Abstract:
A system for anal or stomal irrigation comprises a reservoir (102) for an irrigating liquid; a catheter (100) comprising a catheter tip for insertion into the rectum or stoma, a thermo sensor (128) connected to the reservoir for obtaining a measure of a temperature within the reservoir, a tubing system and/or the catheter. A control system (103) operatively connected with the thermo sensor is configured to determine a temperature within the reservoir. A method for predicting a temperature in a reservoir for irrigation liquid is also provided.
Abstract:
A system for anal and/or stomal irrigation comprises a reservoir (102) for an irrigating liquid, a catheter (100) comprising a catheter tip for insertion into the rectum or stoma of a user and for expelling of the irrigating liquid from the catheter tip, and a tubing system (121) providing a conduit for the irrigating liquid between the reservoir and the catheter tip. A pump (101) is provided to pump the irrigating liquid from the reservoir to the catheter tip, and a control system (103) controls a flow condition, such as the amount of liquid expelled at the catheter tip. A sensor (153) determines a measure of pressure in at least one first predetermined position in the tubing system and/or the catheter during operation of the pump, on the basis of which the flow condition is estimated. The control system is configured to control the pumping operation of the pump in response to the measure of pressure.
Abstract:
A system for anal irrigation is provided. The system includes a container, an anal probe, tubes and an electrical pump. The container has two configurations, a first collapsed configuration and a second expanded configuration. In the first configuration, a cavity for storing tubes and the anal probe is provided. In the second configuration, the container has a cavity for containing irrigation liquid. The pump and valves is stored in a cavity towards the bottom of the container.
Abstract:
A suction system for removal of fluids from a surface, e.g. a wound site, the system comprising a cover (1) attachable to a circumference of the surface to form an enclosed suction space sealed from ambient space. The system further comprises a pump (4) in fluid communication with the enclosure via a tube (2) to provide a pressure difference between a suction pressure in the enclosure and an air pressure of an ambient space. To provide an improvement over the known systems and to facilitate pressure measurement, the system comprises flushing means (11) to clean the tube.
Abstract:
A portable bowel irrigating system for irrigating the bowels of a user with a removably attachable and replaceable pump cartridge allowing for moving parts of the pump mechanism to be substituted and for a high standard of cleanliness. The system includes a base unit, a liquid container, the pump cartridge, tubing, and an anal probe. Also disclosed is a method of irrigating the bowels of a user.
Abstract:
A method, performed in an accessory device, for communicating the operating state of a wound dressing comprising an absorbent core layer is disclosed, wherein the accessory device comprises an interface configured to communicate with one or more devices of a wound dressing system, the one or more devices comprising a monitor device, and/or a wound dressing configured to be placed on a skin surface of a user, the method comprising: obtaining monitor data from the one or more devices, the monitor data being indicative of a condition of the wound dressing; determining an operating state of the wound dressing based on the monitor data, wherein the operating state is indicative of a degree of wetting of the absorbent core layer of the wound dressing; and communicating the operating state of the wound dressing via the interface.
Abstract:
A base plate for an ostomy appliance, the base plate (4) comprises a top layer (208) defining a base plate plane; a first adhesive layer (200) adapted to adhere the base plate (4) to peristomal skin of a user; an electrode assembly (204); and a monitor interface (207) configured to electronically connect with the electrode assembly (204), where the monitor interface (207) comprises a coupling part (210) configured to form a releasably mechanically and/or electronically coupling between the base plate (4) and a monitor device (6); the coupling part (210) is configured to engage and/or disengage with the monitor device (6) allowing the monitor device (6) to be coupled to the base plate by a motion in a direction corresponding to an acute angle of 45 degrees or less relative to the base plate plane.
Abstract:
An ostomy system configured to detect moisture content in a base plate or a sensor assembly part of the ostomy system, the ostomy system comprising the base plate and/or a sensor assembly part and a monitor device. The base plate or the sensor assembly part includes a first adhesive layer, a plurality of electrodes, and one or more sensing zones each covering one of one or more regions of the first adhesive layer, each of the one or more sensing zones including at least two of the plurality of electrodes. The monitor device is electrically coupled to the plurality of electrodes of the base plate or the sensor assembly part and configured to measure one or more resistances in the one or more sensing zones between the plurality of electrodes, each of the one or more resistances measured by two of the plurality of electrodes at one of the one or more sensing zones, and determine moisture content of the first adhesive layer at each of the one or more sensing zones based on the measured one or more resistances.
Abstract:
A monitor device for an ostomy system is disclosed. The monitor device comprises a first interface comprising a primary terminal and a secondary terminal. The primary terminal is configured to form electrical connection with a primary electrode of the base plate when the monitor device is coupled to the base plate, and the primary terminal being configured to form electrical connection with a primary charge terminal of the accessory device when the monitor device is coupled to the accessory device. The secondary terminal is configured to form electrical connection with a secondary electrode of the base plate when the monitor device is coupled to the base plate, and the secondary terminal being configured to form electrical connection with a secondary charge terminal of the accessory device when the monitor device is coupled to the accessory device.
Abstract:
A base plate and/or a sensor assembly part for an ostomy appliance and related method is disclosed, the base plate and/or the sensor assembly part comprising: a first adhesive layer with a proximal side configured for attachment of the base plate and/or the sensor assembly part to the skin surface of a user, the first adhesive layer having a stomal opening with a center point; and a plurality of electrodes including a first leakage electrode, a second leakage electrode, and a third leakage electrode, wherein the plurality of electrodes is configured to detect presence of fluid on the proximal side of the first adhesive layer in a primary sensing zone and a secondary sensing zone, the primary sensing zone arranged in a primary angle space from the center point of the first adhesive layer and the secondary sensing zone arranged in a secondary angle space from the center point of the first adhesive layer.