Sorbent manifold for a dialysis system

US11033667B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11033667-B2
Application numberUS-201816155916-A
CountryUS
Kind codeB2
Filing dateOct 10, 2018
Priority dateFeb 2, 2018
Publication dateJun 15, 2021
Grant dateJun 15, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The present invention relates to a sorbent manifold and related systems and methods having a plurality of passageways fluidly connectable to one or more valves and one or more sensors and components for use in a sorbent dialysis system. The sorbent manifold can control the one or more valves to direct fluid to either pass through a sorbent cartridge or bypass the sorbent cartridge based on measurements obtained from sensors.

First claim

Opening claim text (preview).

We claim: 1. A sorbent manifold for a sorbent dialysis system, comprising: a first inlet connector, a first outlet connector, a second inlet connector, and a second outlet connector; a three-way sorbent bypass valve including an inlet port, a first outlet port, and a second outlet port; a two-way sorbent isolation valve including an inlet port and an outlet port; a first passage connecting the first inlet connector to the inlet port of the three-way sorbent bypass valve; at least one sensor disposed in the first passage; a second passage connecting the first outlet port of the three-way sorbent bypass valve to the first outlet connector; a fifth passage connecting the second outlet port of the three-way sorbent bypass valve to the outlet port of the two-way sorbent isolation valve; a third passage connecting the fifth passage to the second outlet connector; and a fourth passage connecting the inlet port of the two-way sorbent isolation valve to the second inlet passage. 2. The sorbent manifold of claim 1 , wherein the at least one sensor is selected from a group consisting of an ammonia sensor, a conductivity sensor, a temperature sensor, and a pressure sensor. 3. The sorbent manifold of claim 1 , wherein the first outlet connector is fluidly connectable to a drain valve prior to reaching a sorbent cartridge inlet, the drain valve selectively directing fluid to the sorbent cartridge inlet or to a drain line. 4. The sorbent manifold of claim 3 , wherein the drain valve is positioned in a separate drain manifold. 5. The sorbent manifold of claim 1 , wherein the first outlet connector and the second inlet connector are fluidly connectable to each other through a sorbent cartridge inlet and outlet. 6. The sorbent manifold of claim 1 , wherein the three-way sorbent bypass valve and the two-way sorbent isolation valve are configured to selectively direct fluid from the first inlet connector to the first outlet connector and from the second inlet connector to the second outlet connector in a treatment mode. 7. The sorbent manifold of claim 1 , wherein the three-way sorbent bypass valve and the two-way sorbent isolation valve are configured to selectively direct the fluid from the first inlet connector to the second outlet connector in a sorbent bypass mode. 8. A sorbent manifold system, comprising: a first inlet connector, a first outlet connector, a second inlet connector, and a second outlet connector; a three-way sorbent bypass valve including an inlet port, a first outlet port, and a second outlet port; a two-way sorbent isolation valve including an inlet port and an outlet port; a first passage connecting the first inlet connector to the inlet port of the three-way sorbent bypass valve; at least one sensor disposed in the first passage; a second passage connecting the first outlet port of the three-way sorbent bypass valve to the first outlet connector; a fifth passage connecting the second outlet port of the three-way sorbent bypass valve to the outlet port of the two-way sorbent isolation valve; a third passage connecting the fifth passage to the second outlet connector; and a fourth passage connecting the inlet port of the two-way sorbent isolation valve to the second inlet passage; a controller controlling the three-way sorbent bypass valve and the two-way sorbent isolation valve to direct fluid to either pass through a sorbent cartridge in the sorbent dialysis system or bypass the sorbent cartridge based on measurements of the at least one sensor; and the second inlet connector fluidly connectable to an outlet of the sorbent cartridge, wherein the controller controls the fluid to enter the second inlet connector from the outlet of the sorbent cartridge. 9. The sorbent manifold system of claim 8 , the controller in communication with the three-way sorbent bypass valve and the two-way sorbent isolation valve; the controller controlling the three-way sorbent bypass valve and the two-way sorbent isolation valve to direct the fluid from one of the first inlet connector and the second inlet connector to one of the first outlet connector and the second outlet connector. 10. The sorbent manifold system of claim 9 , wherein the controller is programmed to selectively direct the fluid from the first inlet connector to either the first outlet connector or second outlet connector based on data from the at least one sensor. 11. The sorbent manifold system of claim 10 , wherein the at least one sensor includes a pressure sensor; and wherein the controller selectively directs fluid from the first inlet connector to the second outlet connector if a pressure is above a predetermined range. 12. The sorbent manifold of claim 11 , wherein the predetermined range is a pressure equal to or greater than about 2,500 mmHg. 13. The sorbent manifold system of claim 9 , the controller in communication with an ammonia sensor downstream of the sorbent cartridge; and wherein the controller selectively directs fluid from the first inlet connector to the second outlet connector if ammonia is detected by the ammonia sensor. 14. The sorbent manifold system of claim 9 , the controller controlling the three-way sorbent bypass valve and the two-way sorbent isolation valve to direct the fluid from the first inlet connector to the first outlet connector and from the second inlet connector to the second outlet connector.

Assignees

Inventors

Classifications

  • and filter bypass · CPC title

  • A61M1/1696Primary

    with dialysate regeneration · CPC title

  • Separating processes involving the treatment of liquids with solid sorbents; Apparatus therefor · CPC title

  • Priming, rinsing before or after use · CPC title

  • Bypass or safety valves · CPC title

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What does patent US11033667B2 cover?
The present invention relates to a sorbent manifold and related systems and methods having a plurality of passageways fluidly connectable to one or more valves and one or more sensors and components for use in a sorbent dialysis system. The sorbent manifold can control the one or more valves to direct fluid to either pass through a sorbent cartridge or bypass the sorbent cartridge based on meas…
Who is the assignee on this patent?
Medtronic Inc
What technology area does this patent fall under?
Primary CPC classification A61M1/1696. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Jun 15 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).