Forward osmosis dilutes PD concentrates with purified local water to produce point-of-care dialysis fluid with less transport, storage, and handling.
Incompressible fluid pumping and an expandable plate improve dialysis volume and pressure control while reducing disposable set cost and setup burden.
On-demand mixing of powdered solute, electrolyte concentrate, and sterile water simplifies peritoneal dialysis fluid preparation at point of use.
A segmented interface gateway bridges dialysis devices to hospital networks while isolating software updates from secure data transfer.
Dialysis fluid containing acetoacetate and beta-hydroxybutyrate deprives cancer cells of preferred energy sources.
An actuator-driven plunger injects and retracts sterilization fluid into dialysis connectors, eliminating infection risks from non-sterile manual connections.
A dialysate sampling device uses flow-driven sequential outlet selection to collect periodic samples without external power.
A peritoneal dialysis system regenerates spent fluid using immobilized urease and sorbent assemblies.
A medical connector uses a sealing pin to block fluid flow upon disconnection.
A control system dynamically adjusts minimum drain thresholds and fill volumes during automated peritoneal dialysis therapy cycles.