IP Library › Granted Patent US 10,456,289
Granted Patent B2
US 10,456,289 · App. 16/272,271 · Granted Oct 29, 2019

Method and device for the management of body fluids leaking from a surgical drain tube incision

Inventors: Dmitri Alden (New York, NY); Paul Mulhauser (New York, NY)
Assignee: ALDEN ADVANCED TECHNOLOGIES, INC.
A61F5/443A61F5/4405A61M25/02A61M27/00A61M2025/0246
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Quick Facts
Patent No.
US 10,456,289
App. No.
16/272,271
Granted
Oct 29, 2019
Kind
B2
Abstract

A fluid collection system is provided. The fluid collection system broadly includes a baseplate having an adhesive backing configured to couple the baseplate to a patient's skin and defining a wafer having an approximately centrally positioned opening that receives a first end of a surgical drain tube, and a wafer connector disposed around said opening. An appliance includes a leaked fluid remover that includes a fluid remover connector operable to detachably couple with the wafer connector. The leaked fluid remover includes an outer septum and an inner septum for receiving the surgical drain tube. The outer septum is capable of moving about radially, axially and/or pivotally to alleviate side load tension on the septum caused by displacement of the surgical drain tube.

Claims (20)

1. A fluid collection system comprising:

a baseplate having an adhesive backing configured to couple the baseplate to a patient's skin and defining a wafer having an approximately centrally positioned opening, and a ring shaped, radially-extending wafer connector coupled to said wafer and disposed around said opening configured to receive a first end of a surgical drain tube; and

an appliance including a leaked fluid remover, said leaked fluid remover having a fluid remover connector operable to detachably couple with the wafer connector, the leaked fluid remover connector including a first housing element and a second housing element received by said first housing element and a spacer having an upper surface and a lower surface, the first housing element including an outer septum having a lower surface positioned on or coupled to the upper surface of the spacer, and the second housing element including an inner septum positioned on or coupled to the lower surface of the spacer; and

a leaked fluid collector having an outer film and an inner film, the outer film coupled to an upper portion of the first housing component and the inner film coupled to a lower portion of the first housing component thereby coupling an interior of the leaked fluid collector to the fluid remover connector, wherein coupling of the fluid remover connector to the wafer connector forms a fluid flow chamber therebetween through which leaked fluid from the incision flows through the fluid flow chamber and into the leaked fluid collector.

2. The fluid collection system of claim 1 wherein said outer septum includes an orifice for receiving a surgical drain tube from a front side of the septum or a backside of the septum, said septum radially, axially and/or pivotally moveable within the septum space volume to alleviate side load tension on the septum as the surgical drain tube is displaced.

3. The fluid collection system of claim 1 wherein said leaked fluid remover connector is detachably coupled to the baseplate in a snap-fit arrangement.

4. The fluid collection system of claim 1 wherein said first housing element limits radial, axial and/or pivotal movements of the outer septum.

5. The fluid collection system of claim 4 wherein the leaked fluid collector is operably coupled to the leaked fluid collector along a periphery of the leaked fluid remover.

6. The fluid collection system of claim 5 wherein a fluid flow path of leaked fluids extends from a surgical incision through the wafer opening through the leaked fluid remover to a fluid flow chamber in said leaked fluid remover and out to the leaked fluid collector.

7. The fluid collection system of claim 1 wherein said spacer is configured to space apart the inner and outer septums to enable septum lips to splay up and down as a surgical drain tube is inserted from one direction or the other.

8. The fluid collection system of claim 1 wherein said outer septum includes a generally centered opening.

9. The fluid collection system of claim 8 wherein said generally centered opening is punches, molded or cut through the outer septum.

10. The fluid collection system of claim 8 wherein said generally centered opening is circular and compliant and configured to provide a fluid tight seal upon the fluid flow chamber when the fluid collection system is coupled to a surgical drain tube.

11. The fluid collection system of claim 1 wherein said inner septum includes a slit positioned along a central portion of a centerline thereof.

12. The fluid collection system of claim 11 wherein said slit is configured to enable a surgical drain tube to be passed through said inner septum.

13. The fluid collection system of claim 11 wherein said slit is configured to seal against air and liquid flow escaping from the fluid flow chamber in the absence of a surgical drain tube.

14. The fluid collection system of claim 1 wherein said inner septum comprises an elastomeric material of from 3 to 4 mm in thickness.

15. The fluid collection system of claim 11 wherein opposing sides of said slit flex to resist outward pressure.

16. The fluid collection system of claim 15 wherein said outward pressure upon the inner septum creates an interference fit between the opposing sides of said slit.

17. The fluid collection system of claim 1 wherein said outer septum is configured to provide a sealed closure against leaking fluids from the inner septum when a surgical drain tube in inserted therewithin.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2019
From: ALDEN, DMITRI, M.D.
To: ALDEN ADVANCED TECHNOLOGIES, INC.
Reel/Frame 049021/0688 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2019
From: MULHAUSER, PAUL
To: ALDEN, M.D. FACS, DMITRI
Reel/Frame 048674/0551 →
Continuity (2)
Continuation In Part 15901166 · Feb 21, 2018
Related Publication 20190254863A1 · Aug 22, 2019
Cited By (1)
US 12,329,675