US2020405936A1PendingUtilityA1
Hydrophobic filters for air management in dialysis machines
Assignee: FRESENIUS MEDICAL CARE HOLDINGS INCPriority: Sep 11, 2017Filed: Sep 10, 2020Published: Dec 31, 2020
Est. expirySep 11, 2037(~11.1 yrs left)· nominal 20-yr term from priority
A61M 1/1563A61M 1/153A61M 1/159A61M 1/282A61M 2205/127A61M 2205/125A61M 1/287A61M 2205/126A61M 2205/36A61M 1/166A61M 1/28A61M 2205/3368A61M 1/288A61M 1/365A61M 1/1672A61M 1/1603A61M 1/1658
60
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Claims
Abstract
Dialysis systems and methods for operating dialysis machines (e.g., peritoneal dialysis machines) for conducting dialysis treatments, may include a dialysis machine for transferring dialysate to a patient from a dialysate bag, and a warmer pouch for flowing the dialysate through to heat to a predetermined temperature before flowing into the patient. The dialysate may flow from the dialysate bag through the warmer pouch for pumping into the patient via tubing. A filter may be coupled to the warmer pouch, and the filter may be configured to filter out air content from the dialysate.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A dialysis system for conducting a dialysis treatment, comprising:
a dialysis machine for transferring dialysate to a patient from a dialysate bag; a warmer pouch arranged and configured to receive dialysate from the dialysate bag at a first temperature and arranged and configured to transfer dialysate to the patient at a predetermined temperature before flowing into the patient, the predetermined temperature being greater than the first temperature, the dialysate flowing from the dialysate bag through the warmer pouch for pumping into the patient via tubing; and a filter coupled to the warmer pouch, the filter configured to filter out air content from the dialysate; wherein the filter includes a container having an inlet for the dialysate to flow into the container and an outlet for the dialysate to flow out of the container after being filtered, the inlet arranged and configured to extend into the container by a length L 1 , the outlet arranged and configured to extend into the container by a length L 2 , length L 1 being longer than length L 2 so that the inlet extends farther into the container than the outlet.
2 . The dialysis system according to claim 1 , wherein the filter is a hydrophobic filter.
3 . The dialysis system according to claim 1 , wherein the outlet of the filter is coupled to an inlet of the warmer pouch, such that the air content is removable before flowing through the warmer pouch.
4 . The dialysis system according to claim 3 , further comprising a second filter coupled to an outlet of the warmer pouch.
5 . The dialysis system according to claim 1 , wherein the filter includes a hydrophobic membrane.
6 . The dialysis system according to claim 5 , wherein a negative pressure chamber is disposed exterior to the hydrophobic membrane, such that the air content is flowable to the negative pressure chamber from an area of positive pressure in the filter.
7 . The dialysis system according to claim 1 , wherein the filter is coupled to the warmer pouch by the tubing connecting to the dialysate bag for transferring the dialysate to the patient.
8 . The dialysis system according to claim 1 , wherein the filter includes a membrane for filtering out the air content.
9 . The dialysis system according to claim 8 , wherein the inlet and the outlet are disposed through a lower portion of the container, and the membrane is disposed on an upper portion of the container.
10 . A method for conducting a dialysis treatment, comprising:
transferring dialysate to a patient from a dialysate bag via tubing; flowing the dialysate through a warmer pouch to heat the dialysate from a first temperature to a predetermined temperature before flowing into the patient, the predetermined temperature being higher than the first temperature; pumping the dialysate flowing from the dialysate bag through the warmer pouch into the patient via the tubing; and filtering out air content from the dialysate by a filter coupled to the warmer pouch, wherein the filter includes a container having an inlet for the dialysate to flow into the container and an outlet for the dialysate to flow out of the container after being filtered, the inlet arranged and configured to extend into the container by a length L 1 , the outlet arranged and configured to extend into the container by a length L 2 , length L 1 being longer than length L 2 so that the inlet extends farther into the container than the outlet.
11 . The method according to claim 10 , wherein the filter is a hydrophobic filter.
12 . The method according to claim 10 , wherein the outlet of the filter is coupled to an inlet of the warmer pouch, such that the air content is removable before flowing through the warmer pouch.
13 . The method according to claim 12 , further comprising filtering the dialysate at an outlet of the warmer pouch by a second filter.
14 . The method according to claim 10 , wherein the filter includes a hydrophobic membrane.
15 . The method according to claim 14 , wherein a negative pressure chamber is disposed exterior to the hydrophobic membrane, such that the air content is flowable to the negative pressure chamber from an area of positive pressure in the filter.
16 . The method according to claim 10 , wherein the filter is coupled to the warmer pouch by the tubing connecting to the dialysate bag for transferring the dialysate to the patient.
17 . The method according to claim 10 , wherein the filter includes a membrane for filtering out the air content.
18 . The method according to claim 17 , wherein the inlet and the outlet are disposed through a lower portion of the container, and the membrane is disposed on an upper portion of the container.Join the waitlist — get patent alerts
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