A61M1/884

Tangential flow filter system for the filtration of materials from biologic fluids

Systems and methods for filtering materials from biologic fluids are discussed. Embodiments may be used to filter cerebrospinal fluid (CSF) from a human or animal subject. In an example, CSF is separated into a permeate and retentate using a tangential flow filter. The retentate is filtered again and then returned to the subject with the permeate. During operation of the system, various parameters may be modified, such as flow rate and waste rate.

TANGENTIAL FLOW FILTER SYSTEM FOR THE FILTRATION OF MATERIALS FROM BIOLOGIC FLUIDS

Systems and methods for filtering materials from biologic fluids are discussed. Embodiments may be used to filter cerebrospinal fluid (CSF) from a human or animal subject. In an example, CSF is separated into a permeate and retentate using a tangential flow filter. The retentate is filtered again and then returned to the subject with the permeate. During operation of the system, various parameters may be modified, such as flow rate and waste rate.

TANGENTIAL FLOW FILTER SYSTEM FOR THE FILTRATION OF MATERIALS FROM BIOLOGIC FLUIDS

Systems and methods for filtering materials from biologic fluids are discussed. Embodiments may be used to filter cerebrospinal fluid (CSF) from a human or animal subject. In an example, CSF is separated into a permeate and retentate using a tangential flow filter. The retentate is filtered again and then returned to the subject with the permeate. During operation of the system, various parameters may be modified, such as flow rate and waste rate.

VACUUM ASSISTED WOUND CLOSURE ASSEMBLY AND METHODS OF IRRADIATING A WOUND USING THE SAME

A method of irradiating a wound that includes positioning a wound insertion foam within a wound cavity of a wound and covering the wound insertion foam using a wound sealing layer. The method further includes pumping fluid from the wound cavity using a drain tube sealed within the wound cavity and coupled to a vacuum source, and irradiating the wound using a light diffusing optical fiber that is optically coupled to a therapeutic light source and includes light scattering structures distributed along the light diffusing optical fiber. A portion of the light diffusing optical fiber is positioned within a wound tissue region of the wound, the wound cavity, or both, such that light emitted by the therapeutic light source enters the light diffusing optical fiber, scatters outward from the light diffusing optical fiber, and irradiates the wound tissue region, a wound cavity surface of the wound, or both.

AUTOMATIC URINE TREATMENT SYSTEM
20220193312 · 2022-06-23 ·

An automatic urine treatment system according to an embodiment of the present invention includes a receiver for receiving wearer's excrement; a main body including a urine tank for receiving and storing urine from the receiver, and a vacuum pump for sucking air into the urine tank and transferring a negative pressure to the receiver; and a first connecting hose connecting the receiver and the urine tank. A strip accommodation unit for accommodating a strip for analyzing components of the stored urine through color change is formed inside the urine tank, and on the outer surface of the urine tank, urine analysis is performed using a first optical sensor unit for sensing color change of the strip, and a second optical sensor unit for sensing at least one among turbidity and color change of the stored urine. There is an advantage of being able to confirm the health condition of disabled or elderly people in real-time through the urine information analyzed in this way.

PERITONEAL DIAYLSIS SYSTEM AND A CONTROL SYSTEM THEREFOR

A water purification unit (30) fluidly connectable to a peritoneal dialysis preparator (50/60) and a cycler. The purification unit is connectable to a water source (20) and has a pump for flow of fluid from the unit to a purified water reservoir (40), the reservoir being fluidly connectable to the preparator which has a number of solute containers for dissolution of the solutes; each container being fluidly connectable to a chamber for receiving a solution of the solutes for preparation of a peritoneal dialysis fluid and the chamber being fluidly connectable to the cycler for the delivery and drainage of the peritoneal dialysis fluid to and from a patient. Purified water delivery to the reservoir is controlled by a first pressure sensor (72), and a second pressure sensor (74) between the reservoir and preparator provides a pressure differential between the first and second sensors to control a flow generator (76).

FLUID COLLECTION

An apparatus and method for collecting fluid are disclosed. The apparatus includes a body portion comprising a fluid inlet and an outlet, an expandable container secured to the body portion, at least one wicking element extending from within the body portion into the container, and at least one super absorber element arranged inside the container.

Distributed negative pressure wound therapy system incorporating an absorbent dressing and piezo-electric pump
11826234 · 2023-11-28 · ·

A negative pressure wound therapy system includes a wound dressing, at least one pump fluidly coupled to the fluid interface, a pressure sensor fluidly coupled to the wound dressing, a control housing, and an electrical coupler. The wound dressing includes a sealing layer, an absorbent layer adjacent to the sealing layer, and a fluid interface attached to at least one of the sealing layer or the absorbent layer. The at least one pump is configured to apply negative pressure to the fluid interface to draw fluid from the wound dressing via the fluid interface. The pressure sensor is configured to detect a fluid pressure of the wound dressing. The control housing is remote from the wound dressing. The electrical coupler is configured to removably connect the control housing to the at least one pump.

Evaporative body-fluid containers and methods

Body-fluid containers, methods, and systems are presented that include a container that has a container housing formed, at least in part, by a liquid-impermeable, vapor-permeable material. The liquid-impermeable, vapor-permeable material allows water to evaporate and be transmitted outside of the container. The evaporation allows more fluid to be processed by the container than the container could otherwise hold. Other systems, methods, and apparatuses are presented.

BODILY WASTE COLLECTION USING PERIODIC PRESSURE
20220104981 · 2022-04-07 ·

Examples relate to devices, systems, and methods for collecting bodily waste as well as separating the liquids from the solids in the bodily waste. The devices, systems, and methods disclosed herein utilize a bodily waste separation device having an at least semi-rigid tray, a lid fluidly sealed to the at least semi-rigid tray, an output manifold fluidly sealed to the at least semi-rigid tray, an intake configured to fluidly connect the interior region of the at least semi-rigid tray to a source outside of the separation device, and a filter disposed between the at least semi-rigid tray and the output manifold.