hemodialysis machine with all built-in technical options (e.g. adjustable blood pump, fluid-balancing system, conductivity meter, flow and pressure monitoring, bicarbonate-buffered dialysate), HDF benefited from being associated with the use of dialysis machines with excellent technology as well as highest safety standards. Use of ultrapure water made it then possible to produce dialysis fluid of intravenous grade quality with these machines. The first on-line HDF clinical trial was performed with a modified A2008C dialysis machine in 1984-85. This confirmed the feasibility and potential of the on-line HDF method. Some 25 years later, on-line HDF has proven to be safe, efficacious and with clinical benefits that justify it becoming a new standard for high-quality care of chronic kidney patients.
Related Concept Videos
Purpose of Health Records II
Discrete-Time Fourier Series
For a discrete-time periodic signal x[n]...
Histogram
A histogram graph consists of contiguous (adjoining) boxes. The heights of the bars correspond to frequency values. The graph will have the same shape with respective labels. The...
Health Information Technology and Healthcare Information System
Health Information Technology, commonly called HIT, integrates advanced information systems and technology in healthcare settings. Its primary functions include:
Hess's Law
Data Collection II

