IP Library Granted Patent US 10,172,470
Granted Patent B1
US 10,172,470 · App. 16/114,927 · Granted Jan 8, 2019

Multi-layer support system

Inventors: John Vrzalik (San Antonio, TX); Ceasar Lina (Universal City, TX); Glenn C. Stroh (Marion, TX)
Assignee: Huntleigh Technology Limited
A47C21/044A47C21/042A61G7/05792
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,172,470
App. No.
16/114,927
Granted
Jan 8, 2019
Kind
B1
Abstract

In various embodiments, a support system includes a multi-layer support system with a number of layers. Systems and methods of removing moisture vapor from an environment surrounding patient are disclosed that accomplish such removal.

Claims (32)

1. A support system comprising:

a first layer comprising a vapor-permeable material;

a second layer comprising a vapor-impermeable and liquid-impermeable material;

a plurality of protrusions disposed on the second layer and extending towards the first layer, wherein the protrusions comprise a plurality of air-prefilled, substantially air-tight, encapsulated cells, wherein the first layer is in partial contact with the protrusions such that the protrusions form a plurality of uninterrupted longitudinal channels between the first layer and the second layer; and

an air mover,

wherein;

the first layer is in partial contact with the second layer such that a plurality of channels are formed between the first layer and the second layer; and

the air mover is configured to pull air through the plurality of channels formed between the first layer and the second layer and toward the air mover.

2. The support system of claim 1 , where the second layer further comprises a cellular cushioning material.

3. The support system of claim 1 , wherein the encapsulated cells have a substantially circular cross-section.

4. The support system of claim 1 , where the encapsulated cells are substantially regularly-spaced.

5. The support system of claim 1 , where the first layer further comprises polytetrafluoroethylene.

6. The support system of claim 1 , where the first layer further comprises polyurethane.

7. The support system of claim 1 , where the second layer further comprises polyethylene.

8. The support system of claim 1 , where the thickness of the second layer is 1 inch or less.

9. The support system of claim 1 , where the air mover is selected from the group consisting of a fan, a pump, and a blower.

10. The support system of claim 1 wherein the support system is configured so that during use:

moisture vapor will transfer through the first layer into the plurality of channels;

the air mover will transfer moisture vapor from a first portion of the plurality of channels to a second portion of the plurality of channels proximal to the air mover; and

the air mover will transfer the moisture vapor from the second portion of the plurality of channels and into the environment outside the support system.

11. A support system comprising:

a first layer comprising a vapor-permeable material;

a second layer comprising a cellular cushioning material, the cellular cushioning material being vapor-impermeable and liquid-impermeable and having thermoplastic properties;

wherein the first layer is in partial contact with the second layer such that a plurality of uninterrupted, isolated longitudinal channels are formed between the first layer and the second layer.

12. The support system of claim 11 , further comprising an air mover.

13. A method of removing moisture vapor from an interface between a support system and patient, the method comprising the steps of:

providing a support system comprising:

a first layer comprising a vapor-permeable material;

a second layer comprising a vapor-impermeable and liquid-impermeable material, where the second layer is in partial contact with the first layer such that a plurality of uninterrupted, isolated longitudinal channels are formed between the first layer and the second layer; and

an air mover;

transferring moisture vapor from the patient, through the first layer, and into the plurality of channels between the first layer and the second layer located underneath the patient; and

transferring the moisture from the plurality of channels through the first layer and into the environment outside the support system.

Continuity (3)
Continuation 15403104 · Jan 10, 2017
Continuation 13116475 · May 26, 2011
Provisional Application 61349125 · May 27, 2010
Cited By (13)
US 1,122,450 US 1,136,204 US 12,220,366 US 12,226,356 US 12,295,897 US 12,329,701 US 12,377,006 US 12,390,383 US 12,403,057 US 12,409,086 US 12,458,551 US 12,508,182 US 12,521,291