A person-support surface comprises a non powered mattress and a coverlet positionable on the non powered mattress. The coverlet includes an entry positioned at a first end of the coverlet, an exit positioned at a second end of the coverlet opposite the entry, an upper air impermeable layer, and a lower air impermeable layer coupled to the upper air impermeable layer to form an air flow path along the coverlet between the entry and the exit. The upper air impermeable layer is a vapor permeable and the lower air impermeable layer is a vapor permeable.
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1. A fluid supply system, comprising:
a gas blower; and
a conduit coupled to the gas blower and configured to communicate gas therethrough, the conduit including a connector configured to be repeatedly coupled to a medical device, the gas blower configured to be activated when the conduit is coupled to the medical device and deactivated when the conduit is decoupled from the medical device, wherein the connector comprises a plurality of conductive elements that, when the connector is coupled to the medical device, are electrically connected to activate the gas blower.
2. The fluid supply system of
3. The fluid supply system of
4. The fluid supply system of
5. The fluid supply system of
6. The fluid supply system of
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This application is a continuation of U.S. patent application Ser. No. 13/099,543, now U.S. Pat. No. 8,856,993, which is a continuation-in-part U.S. patent application Ser. No. 12/937,306 filed on Oct. 11, 2010, which is a US National Application of International Application Serial No. PCT/US2009040661 filed under 37 C.F.R. §371(b) on Apr. 15, 2009, which claims priority to U.S. Provisional Application Ser. No. 61/045,111 filed on Apr. 15, 2008, the contents of which are hereby incorporated by reference.
This disclosure relates generally to person support surfaces. More particularly, but not exclusively, one illustrative embodiment relates to person-support surfaces including a non-powered mattress with temperature and moisture regulating topper coupled thereto.
Patients lying on non-powered person support surfaces for extended periods of time can be susceptible to the development of pressure ulcers. While various non-powered person-support surfaces have been developed, there is still room for improvement. Thus, a need persists for further contributions in this area of technology.
One illustrative embodiment of the present disclosure includes a person support surface with a non-powered mattress and a coverlet coupled to the non-powered mattress having a vapor permeable and air impermeable person contacting surface and mattress contacting surface configured to exhaust heat and moisture communicated through the person contacting surface out an outlet in the coverlet. Another illustrative embodiment includes a fluid supply assembly with conduit and a fluid supply configured to be activated/deactivated when the conduit is coupled to a person-support surface.
Additional features alone or in combination with any other feature(s), including those listed above and those listed in the claims and those described in detail below, can comprise patentable subject matter. Others will become apparent to those skilled in the art upon consideration of the following detailed description of illustrative embodiments exemplifying the best mode of carrying out the invention as presently perceived.
Referring now to the illustrative examples in the drawings, wherein like numerals represent the same or similar elements throughout:
While the present disclosure can take many different forms, for the purpose of promoting an understanding of the principles of the disclosure, reference will now be made to the embodiments illustrated in the drawings, and specific language will be used to describe the same. No limitation of the scope of the disclosure is thereby intended. Various alterations, further modifications of the described embodiments, and any further applications of the principles of the disclosure, as described herein, are contemplated.
One illustrative embodiment of the present disclosure includes a person support surface with a non-powered mattress and a coverlet coupled to the non-powered mattress having a vapor permeable and air impermeable person contacting surface and mattress contacting surface configured to exhaust heat and moisture communicated through the person contacting surface out an outlet in the coverlet. Another illustrative embodiment includes a fluid supply assembly with conduit and a fluid supply configured to be activated/deactivated when the conduit is coupled to a person-support surface.
A person-support system 10 according to one illustrative embodiment of the current disclosure is shown in
The person-support apparatus 12 includes a lower frame 18, supports 20 or lift mechanisms 20 coupled to the lower frame 18, and an upper frame 22 movably supported above the lower frame 18 by the supports 20 as shown in
The person-support surface 14 includes a non-powered mattress 24 and a coverlet 26 positioned on the mattress 24 as shown in
The mattress core 28 can be composed of a single type of material or a combination of materials and/or devices. In one illustrative embodiment, the mattress core 28 is composed of single density foam as shown in
The cover 30 can enclose the mattress core 28 and includes a fire barrier 32, a bottom ticking 34 or durable layer 34, and a top ticking 36 as shown in
The top ticking 36 includes a person-support apparatus engaging surface 38 with a person-support apparatus coupler (not shown), and a coverlet contacting surface 40 with a coverlet coupler 42 as shown in
The coverlet 26 is configured to regulate the amount of heat and moisture present on the surface of the coverlet 26 by flowing a fluid through the coverlet 26. The coverlet 26 includes a top layer 44, a bottom layer 46, an inlet 48, an outlet 50, and a 3-dimensionally engineered spacer 52 as shown in
The 3-dimensionally engineered spacer 52 is positioned in the inner chamber 54 and is configured to be air and moisture permeable as shown in
The inlet 48 and the outlet 50 are generally located on opposite ends of the coverlet 26 and allow a fluid, such as, air, to be communicated into the inner chamber 54 of the coverlet 26, and to be exhausted from the coverlet 26, respectively, as shown in
The fluid supply assembly 16 is configured to cooperate with the coverlet 26 to regulate the amount of heat and moisture on at least a portion of the top layer 44 in contact, directly or indirectly, with the skin of a person supported on the person-support surface 14. Regulation of the heat and moisture levels can help prevent and/or heal undesirable skin conditions, such as, pressure ulcers. In one illustrative embodiment, the fluid supply 16 and coverlet 26 can cooperate to maintain at least one of a surface temperature, a relative surface humidity, and a heat withdrawal capacity of at least a portion of the surface which is in contact, directly or indirectly, with the person within a predefined range, for example, between about 90° F. and about 95.5° F.; between about 55% relative humidity and about 95% relative humidity; and/or between about 60 W/m2 and about 125 W/m2, as disclosed in, U.S. patent application Ser. No. 12/937,306, which is incorporated herein by reference.
The fluid supply assembly 16 includes a fluid supply 58 enclosed within a housing 60, a controller 62, and a conduit 64 as shown in
The controller 62 is configured to control the operation of the fluid supply 58. In one illustrative embodiment, the controller 62 activates and/or deactivates the fluid supply 58 when the conduit 64 is coupled/uncoupled to/from the coverlet 26. The controller 62 can also cause the fluid supply 58 to supply fluid at a predetermined rate and/or adjust the temperature and humidity of the fluid supplied by the fluid supply 58. In other illustrative embodiments, the controller 62 can activate/deactivate the fluid supply 58 when the conduit 64 is coupled/uncoupled to/from a therapy device, powered mattress, or other pneumatic device or instrument.
The conduit 64 is configured to facilitate communication of fluid between the fluid supply 58 and the coverlet 26 as shown in
In operation, the conduit connector 66 is not connected from the inlet connector 56. When a user desires for the temperature and moisture on the coverlet 26 to be regulated, the user connects the conduit connector 66 to the inlet connector 56. The connection sensor 70 senses when the conduit connector 66 and the inlet connector 56 are connected and the controller 62 activates the fluid supply 58. The fluid supply 58 communicates fluid through the conduit 64 to the inlet 48 of the coverlet 26. The fluid flows from the inlet 48 through the inner chamber 54 of the coverlet 26 and is exhausted out the outlet 50. As the fluid passes through the coverlet 26, heat and moisture communicated through the upper layer 44 and/or bottom layer 56 is absorbed by the fluid flow and exhausted with the fluid out the outlet 50.
Many other embodiments of the present disclosure are also envisioned. For example, a person-support surface comprises a non powered mattress and a coverlet positionable on the non powered mattress. The coverlet includes an entry positioned at a first end of the coverlet, an exit positioned at a second end of the coverlet, an upper air impermeable layer, and a lower air impermeable layer coupled to the upper air impermeable layer to form an air flow path along the coverlet between the entry and the exit. The upper air impermeable layer is a vapor permeable and water resistant fabric and the lower air impermeable layer is a vapor permeable and water resistant fabric.
In another example, a person-support surface comprises a non powered mattress, a topper, and an air supply. The non powered mattress includes a mattress core substantially enclosed within an air and vapor impermeable mattress cover. The topper is removably coupled to the non-powered mattress and includes an occupant interfacing surface and a non-powered mattress interfacing surface coupled together to define a chamber therebetween. The occupant interfacing surface and the non-powered mattress interfacing surface are vapor permeable and air impermeable. The topper has a first opening into the chamber along a first side and a second opening into the chamber along a second side. The air supply is in fluid communication with the topper through a conduit. The air enters the chamber through the first opening in the topper, flows through the chamber, and exits the chamber through the second opening. The air flow though the topper is configured to exhaust heat and moisture communicated into the chamber through the occupant interfacing surface out through the second opening.
In another example, a fluid supply system comprises a gas blower and a conduit coupled to the gas blower and configured to communicate gas therethrough. The conduit includes a connector configured to be removably coupled to a medical device. The gas blower is configured to be activated when the conduit is coupled to the medical device.
Any theory, mechanism of operation, proof, or finding stated herein is meant to further enhance understanding of principles of the present disclosure and is not intended to make the present disclosure in any way dependent upon such theory, mechanism of operation, illustrative embodiment, proof, or finding. It should be understood that while the use of the word preferable, preferably or preferred in the description above indicates that the feature so described can be more desirable, it nonetheless can not be necessary and embodiments lacking the same can be contemplated as within the scope of the disclosure, that scope being defined by the claims that follow.
In reading the claims it is intended that when words such as “a,” “an,” “at least one,” “at least a portion” are used there is no intention to limit the claim to only one item unless specifically stated to the contrary in the claim. When the language “at least a portion” and/or “a portion” is used the item can include a portion and/or the entire item unless specifically stated to the contrary.
It should be understood that only selected embodiments have been shown and described and that all possible alternatives, modifications, aspects, combinations, principles, variations, and equivalents that come within the spirit of the disclosure as defined herein or by any of the following claims are desired to be protected. While embodiments of the disclosure have been illustrated and described in detail in the drawings and foregoing description, the same are to be considered as illustrative and not intended to be exhaustive or to limit the disclosure to the precise forms disclosed. Additional alternatives, modifications and variations can be apparent to those skilled in the art. Also, while multiple inventive aspects and principles can have been presented, they need not be utilized in combination, and various combinations of inventive aspects and principles are possible in light of the various embodiments provided above.
Kerr, Andrew, Lachenbruch, Charles A., O'Keefe, Christopher R., Richards, Sandy M., Alsaeede, Sam M., Flint, Stephen C.
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