Modular temperature controlled sleep systems and methods of use thereof

WO2026207152A1PCT designated stage Publication Date: 2026-10-01SLEEP SOLUTIONS INC
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Patent Information

Application Number
PCT/US2026/020817
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2026-03-10
Filing Date
2026-03-25
Publication Date
2026-10-01

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Abstract

Disclosed herein is a system for temperature regulation. The system can include at least one thermal regulation membrane configured to be heated or cooled and a mattress cover. The mattress cover can be configured to fit over a mattress. The mattress cover can include a bottom layer, a top layer, and at least one coupling mechanism. The bottom layer can include an interior surface and a side wall. The top layer can be configured to fit over the interior surface of the bottom layer. The at least one coupling mechanism can be configured to removably couple the bottom layer to the top layer. The bottom layer and the top layer can form at least one chamber operable to receive the at least one thermal regulation membrane.
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Description

MODULAR TEMPERATURE CONTROLLED SLEEP SYSTEMS AND METHODS OF USE THEREOFCross-References to Related Applications

[0001] This patent application claims priority of U.S. Patent Application No.63 / 777,649, filed on March 25, 2025, this patent application also claims priority of U.S. Patent Application No. 19 / 561,759, filed on March 10, 2026, the entire disclosures of which are hereby incorporated by reference herein for all purposes.Field of Disclosure

[0002] The present disclosure relates to modular temperature controlled sleep systems and methods of use thereof.Background

[0003] Current sleep systems utilize thermal regulation devices to control the temperature of a mattress pad that a user sleeps on. However, current thermal regulation devices are not properly secured to the mattress, such that these devices move while the user is sleeping. Further, current thermal regulation devices that utilize pads can be uncomfortable and / or bulky causing users to discontinue using the pad. Additionally, current thermal regulation devices do not include modular configurations where users can choose how many thermally regulated membranes to use on a bed. Moreover, current thermal regulation devices are difficult to clean.

[0004] Provided herein is a modular temperature controlled sleep system that secures thermal regulation membranes in place within a system, provides a top comfort layer, allows multiple thermal regulation membranes to be used within a single system, and allows for easy cleaning.Summary

[0005] Provided herein is a system for temperature regulation. The system can include at least one thermal regulation membrane configured to be heated or cooled and a mattress cover configured to fit over a mattress. The mattress cover can include a bottom layer, a top layer, and at least one coupling mechanismconfigured to removably couple the bottom layer to the top layer. The bottom layer can include an interior surface and a side wall. The top layer can be configured to fit over the interior surface of the bottom layer. The bottom layer and the top layer can form at least one chamber therebetween. The at least one chamber can be operable to receive the at least one thermal regulation membrane.

[0006] In some aspects, the thermal regulation membrane can be fluidically coupled to a thermal regulation device via one or more conduits. The thermal regulation device can be operable to heat or cool a fluid for delivery to the thermal regulation membrane. In some aspects, the side wall can include at least one slot operable to receive the one or more conduits. In some aspects, the system can further include at least one body sensor operable to sit within the at least one chamber underneath the at least one thermal regulation membrane. In some aspects, the at least one body sensor can include a power cord and a power unit. In some aspects, the at least one slot is operable to receive the power cord.

[0007] In some aspects, the bottom layer can include a pocket operable to receive the power unit. In some aspects, the power unit can be electrically coupled to the thermal regulation device. In some aspects, the at least one coupling mechanism can include at least one zipper. In some aspects, the interior surface of the bottom layer can include one or more attachment mechanisms. In some aspects, the thermal regulation membrane can include one or more corresponding attachment mechanisms. In some aspects, the one or more attachment mechanisms can include four interior surface slots and the one or more corresponding attachment mechanisms can include four thermal regulation membrane slots.

[0008] In some aspects, the system can further include one or more U-buckles. In some aspects, the one or more U-buckles can be operable to removably couple the four interior surface slots to the four thermal regulation membrane slots. In some aspects, the four thermal regulation membrane slots can be located near four comers of the thermal regulation membrane. In some aspects, the thermal regulation membrane can be secured to the interior surface of the bottom layer.

[0009] In some aspects, the at least one coupling mechanism can include a first coupling mechanism and a second coupling mechanism. In some aspects, the atleast one thermal regulation membrane can include a first thermal regulation membrane and a second thermal regulation membrane. In some aspects, the at least one chamber can include a first chamber and a second chamber. The first chamber can be operable to receive the first thermal regulation membrane. The second chamber can be operable to receive second thermal regulation membrane. In some aspects, the first coupling mechanism, a first portion of the bottom layer, and a first portion of the top layer form the first chamber. In some aspects, the second coupling mechanism, a second portion of the bottom layer, and a second portion of the top layer form the second chamber.

[0010] In some aspects, the top layer can include a cushioning material. In some aspects, the top layer is removable from the bottom layer. In some aspects, the top layer is operable to be washed. In some aspects, the side wall of the bottom layer can include an elastic material configured to secure the mattress cover to the mattress.Brief Description of Figures

[0011] The description will be more fully understood with reference to the following figures, which are presented as various embodiments of the disclosure and should not be construed as a complete recitation of the scope of the disclosure. It is noted that, for purposes of illustrative clarity, certain elements in various drawings may not be drawn to scale. Understanding that these drawings depict only exemplary embodiments of the disclosure and are not therefore to be considered limiting of its scope, the principles herein are described and explained with additional specificity and detail through the use of the accompanying drawings in which:

[0012] FIG. 1 illustrates a sleep system in one example.

[0013] FIG. 2 illustrates a sleep system in one example.

[0014] FIG. 3 illustrates a sleep system in one example.

[0015] FIG. 4 illustrates a sleep system in one example.

[0016] FIG. 5 illustrates a sleep system in one example.

[0017] FIG. 6 illustrates a sleep system in one example.

[0018] FIG. 7 illustrates a sleep system in one example.

[0019] FIG. 8 illustrates a sleep system in one example.

[0020] FIG. 9 illustrates an S-hook in one example.

[0021] Reference characters indicate corresponding elements among the views of the drawings. The headings used in the figures do not limit the scope of the claims.Detailed Description

[0022] Various embodiments of the disclosure are discussed in detail below. While specific implementations are discussed, it should be understood that this is done for illustration purposes only. A person skilled in the relevant art will recognize that other components and configurations may be used without parting from the spirit and scope of the disclosure. Thus, the following description and drawings are illustrative and are not to be construed as limiting. Numerous specific details are described to provide a thorough understanding of the disclosure. However, in certain instances, well-known or conventional details are not described in order to avoid obscuring the description. References to one or an embodiment in the present disclosure can include references to the same embodiment or any embodiment; and such references mean at least one of the embodiments.

[0023] Reference to “one embodiment”, “an embodiment”, or “an aspect” means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment of the disclosure. The appearances of the phrase “in one embodiment” or “in one aspect” in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. Moreover, various features are described which may be exhibited by some embodiments and not by others.

[0024] The terms used in this specification generally have their ordinary meanings in the art, within the context of the disclosure, and in the specific context where each term is used. Alternative language and synonyms may be used for any one or more of the terms discussed herein, and no special significance should be placed upon whether or not a term is elaborated or discussed herein. In some cases, synonyms for certain terms are provided. A recital of one or more synonyms does not exclude the use of other synonyms. The use of examples anywhere in this specification including examples of any terms discussed herein is illustrative only and is not intended to further limit thescope and meaning of the disclosure or of any example term. Likewise, the disclosure is not limited to various embodiments given in this specification.

[0025] As used herein, “about” refers to numeric values, including whole numbers, fractions, percentages, etc., whether or not explicitly indicated. The term “about” generally refers to a range of numerical values, for instance, ± 0.5-1 %, ± 1-5% or ± 5-10% of the recited value, that one would consider equivalent to the recited value, for example, having the same function or result.

[0026] Additional features and advantages of the disclosure will be set forth in the description which follows, and in part will be obvious from the description, or can be learned by practice of the herein disclosed principles. The features and advantages of the disclosure can be realized and obtained by means of the instruments and combinations particularly pointed out in the appended claims. These and other features of the disclosure will become more fully apparent from the following description and appended claims or can be learned by the practice of the principles set forth herein.

[0027] Current sleep systems include temperature regulated pads. However, current sleep systems with temperature regulated pads suffer from various deficiencies. For example, in current sleep systems temperature regulated pads are not securely attached to the mattress, thereby causing the temperature regulated pad to move throughout the night as the user moves. The movement of the mattress pad causes inconsistent temperature regulation, thereby disrupting the sleep of the user. Further, current temperature regulated pads can be bulky and uncomfortable to sleep on. Moreover, current sleep systems can be difficult to clean and require significant disassembly when washing.

[0028] Provided herein is a sleep system. The sleep system can be configured to provide consistent and regulated temperature control to a sleeping area of a user. In some examples, the sleep system can provide consistent and regulated temperature control to two or more sleeping areas associated with two or more users. The sleep system provided herein can allow for easy cleaning without significant disassembly. The sleep system can provide a comfortable sleeping surface through a comfort layer between a thermal regulation membrane and the body of the user.

[0029] FIG. 1 illustrates a sleep system 100. The sleep system can include a mattress cover 101. In some examples, the mattress cover 101 can beconfigured to fit over a mattress. The mattress cover 101 can include a bottom layer 103 (e.g., base layer) and a top layer 108. The bottom layer 103 can include an interior surface 114. In some examples, the interior surface 114 of the bottom layer 103 and the top layer 108 can form at least one chamber therebetween.

[0030] In some examples, the bottom layer 103 can include a side wall 110. The side wall 110 can extend around an entire circumference or perimeter of the mattress. For example, when the mattress is rectangular or square, the side wall 110 can extend around all four sides of the mattress. In some examples, the side wall 110 can be configured to secure the mattress cover 101 to the mattress. For example, the side wall 110 can include one or more attachment mechanisms for securing the mattress cover 101 to the mattress. In some examples, the side wall 110 can include an elastic material spanning the circumference or perimeter of the side wall 110. The elastic material can be configured to secure the mattress cover 101 to the mattress.

[0031] As illustrated in FIGS. 1-2, the mattress cover 101 can include at least one coupling mechanism 102(a), 102(b) for removably coupling the top layer 108 to the bottom layer 103. In some examples, the at least one coupling mechanism 102(a), 102(b) can be an L-shaped or U-shaped zipper mechanism (e.g., zipper teeth can be included on an edge of the top layer 108 and an edge of the bottom layer 103). For example, the at least one coupling mechanism 102(a), 102(b) can include a U-shaped zipper mechanism, as illustrated, for example, in FIG. 2. As illustrated in FIG. 2, the first coupling mechanism 102(b) can removably couple a first portion 112(b) of the top layer 108 with the bottom layer 103, thereby opening and closing the at least one chamber (e.g., a first chamber) formed between the first portion 112(b) of the top layer 108 and the interior surface 114 of the bottom layer 103. Similarly, a second coupling mechanism 102(a) can removably couple a second portion 112(a) of the top layer 108 with the bottom layer 103, thereby opening and closing the at least one chamber (e.g., a second chamber) formed between the second portion 112(a) of the top layer 108 and the interior surface 114 of the bottom layer 103. The first coupling mechanism 102(b) and the second coupling mechanism 102(a) can both be U-shaped or L-shaped zipper mechanisms.

[0032] While the at least one coupling mechanism 102(a), 102(b) is described in one example as a zipper mechanism, it will be appreciated that other couplingmechanisms can be included. For example, the at least one coupling mechanism 102(a), 102(b) can be any coupling mechanism operable to removably couple the top layer 108 to the bottom layer 103, such that the top layer 108 is removable from the bottom layer 103. In some examples, the at least one coupling mechanism 102(a), 102(b) can include hook and loop fasteners, snap fit mechanisms, buckle mechanisms, or other coupling mechanisms.

[0033] As illustrated in FIGS. 3-6, the system 100 can include at least one thermal regulation membrane 200. The at least one thermal regulation membrane 200 can be placed within the at least one chamber (e.g., first chamber) formed between the top layer 108 and the interior surface 114 of the bottom layer 103. In some examples, the interior surface 114 of the bottom layer 103 can include one or more attachment mechanisms 116(a), 116(b). The one or more attachment mechanisms 116(a), 116(b) can be configured to secure the at least one thermal regulation membrane 200 in place within the at least one chamber formed between the top layer 108 and the interior surface 114 of the bottom layer 103. The one or more attachment mechanisms 116(a), 116(b) can be configured to prevent movement of the at least one thermal regulation membrane 200 as the user sleeps, thereby ensuring consistent and uniform temperature regulation through the user’s sleep. The one or more attachment mechanisms 116(a), 116(b) can be configured to removably couple to the at least one thermal regulation membrane 200.

[0034] While two attachment mechanisms 116(a), 116(b) are shown in FIGS. 2, 4, and 5, it will be appreciated that any number of attachment mechanisms 116(a), 116(b) can be included. In some examples, four attachment mechanisms 116(a), 116(b) can be included. The four attachment mechanisms can be evenly spaced around the at least one thermal regulation membrane 200.

[0035] In some examples, the one or more attachment mechanisms 116(a), 116(b) can include interior surface slots. For example, each of the interior surface slots can include material coupled to and protruding from the interior surface 114 forming a slot. Each interior surface slot can be configured to removably couple to a corresponding attachment mechanism of the at least one thermal regulation membrane 200.

[0036] As illustrated in FIGS. 3-4, the at least one thermal regulation membrane can include one or more membrane attachment mechanisms 202(a), 202(b). Theone or more membrane attachment mechanisms 202(a), 202(b) can be configured to removably couple to the one or more attachment mechanisms 116(a), 116(b) of the interior surface 114 of the bottom layer 103. Although two membrane attachment mechanisms 202(a), 202(b) are illustrated, it will be appreciated that more than two membrane attachment mechanisms 202(a), 202(b) can be included. In some examples, the one or more membrane attachment mechanisms 202(a), 202(b) can include four membrane attachment mechanisms. Each of the four membrane attachment mechanisms can be located at or near a corner of the at least one thermal regulation membrane 200.

[0037] In some examples, the one or more membrane attachment mechanisms 202(a), 202(b) can include thermal regulation membrane slots. For example, the thermal regulation membrane slots can include material coupled to and protruding from the at least one thermal regulation membrane 200 forming a slot. Each thermal regulation membrane slot can be configured to removably couple to a corresponding attachment mechanism of the interior surface of the bottom layer 103.

[0038] In some examples, when the one or more attachment mechanisms 116(a), 116(b) and the one or more membrane attachment mechanisms 202(a), 202(b) are slots, coupling mechanisms 204(a), 204(b) for coupling the slots together can be included. For example, as illustrated in FIG. 4, the coupling mechanisms 204(a), 204(b) can include U-buckles. The U-buckles can be configured to removably couple the one or more attachment mechanisms 116(a), 116(b) to the one or more membrane attachment mechanisms 202(a), 202(b). In this manner, the at least one thermal regulation membrane 200 can be removably coupled, and thereby secured in place, to the interior surface 114 of the bottom layer 103. While a first side of the at least one thermal regulation membrane 200 is shown as attached to the interior surface 114 of the bottom layer 103, it will be appreciated that an opposite side of the at least one thermal regulation membrane 200 can be similarly coupled to an opposite side of the interior surface 114 of the bottom layer 103.

[0039] In other examples, as illustrated in FIG. 9, the coupling mechanisms for coupling the one or more attachment mechanisms 116(a), 116(b) and the one or more membrane attachment mechanisms 202(a), 202(b) can include an S-buckle 400. The S-buckle 400 can include a first opening 402(a) and a second opening402(b). The first opening 402(a) can be operable to receive one of the slots (e.g., slots of one or more attachment mechanisms 116(a), 116(b) or slots of one or more membrane attachment mechanisms 202(a), 202(b)). Similarly, the second opening 402(b) can be operable to receive one of the slots (e.g., slots of one or more attachment mechanisms 116(a), 116(b) or slots of one or more membrane attachment mechanisms 202(a), 202(b)). In some examples, the S-buckle 400 can include a first clip 404(b) and a second clip 404(a). The first clip 404(b) can be operable to secure one of the slots (e.g., slots of one or more attachment mechanisms 116(a), 116(b) or slots of one or more membrane attachment mechanisms 202(a), 202(b)) within the first opening 402(a). Similarly, the second clip 404(a) can be operable to secure one or the slots (e.g., slots of one or more attachment mechanisms 116(a), 116(b) or slots of one or more membrane attachment mechanisms 202(a), 202(b)) within the second opening 402(b).

[0040] In some examples, the one or more attachment mechanisms 116(a), 116(b) of the interior surface 114 of the bottom layer and the one or more membrane attachment mechanisms 202(a), 202(b) of the at least one thermal regulation membrane 200 can include other attachment means. For example, the one or more attachment mechanisms 116(a), 116(b) can include hook and loop material and the one or more membrane attachment mechanisms 202(a), 202(b) can include corresponding hook and loop material. In some examples, the one or more attachment mechanisms 116(a), 116(b) can include snap fit mechanisms configured to removably couple to corresponding snap fit mechanisms of the one or more membrane attachment mechanisms 202(a), 202(b). In some examples, the one or more attachment mechanisms 116(a), 116(b) can include a buckle or buckle receiver which can removably couple to a buckle or buckle receiver of the one or more membrane attachment mechanisms 202(a), 202(b). It will be appreciated that other types of attachment mechanisms can be provided to couple the at least one thermal regulation membrane 200 to the interior surface 114 of the bottom layer 103.

[0041] While the at least one thermal regulation membrane 200 is described as being attached to the interior surface 114 of the bottom layer 103, it will be appreciated that the at least one thermal regulation membrane 200 can also be attached to an interior surface of the top layer 108. For example, the one or moreattachment mechanisms 116(a), 116(b) can be attached to an interior surface of the top layer 108.

[0042] The at least one thermal regulation membrane 200 can be operable to be heated or cooled to a desired temperature. In some examples, as illustrated in FIGS. 6-7, the thermal regulation membrane 200 can be coupled to a thermal regulation device 300 via one or more conduits 206. The thermal regulation device 300 can be configured to heat and / or cool a fluid to a desired temperature. The thermal regulation device 300 can be operable to pump the fluid to and from the at least one thermal regulation membrane 200, through the one or more conduits 206, to ensure that the thermal regulation membrane 200 maintains the desired temperature.

[0043] As illustrated in FIGS. 1 and 6, the side wall 110 of the bottom layer 103 can include at least one slot 106(a), 106(b). The at least one slot 106(a), 106(b) can be operable to receive the one or more conduits 206 fluidically connecting the at least one thermal regulation membrane 200 to the thermal regulation device 300. FIGS. 6-7 illustrate the one or more conduits 206 received in a first slot 106(b). The at least one slot 106(a), 106(b) can be operable to secure the one or more conduits 206 such that the one or more conduits 206 remain in place with respect to the system 100. In this manner, the system 100 remains in a desired configuration, preventing the one or more conduits 206 from obstructing the environment.

[0044] In some examples, the system 100 can further include at least one body sensor. The at least one body sensor can be placed within the at least one chamber formed by the interior surface 114 of the bottom layer 103 and the top layer 108. In some examples, the at least one body sensor can be configured to measure one or more parameters of the user. For example, the at least one body sensor can be configured to measure biometric parameters of the use. The at least one body sensor can be configured to measure any parameter related to the sleep of the user. In some examples, the at least one body sensor can include a posture sensor, an electrooculography (EOG) sensor, a heart rate sensor, a body weight sensor, a movement sensor, an electromyography (EMG) sensor, a brain wave sensor, a body temperature sensor, an analyte sensor, a pulse oximeter sensor, a blood pressure sensor, an electrodermal activity (EDA) sensor, and / or a body fat sensor. In some examples, the at least one bodysensor can be placed underneath the at least one thermal regulation membrane 200. In other examples, the at least one body sensor can be placed over the at least one thermal regulation membrane 200.

[0045] In some examples, the at least one body sensor can include a wired or wireless sensor. In some examples, when the at least one body sensor is at least one wired sensor, the at least one wired sensor can include a first wire 208, a second wire 210, and a power unit 210. In some examples, the first wire 208 electrically couples the at least one body sensor to the power source 210. In some examples, the second wire 210 electrically couples the thermal regulation device 300 to the power source 210. In some examples, the thermal regulation device 300 provides power to the power unit 210 to power the at least one body sensor.

[0046] As illustrated in FIGS. 1 and 5, the side wall 110 of the bottom layer 103 can include one or more pockets 104(a), 104(b). In some examples, the one or more pockets 104(a), 104(b) are operable to receive (e.g., hold or store) the power unit 210 of the at least one body sensor.

[0047] In some examples, the top layer 108 can include a cushioning material. The cushioning material can include latex, foam, or other cushioning materials. The top layer 108 can provide a comfort layer between the at least one thermal regulation membrane 200 and a user. In some examples, the top layer 108 can include a non-insulating material. For example, the top layer 108 can be heated or cooled by the at least one thermal regulation membrane 200 to the same temperature as the thermal regulation membrane 200, thereby allowing the top layer 108 surface to be temperature controlled.

[0048] In some examples, the system 100 can include two zones. Each zone can be operable to be thermally regulated by a thermal regulation membrane 200. For example, FIG. 8 illustrates two zones each having a thermal regulation membrane 200. In some examples, each thermal regulation membrane 200 can include a dedicated thermal regulation device 300. The mattress cover 101 can include the two zones. For example, as illustrated in FIGS. 1-2, the mattress cover 101 can include a first coupling mechanism 102(b) and a second coupling mechanism 102(a). The first coupling mechanism 102(b) can be configured to open and close a first chamber formed between a first portion 112(b) of the top cover 108 and the interior surface 114 of the bottom layer 103. A thermalregulation membrane 200 can be placed on the interior surface 114 of the bottom layer 103 when the first coupling mechanism 102(b) uncouples the first portion 112(b) of the top cover 108 from the bottom layer 103. In some examples, the at least one body sensor described herein can also be placed in the first chamber. Once the thermal regulation membrane 200 is placed in the first chamber and connected to a thermal regulation device 300, the first chamber can be closed via the first coupling mechanism 102(b).

[0049] Similarly, the mattress cover 101 can include a second coupling mechanism 102(b). The second coupling mechanism 102(a) can be configured to open and close a second chamber formed between a second portion 112(a) of the top cover 108 and the interior surface 114 of the bottom layer 103. A thermal regulation membrane 200 can be placed on the interior surface 114 of the bottom layer 103 when the second coupling mechanism 102(a) uncouples the second portion 112(a) of the top cover 108 from the bottom layer 103. In some examples, the at least one body sensor described herein can also be placed in the second chamber. Once the thermal regulation membrane 200 is placed in the second chamber and connected to a thermal regulation device 300, the second chamber can be closed via the second coupling mechanism 102(b).

[0050] The system 100 described herein can allow for modular temperature regulation of a sleep article (e.g., mattress). For example, the system 100 provides two zones operable to receive a thermal regulation membrane 200. In some examples, the system 100 allows two users to each have a dedicated thermal regulation membrane 200. In some examples, one user can utilize a thermal regulation membrane 200, while another user can decide not to use a thermal regulation membrane 200.

[0051] The system 100 also allows for various components to be easily washed. For example, the top layer 108 can be removed entirely from the bottom layer 103 using the one or more coupling mechanisms 102(a), 102(b). In this manner, the top layer 108 can be washed without having to disassemble other components of the system 100. In this manner washing the top layer 108 is simplified.

[0052] In some examples, the bottom layer 103 can include a waterproof material. The waterproof material can ensure that no liquid contacts the mattress. For example, if a thermal regulation membrane 200 malfunctions, the bottom layer103 can prevent any leaks from contacting the mattress, thereby preventing damage to the mattress.

[0053] The disclosures shown and described above are only examples. Even though numerous characteristics and advantages of the present technology have been set forth in the foregoing description, together with details of the structure and function of the present disclosure, the disclosure is illustrative only, and changes may be made in the detail, especially in matters of shape, size and arrangement of the parts within the principles of the present disclosure to the full extent indicated by the broad general meaning of the terms used in the attached claims. It will therefore be appreciated that the examples described above may be modified within the scope of the appended claims.

Claims

CLAIMSWhat is claimed is:

1. A system for temperature regulation comprising:at least one thermal regulation membrane configured to be heated or cooled; anda mattress cover configured to fit over a mattress, the mattress cover comprising:a bottom layer comprising an interior surface and a side wall; a top layer configured to fit over the interior surface of the bottom layer; andat least one coupling mechanism configured to removably couple the bottom layer to the top layer,wherein the bottom layer and the top layer form at least one chamber therebetween, the at least one chamber operable to receive the at least one thermal regulation membrane.

2. The system of claim 1 , wherein the at least one thermal regulation membrane is fluidically coupled to a thermal regulation device via one or more conduits, and wherein the thermal regulation device is operable to heat or cool a fluid for delivery to the at least one thermal regulation membrane.

3. The system of claim 2, wherein the side wall includes at least one slot operable to receive the one or more conduits.

4. The system of claim 3, further comprising at least one body sensor operable to sit within the at least one chamber underneath the at least one thermal regulation membrane, wherein the at least one body sensor comprises a power cord and a power unit, and wherein the at least one slot is operable to receive the power cord.

5. The system of claim 4, wherein the bottom layer further comprises a pocket operable to receive the power unit.

6. The system of claim 5, wherein the power unit is electrically coupled to the thermal regulation device.

7. The system of claim 1 , wherein the at least one coupling mechanism comprises at least one zipper.

8. The system of claim 1 , wherein the interior surface of the bottom layer includes one or more attachment mechanisms.

9. The system of claim 8, wherein the at least one thermal regulation membrane includes one or more corresponding attachment mechanisms.

10. The system of claim 9, wherein the one or more attachment mechanisms comprise four interior surface slots and the one or more corresponding attachment mechanisms comprise four thermal regulation membrane slots.

11. The system of claim 10, further comprising one or more U-buckles, wherein the one or more U-buckles are operable to removably couple the four interior surface slots to the four thermal regulation membrane slots.

12. The system of claim 11 , wherein the four thermal regulation membrane slots are located near four corners of the at least one thermal regulation membrane, and wherein the at least one thermal regulation membrane is secured to the interior surface of the bottom layer.

13. The system of claim 1 , wherein the at least one coupling mechanism comprises a first coupling mechanism and a second coupling mechanism.

14. The system of claim 13, wherein the at least one thermal regulation membrane comprises a first thermal regulation membrane and a second thermal regulation membrane.

15. The system of claim 14, wherein the at least one chamber comprises a first chamber and a second chamber, wherein the first chamber is operable to receive the first thermal regulation membrane, and wherein the second chamber is operable to receive the second thermal regulation membrane.

16. The system of claim 15, wherein the first coupling mechanism, a first portion of the bottom layer, and a first portion of the top layer form the first chamber.

17. The system of claim 15, wherein the second coupling mechanism, a second portion of the bottom layer, and a second portion of the top layer form the second chamber.

18. The system of claim 1 , wherein the top layer comprises a cushioning material.

19. The system of claim 1 , wherein the top layer is removable from the bottom layer, and wherein the top layer is operable to be washed.

20. The system of claim 1 , wherein the side wall of the bottom layer includes an elastic material configured to secure the mattress cover to the mattress.