A61M1/168

MEDICAL DEVICE HAVING INTEGRATED STERILE WORK PLATFORM
20210322658 · 2021-10-21 ·

A medical device, such as a dialysis machine, may have multiple features and components that must be checked and attached prior to a treatment, and operators often lay tubing and other components on a surface after removing them from packaging. The system described herein provides a sterile work platform that is integrated with the medical device. In an example, the platform may be moveably coupled to the medical device. In a first position, the platform is positioned within or against the medical device, and, in a second position, the platform is extended from the medical device and disposed in a horizontal position. After the platform is extended to the second position, a surface of the platform is sterile and suitable to maintain aseptic technique for tubing and components placed on the platform. An information screen may be integrated into the platform and that provides information to an operator.

RENAL FAILURE THERAPY SYSTEM AND METHOD OF CLEANING USING CITRIC ACID
20210316054 · 2021-10-14 ·

A renal failure therapy system includes a dialysis fluid circuit including a dialysis fluid pump; a source of physiological cleaning, disinfecting, and/or decalcifying substance in fluid communication with the dialysis fluid circuit; a source of purified water in fluid communication with the dialysis fluid circuit; and a logic implementer in operable communication with the dialysis fluid pump, the logic implementer causing the physiological cleaning, disinfecting, and/or decalcifying substance from its source to be added to purified water from the purified water source to form a mixture and to circulate the mixture within the dialysis fluid circuit using the dialysis fluid pump to at least one of clean, disinfect or decalcify at least a portion of the dialysis fluid circuit without a subsequent rinse.

Dialysis machine, method of controlling the dialysis machine, and computer program for implementing the control
11135346 · 2021-10-05 · ·

In an embodiment, a dialysis machine includes a dialyser, a fluid line in fluid communication with the dialyser, an inlet valve enabling fluid to flow into the fluid line towards the dialyser during a dialysis treatment, a disinfectant line connected to the fluid line via a disinfectant valve upstream of the dialyser, the disinfectant valve enabling a disinfectant fluid to be provided to at least part of the fluid line during a disinfection procedure, and a controller programmed to open the inlet valve, while the disinfectant line is connected to a source of disinfectant fluid, to create a positive pressure gradient across the disinfectant valve as fluid flows into the fluid line towards the dialyser, the positive pressure gradient ensuring that the disinfectant fluid from the source of disinfectant fluid does not leak into the fluid line during the dialysis treatment.

MEDICAL DEVICE WITH TIME-CONTROLLED START FUNCTION

A medical device having a time-controlled start function and a control unit, which enables user-friendly operation of the medical device, is described. The medical device has a control unit, which is equipped for automatic start-up of the medical device at a predetermined point in time and for checking on whether, after start-up of the medical device, a predetermined event has occurred, and has a display screen for display of information when the check reveals that the event has not occurred. Furthermore, a corresponding process for user-friendly operation is described.

Renal failure therapy system and method of cleaning using citric acid
11065374 · 2021-07-20 · ·

A renal failure therapy system (10a, 10b) includes a dialysis fluid circuit (30) including a dialysis fluid pump (54, 58); a source (86, 90) of physiological cleaning, disinfecting, and/or decalcifying substance in fluid communication with the dialysis fluid circuit; a source (22) of purified water in fluid communication with the dialysis fluid circuit; and a logic implementer (20) in operable communication with the dialysis fluid pump (54,58), the logic implementer (20) causing the physiological cleaning, disinfecting, and/or decalcifying substance from its source (86, 90) to be added to purified water from the purified water source (22) to form a mixture and to circulate the mixture within the dialysis fluid circuit using the dialysis fluid pump (54,58) to at least one of clean, disinfect or decalcify at least a portion of the dialysis fluid circuit (30) without a subsequent rinse.

Syringe with dual nested chambers and method of use
11839747 · 2023-12-12 ·

A nested syringe comprising: a first chamber comprising: an inner tube extending from a base of the first chamber and defining a base opening in the base; an adapter tube in fluid communication with the inner tube via the base opening; at least one base port in the base for providing fluid communication between the adaptor tube and a first inner volume of the first chamber; a second chamber, adapted for insertion into the first chamber wherein the second chamber comprises a third port adapted to provide fluid communication between the inner tube and a second inner volume of the second chamber and adapted for preventing fluid communication between the first inner volume and the second inner volume when the second chamber is inserted into the first chamber and the inner tube penetrates the third port; and a plunger, wherein the plunger is adapted for insertion into the second chamber.

System for peritoneal dialysis and extracorporeal blood treatments

A dialysis system is configured to enable a patient to undergo both peritoneal dialysis and extracorporeal blood treatments. The example dialysis system includes a base unit configurable to provide a first fluid for use in preforming at least one peritoneal dialysis treatment at a first time. The base unit is further configurable to provide a second, different fluid for use in at least one extracorporeal blood treatment at a second, different time. The example dialysis system also includes a blood treatment unit configured to be docked to the base unit. The blood treatment unit includes a blood pump configured to pump blood from the patient to a blood filter and from the blood filter back to the patient. The blood filter or a blood line in communication with the blood filter receives the second fluid from the base unit for use in the at least one extracorporeal blood treatment.

ZIRCONIUM OXIDE MODULE CONDITIONING
20210187481 · 2021-06-24 · ·

The invention relates to devices, systems, and methods for conditioning a zirconium oxide sorbent module for use in dialysis after recharging. The devices, systems, and methods can provide for conditioning and recharging of zirconium oxide in a single system, or in separate systems.

MEDICAL FLUID DELIVERY SYSTEM INCLUDING REMOTE MACHINE UPDATING AND CONTROL
20210178039 · 2021-06-17 ·

A medical fluid delivery system including remote machine updating and control is disclosed. An example medical fluid delivery system includes a medical fluid delivery device for a patient. The medical fluid delivery system also includes a server in communication with the medical fluid delivery device and a software application for a mobile device. The software application causes an icon to be displayed representing the medical fluid delivery device. The medical fluid delivery system further includes a first communication link between the medical fluid delivery device and the server, and a second communication link between the server and the software application. The software application receives status updates from the medical fluid delivery device via the server and the first and second links.

MEDICAL SYSTEM WITH DOCKING STATION AND MOBILE MACHINE
20210193303 · 2021-06-24 ·

A computer-implemented medical system is provided. The system includes a docking station and a mobile machine. The system is configured to perform operations comprising: receiving, by the mobile machine and from a user, a request to transport the mobile machine to a target location to perform a medical treatment; automatically navigating the mobile machine to the target location; performing, by the mobile machine, the medical treatment on a patient; determining, by the mobile machine, that the medical treatment is completed and the mobile machine is disconnected from the patient; automatically navigating the mobile machine to a stationary docking station of the medical system; and determining that the mobile machine is connected to the docking station through one or more connectors, and in response, receiving, by the mobile machine, at least one of an electrical charge, a refill of one or more supplies, a cleaning, or a drain of waste.