Patent classifications
A61M1/14
METHOD AND SYSTEM FOR NON-ELECTRIC COMMUNICATION IN WATER TREATMENT PLANTS OR MEDICAL APPLIANCES
The invention relates to a communications device for non-electric communication between fluidically interconnected devices, the communications device being designed to be mounted in a position in a fluidic overall system formed by the fluidically interconnected devices and to receive and/or emit non-electric signals, in particular in the form of pressure or sound signals, the non-electric signals being transmitted via a line that fluidically interconnects the devices. The invention further relates to a method for non-electric communication between fluidically interconnected devices, the non-electric communication taking place preferably by means of pressure and/or sound signals via at least one line that fluidically interconnects the devices.
Artificial Kidney to support a concept of digital dialysis (CDD)
An artificial kidney and its supportive device comprising a catheter having an internal semipermeable membrane tube to act as an artificial kidney. Said catheter comprising a proximal portion having a semipermeable membrane tube, a blood/infusion lumen, a dialysate lumen and side holes, while a distal portion having a dual septa port assembly. Said supportive device comprising a device house with its cover that covers its internal cavity that includes sorbent bags with different sizes and arrangement, a screen, buttons , set knobs, two contactless conductivity cells, bidirectional rotary pumps, rotary valves, pressure sensors, a slot for memory card, a temperature sensor, scales, an IV pole and a blood leak detector.
A method comprising: inserting the catheter having an internal semipermeable membrane tube that acts as artificial kidney into a suitable vein or artery, then using the supportive device to supporting, facilitating, and controlling the operation of the artificial kidney and to managing the dialysate inflow and outflow to and from the dialysate lumen within the catheter and also to managing the blood inflow and outflow to and from the infusate/blood lumen within the catheter to be on opposite direction across the semipermeable membrane of the artificial kidney.
MEDICAL DEVICE WITH A DISPLAY AND WITH A PROCESSING UNIT AND METHOD THEREFOR
The disclosure relates to a medical device with a display and with a processing unit and method therefor. The processing unit is suitable for detecting states of one or more technical units of the medical device. The processing unit is further set up to control the display on the basis of detected states in order to output states of the medical device. The display is an autostereographic display. The processing unit, based on an evaluation of detected states, drives the display in such a way that a first state is visually highlighted with respect to a 3D representation, while a second state is visually not highlighted with respect to a 3D representation.
CONTROL DEVICE FOR A BLOOD TREATMENT APPARATUS, BLOOD TREATMENT APPARATUS, SYSTEM AND METHOD
A control device for a blood treatment apparatus, such as a hemodialysis machine, is programmed to be in signal communication with a data storage for transfer of first data. In addition, the control device is programmed to control or regulate the blood treatment apparatus based on a plurality of sequences included in the first data, after the first data has been transmitted from the data storage to the control device. Further, the control device is programmed to be in signal communication with a central unit. The signal communication serves for receiving second data from the central unit. The control device is further programmed to associate the received second data, according to a predetermined rule, with the first data and to load it from the data storage and to control or regulate the operation of the blood treatment apparatus based on this data.
CONTROL DEVICE FOR A BLOOD TREATMENT APPARATUS, BLOOD TREATMENT APPARATUS, SYSTEM AND METHOD
A control device for a blood treatment apparatus, such as a hemodialysis machine, is programmed to be in signal communication with a data storage for transfer of first data. In addition, the control device is programmed to control or regulate the blood treatment apparatus based on a plurality of sequences included in the first data, after the first data has been transmitted from the data storage to the control device. Further, the control device is programmed to be in signal communication with a central unit. The signal communication serves for receiving second data from the central unit. The control device is further programmed to associate the received second data, according to a predetermined rule, with the first data and to load it from the data storage and to control or regulate the operation of the blood treatment apparatus based on this data.
Blood purification system
A blood purification system is provided that is capable of effectively utilizing accumulated histories stored during blood purification treatment and that helps take a quick and appropriate action in response to a particular incident that occurs unsteadily. In a blood purification system, a history stored in a storage device includes particular incidents having occurred unsteadily in blood purification treatment. The blood purification system includes an extracting device capable of searching the histories accumulated in the storage device and extracting a desired one of the particular incidents, a calculating device capable of calculating a time when the particular incident extracted by the extracting device occurs a predetermined or more number of times as a frequent-occurrence time slot, and a display control device capable of displaying the frequent-occurrence time slot calculated by the calculating device on a display during a current session of blood purification treatment.
Interface device between an external equipment and lines intended to be connected to a patient system
An interface device between external equipment and at least a venous tube for transferring fluid to a patient, the interface device having at least a first port adapted to be connected to an outlet port of the external equipment; and a venous port carried by a stator of the interface device in order to inject the fluid into the venous tube. The interface device includes a third port, the first port and the third port being carried by a movable assembly that is movable relative to the stator, the interface device being arranged to pass from any one of its configurations to another one of its configurations by the movable assembly moving relative to the stator.
Macromolecular compositions comprising indene-derivatives, preparation thereof, and use thereof
The present invention relates to a method for preparing a macromolecular composition comprising indene-derivatives. The invention also relates to the macromolecular compositions per se, and to methods of using the macromolecular compositions. The macromolecular compositions are useful for undergoing subsequent reactions with small molecules.
VASCULAR ACCESS CHANNEL AND METHODS
An embodiment includes a vascular port comprising: first and second portions that are not monolithic with each other; wherein: (a)(i) the first portion includes a first arcuate surface to contour to a first portion of a vessel and the second portion includes a second arcuate surface to contour to a second portion of the vessel; (a)(ii) the first and second portions couple to one another around the vessel when implanted to form a central chamber that houses the vessel; (a)(iii) the first portion includes a port that includes a funnel with a funnel surface that narrows as the funnel surface approaches the central chamber; (a)(iv) the central chamber includes a central longitudinal axis and the funnel includes a central vertical axis that is orthogonal to the longitudinal axis; (a)(v) the second portion includes a hardened, non-compliant surface that intersects the vertical axis.
VASCULAR ACCESS CHANNEL AND METHODS
An embodiment includes a vascular port comprising: first and second portions that are not monolithic with each other; wherein: (a)(i) the first portion includes a first arcuate surface to contour to a first portion of a vessel and the second portion includes a second arcuate surface to contour to a second portion of the vessel; (a)(ii) the first and second portions couple to one another around the vessel when implanted to form a central chamber that houses the vessel; (a)(iii) the first portion includes a port that includes a funnel with a funnel surface that narrows as the funnel surface approaches the central chamber; (a)(iv) the central chamber includes a central longitudinal axis and the funnel includes a central vertical axis that is orthogonal to the longitudinal axis; (a)(v) the second portion includes a hardened, non-compliant surface that intersects the vertical axis.