Some embodiments described herein relate to therapeutic cushion systems and methods, and in particular, to therapeutic cushion systems and methods for use in the treatment of various medical conditions, such as, for example, gastro-esophageal reflux disease.
Gastro-esophageal reflux disease (GERD) is a medical term that describes a malady in which acid-laden, partially digested stomach contents reflux—i.e., flow in an abnormal backward fashion—from the stomach into the esophagus. Reflux of gastric contents into the esophagus is most common, and does the most damage, when the GERD sufferer is sleeping and unaware that the reflux is occurring.
Some known systems use pillows or other supportive apparatuses to effectively manage or control symptoms of conditions that otherwise would have required a medical prescription or surgery to alleviate. For example, some known pillow options include an elevated pillow with a protrusion within the pillow focused on the cervical region of the neck, which is intended to provide comfort or better resting conditions for individuals suffering from cardiac conditions, emphysema or other respiratory difficulties. Such a pillow does not allow for an extended support below the sacrum region of the spine; nor does the pillow provide for any comfortable position other than supine.
Some known devices include an orthopedic pillow that can be used to minimize snoring in an individual. While such a pillow can be used to address conditions such as snoring, such a pillow may not be configured to treat conditions such as GERD. In fact, such an orthopedic pillow typically only provides an elevation component and fails to address any other component that may be desired for the relief of symptoms of a GERD sufferer.
Another known system includes a support pillow including a body with a central section and two wings for use in controlling symptoms associated with head and neck hyperextension, which is often seen in infants with bronchopulmonary dysplasia, or other related conditions. Another known system includes an apparatus that can be used to prevent positional plagiocephaly in an infant by distributing loads otherwise borne by the head of the infant across a horizontal surface. While these systems may provide a benefit to infants, their specific design and structural engineering is based on the user of the pillow being an infant. Such pillows are not disclosed as providing a benefit for an adult or adolescent user suffering from GERD.
Most of the above described known systems focus on conditions relating to infants and/or the head-only region, without regard to addressing support of, or interaction with, the entire body. Other known systems include a pillow meant to accommodate an adult person (as a general body pillow) or an infant (to assist in supporting the infant in a seated position). Such systems, however, do not contemplate use of the pillow to alleviate symptoms relating to gastric or esophageal disorders. Additionally, such a pillow may not accommodate the necessary features specific for controlling or managing such disorders. Another known system includes a large, contoured body pillow to facilitate relief from persistent back and neck pain, respiratory and digestive disorders; however, the bulk of such a pillow is typically in excess of what is practical for use by a normal individual in a bed.
Thus, a need exists for therapeutic cushion systems and methods that can address the shortcomings of the known pillow systems identified above, and that can be used to manage and/or control symptoms associated with GERD and/or other medical conditions, while maintaining a practical, accommodating fit for the user.
Apparatus and methods for providing therapeutic treatment for symptoms associated with GERD and/or other digestive disorders and/or other medical conditions are described herein. In some embodiments, an apparatus includes a support element and a conformable riser element adjacent the support element. The riser element and the support element collectively form a body support member configured to support a user and define a receiving portion configured to receive a portion of the user's arm. The riser element and the support element are each disposed within a casing formed at least in part with a stretch material. In some embodiments, the riser element includes a polyester filler material and the stretch material includes a four-way stretch material. The four-way stretch material in combination with the polyester filler material enables the riser element to be conformable.
Apparatus and methods for providing therapeutic treatment for symptoms associated with GERD and/or other digestive disorders and/or other medical conditions or ailments are described herein. In some embodiments, a therapeutic cushion system as described herein can allow the user to sleep comfortably for an extended period of time in a substantially flat or an inclined or reclined right-side lateral decubitus (RLD) position, or a substantially flat or an inclined or reclined left-side lateral decubitus (LLD) position. In the inclined or reclined RLD position or the inclined or reclined LLD position, the therapeutic cushion system can serve to minimize, or eliminate, gastro-esophageal reflux. For example, the inclined or reclined RLD position can facilitate the emptying of the stomach into the duodenum and the inclined or reclined LLD position can facilitate the reduction of reflux episodes.
In some embodiments, an apparatus includes a support element and a conformable riser element adjacent the support element. The riser element and the support element collectively form a body support member configured to support a user and define a receiving portion configured to receive a portion of the user's arm. The riser element and the support element are each disposed within a casing formed at least in part with a stretch material.
In some embodiments, an apparatus includes a support element and a riser element disposed adjacent the support element. The riser element includes a first portion and a second portion. The second portion is configured to be moved relative to the first portion between a first position and a second position. When in the second position, the riser element and the support element collectively define a receiving portion configured to receive a portion of a user's arm.
In some embodiments, an apparatus includes a support element and a riser element adjacent the support element. The riser element and the support element are disposed on a back portion of a reclining chair configured to be moved between a substantially upright configuration and at least one reclined configuration. The riser element and the support element collectively defining a receiving portion configured to receive a portion of a user's arm.
In some embodiments, the therapeutic cushion system 100 (also referred to herein as “cushion system”) can be embodied or implemented as a mattress or cushion for a bed, for use by a user, for example, to sleep or rest in a flat (e.g., prone or supine) or an inclined position (e.g., a RLD or LLD position). In some embodiments, the cushion system 100 can be embodied as a mattress for an adjustable bed, such as, for example, a bed used in a medical facility. In some embodiments, the cushion system 100 can be embodied or implemented within a chair. For example, in some embodiments, the cushion system 100 can be implemented within a reclining chair such that a user can use the cushion system 100 in, for example, a seated position or a reclined position.
The support element 120 can have a variety of different shapes and/or sizes. In some embodiments, the support element has a wedge shape (e.g., in side view) or a portion that is wedge shaped. For example, the support element 120 can include an angled top surface (not shown in
The support element 120 can also have a shape that can promote an appropriate torso angle for a user to comfortably maintain a lateral decubitus position on the support element 120 during use. For example, the support element 120 can include a curved exterior portion that can help increase the comfort of a user lying in a lateral decubitus position for an extended period of time without uncomfortable pressure or pain in a downside shoulder or arm. In some embodiments, the support element 120 can include beveled corners on the cephalad end of the support element 120 that can accommodate additional ergonomic arm and elbow placement during use of the cushion system 100.
The support element 120 can include a cushion member 123 that can be disposed within an outer casing 121. The outer casing 121 of the support element 120 can be formed with one or more materials. For example, in some embodiments, the outer casing 121 can include a top portion on which the user contacts during use of the cushion system 100 that is formed with a first material, and a bottom portion that is formed with a second material. The top portion (e.g., the top surface) of the outer casing 121 can be formed with, for example, a four-way stretch material that is highly conformable, such as, for example, cotton/spandex, nylon/spandex, polyester/spandex or blends of any blend of cotton, nylon or polyester combined with spandex or elastane, and the bottom portion can be formed with a more robust material, such as, for example, poplin, canvas, gabardine or twill made using any combination of cotton, polyester or nylon, to provide durability.
In some embodiments, the outer casing 121 of the support element 120 can include an opening through which the cushion member 123 can be inserted and can include a fastener such as, for example, a zipper, buttons, snaps, flaps, hook and loop fasteners or other suitable coupling method to close or partially close the opening. The cushion member 123 can be formed with one or more foam materials, such as, for example, polyurethane or rubber latex, or visco-elastic polyurethane (e.g., memory foam). In some embodiments, the cushion member 123 can include multiple different foam materials each having a different density and/or a different deflection property. In alternative embodiments, the cushion member 123 can include one or more inflatable chambers. In other alternative embodiments, the cushion member 123 can include a filler material, such as a polyester material, disposed within an inner casing. In some embodiments, the support element 120 can include multiple cushion members 123. For example, multiple cushion members 123 can be stacked together within the outer casing 121.
The support element 120 can also optionally include other features and components, such as any of the various features and components described for a support element in co-pending U.S. Provisional Application Ser. No. 61/683,935, entitled “Therapeutic Cushion Systems and Methods,” filed Aug. 16, 2012, (referred to herein as “the '935 application”), the disclosure of which is incorporated herein by reference in its entirety. For example, the support element 120 can include side bolster members or portions, non-slip surface features and patterns, an angled top surface, inflatable chambers, and/or stackable portions, as described in the '935 application.
The riser element 122 can be formed with or incorporated integrally with the support element 120 or can be formed separately and coupled to the support element 120 to form a body support member configured to support a user. For example, the riser element 122 can be coupled to (or formed integrally with) the support element 120 near or proximate the second end portion (i.e., cephalad end portion) of the support element 120 and can be used to support a neck and head of a user. The riser element 122 can include a cushion member 126 and an outer casing 127 in which the cushion member 126 can be disposed. The outer casing 127 can be formed the same as or similar to the outer casing 121 of the support element 120. The outer casing 127 of the riser element 122 can include an opening through which the cushion member 126 can be inserted and can include a fastener such as, for example, a zipper, buttons, snaps, flaps, hook and loop fasteners or other suitable coupling method to close or partially close the opening. The outer casing 127 can be formed with the same or similar materials as the outer casing 121 described above for the support element 120. For example, the outer casing 127 can include a first portion formed with a four-way stretch material and a second portion formed with a more robust material such as described for support element 120.
As with the cushion member 123, the cushion member 126 can be formed with one or more foam materials, such as, for example, polyurethane or rubber latex. In some embodiments, the cushion member 126 can include multiple different foam materials each having a different density. In other alternative embodiments, the cushion member 126 can include a filler material, such as a polyester material, disposed within an inner casing. In some embodiments, the riser element 122 can include multiple cushion members 126. For example, multiple cushion members 126 can be stacked together within the outer casing 127.
In some embodiments, a single outer casing (not shown in
The riser element 122 can also include a pillow insert 125 that can be disposed within the outer casing 127. For example, in some embodiments, the pillow insert 125 can be disposed within a pocket defined by the cushion member 126. In some embodiments, the pillow insert 125 can be disposed on top of the cushion member 126. The pillow insert 125 can include an inner casing (not shown in
The four-way stretch material of the outer casing 127 of the riser element 122 described above, in conjunction with the pillow insert 125 having an inner casing formed with the four-way stretch material and having a clustered polyester fiber filler material can allow the riser element 122 to be malleable and shape-retaining. For example, in such an embodiment, the user can conform the riser element 122 to a desired thickness and/or shape for that user's needs and preference. For example, the user can conform or adjust the riser element 122 to form cavities or to otherwise fit or conform to the user's face, ear, arm, etc. The conformed shape can be maintained for an extended time period and/or until the user disperses the filler material of the pillow insert 125 by, for example, shaking or fluffing the riser element 122.
The riser element 122 and the support element 120 can collectively define one or more receiving portions (not shown in
The support element 120 and the riser element collectively can be a variety of different lengths, widths and/or thicknesses. For example, in some embodiments in which the cushion system 100 is implemented in a bed, the support element 120 and the riser element 122 collectively can have a length and width corresponding to a typical bed size, such as, for example, a twin size bed, a full size bed, a queen size bed, a king size bed, or a California king size bed. The riser element 122 and the support element 120 can also each individually be a variety of different lengths, widths and/or thicknesses. For example, a cushion system 100 can have a length and a portion of that length that is the support member 120 and the portion that is the riser element 122 can each vary. In some embodiments, such as a chair embodiment, the support element 120 and the riser element 122 can collectively define a back support portion of the chair.
In some embodiments, the riser element 122 can be movable relative to the support element 120 between a first configuration and a second configuration. For example, in some embodiments, the riser element 122 can be slidably moved between a first position and a second position. In some embodiments, the riser element 122 can be moved between a first position in which a portion of the riser element 122 is disposed within the receiving portion of the cushion system, and a second position in which the riser element 122 is disposed outside of the receiving portion enabling a user to place a portion of the user's arm and/or shoulder within the receiving portion. Such embodiments are described in more detail below with reference to specific embodiments.
The body element 124 can include a pillow insert 129 that can be disposed within a sleeve member 131. The sleeve member 131 can include an opening or openings through which the pillow insert 129 can be inserted, and can include a fastener such as, for example, a zipper, buttons, snaps, or other suitable coupling method to close or partially close the opening(s). The pillow insert 129 can be formed the same as or similar to the pillow insert 125 described above for the riser element 122. For example, the pillow insert 129 can include an inner casing (not shown in
The body element 124 can have a variety of different shapes and be a variety of different sizes. For example, in some embodiments, the body element 124 can include an arc portion at a cephalad end connecting a first arm and a second arm of the body element 124. In some embodiments, the arc portion can have a curvature of, for example, substantially 180 degrees. In other embodiments, the arc portion can have a different curvature, for example, between about 30 degrees and 180 degrees. In some embodiments, the first arm and the second arm can extend parallel to each other away from the arc portion. In some embodiments, the first arm of the body element 124 can have a length that is about half a length of the second arm of the body element 124. In some embodiments, the first arm can be substantially the same length as the second arm. The body element 124 can also include various shapes and features as described for embodiments of a body element in the '935 application incorporated by reference above. The body element 124 can be reconfigurable into a variety of different shapes and configurations for use on the support element 120 and/or riser element 122 as described in more detail below. Optionally, in some embodiments, the body element 124 can be used independently of the support element 120 and the riser element 122.
The sleeve member 131 of the body element 124 can be formed in a tubular shape such that the pillow insert 129 can be inserted therein through an opening defined on one end of the sleeve member 131. The sleeve member 131 can include stitching along a single outer edge such that the body element 124 can be free of stitching along an inner edge portion of the sleeve member 131 where a user typically contacts the sleeve member 131 during use. Such an embodiment can provide increased comfort for the user as many known body pillows that have such inner stitching can tend to become taut when tension is applied, resulting in an awkward and potentially painful fit for the user. In addition, the stitching being along an outer edge portion the sleeve member 131 can eliminate or reduce distortion of the body element 124 during use, which can further provide improved feel and comfort to the user. In some embodiments, stitching can be included on the body element 124 at additional targeted areas of the body element 124 as described, for example, in the '935 application incorporated by reference above. The inner casing of the pillow insert 129 of the body element 124 can also be constructed in a tubular shape in the same or similar manner as the sleeve member 131. For example, the inner casing of pillow insert 129 can include stitching along an outer edge of the inner casing, and be free of stitching along an inner edge.
As described above, the user can manipulate, conform, disperse, etc., the clustered polyester fiber filler material within the body element 124 and/or the riser element 122 to create cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences. The shape and/or cavity formed by the user can be maintained for an extended time period and/or until the user disperses the filler material of the riser element 122 and/or the body element 124 by, for example, shaking the riser element 122 and/or body element 124. The combination of the four-way stretch material and clustered polyester filler material can allow for the redistribution of the filler material in an equalized manner throughout the body element 124 and/or riser element 122. The reconfigurable filler material of the body element 124 and/or the riser element 122 can also minimize undesirable and irreversible migration of the filler material, which can occur in some known cushion systems due to their non-pliable stuffing and non-stretch material. In addition, the clustered polyester fiber filler material of the body element 124 and/or the riser element 122 can be machine washed and dried without causing clumping of the filler material. The combination of the filler material and the four-way stretch outer casing 127 and inner casing of pillow insert 125 of the riser element 122, and sleeve member 131 and inner casing of the pillow insert 129 of the body element 124, provides for post-laundering redistribution of the filler material to substantially its original state.
The cushion system 100 can be placed on a frame member or other support structure or can be placed on a floor surface for use. For example, when implemented in a bed embodiment, the cushion system 100 can be placed on a bed frame. In some such embodiment, support legs or feet and/or or wheels, such as castors, can be coupled to such a frame member. In some embodiments, the cushion system 100 can include one or more inflatable chambers that can allow a user to adjust a height and/or firmness of the cushion system 100. For example, the support element 120 and/or the riser element 122 can include one or more inflatable chambers. In some embodiments, the cushion system 100 can include a side support member or portion (not shown in
In some embodiments, the cushion system 100 can include stackable elements. For example, in some embodiments, the support element 120 can include multiple separate stackable cushion members and the riser element 122 can include multiple stackable cushion members. In some embodiments, the cushion system 100 can include multiple stackable elements that each include a support element portion and riser element portion formed as a single component.
In one example use of the cushion system 100, the body element 124 can be positioned on the support element 120 or with a portion of the body element 124 on the support element 120 and a portion on the riser element 122. The user can then lie on or otherwise position the user's body on the cushion system 100, for example, in an inclined or reclined RLD or LLD position such that the user is aligned in approximately a center portion of the support element 120. The user can insert the user's right or left arm beneath the body element 124 and within the receiving portion formed between the support element 120 and the riser element 122. Optionally, the user can adjust the position of the user's right or left arm and shoulder within the receiving portion between the support element 120 and the riser element 122, such that user's downside axilla rests within the centered concave portion of the support element 120.
With the user's arm within the receiving portion between the support element 120 and the riser element 122, the cushion system 100 can maintain the user in the inclined or reclined RLD or LLD position. Thus, the tendency of the user to slide down an angled portion (if included) of the support member 120 can be reduced or eliminated. Further illustrations and details of how a user can be positioned on the cushion system 100 are described in the '935 application incorporated by reference above. In some embodiments, the support element 120 and the riser element 122 can be used without the use of the body element 124. In some embodiments, use of only the body element 124 may be desirable.
As described above, during use of the cushion system 100, a user can place a downside shoulder and arm within the receiving portion of the cushion system 100 when lying in a side position. In some embodiments, insertion of the user's arm within the receiving portion between the support element 120 and the riser element 122 can also mitigate the tendency of the user from sliding downward on an angled top surface portion of the support element 120 and can help stabilize the user in the lateral or side position during use of the cushion system 100. A position of the user's arm and shoulder can be adjusted within the receiving portion between the support element 120 and the riser element 122, such that user's downside axilla rests within the concave portion of the support element 120.
As described above, the cushion system 100 can be used as a method of treatment for GERD and/or other digestive disorders. To use the cushion system 100 for this purpose, the user can follow the steps described above for being positioned on the cushion system 100 in an inclined or reclined RLD position or an inclined or reclined LLD position. For example, in the inclined or reclined RLD position, the therapeutic cushion system 100 can serve to minimize, or eliminate, gastro-esophageal reflux while it facilitates the emptying of the stomach into the duodenum. For example, in the inclined or reclined RLD position, the exit valve (i.e., the pyloric sphincter) of the user's stomach will be positioned substantially at a bottom right side of the user's abdomen below or at an elevation lower than an elevation of the user's esophageal sphincter. Thus, when the user remains in the inclined or reclined RLD position for a sufficient period of time, the stomach contents of the user can drain out of the stomach and into the duodenum. For example, a time period between about 1-4 hours may be needed to empty the contents of the stomach into the duodenum such that the user feels relief from symptoms associated with GERD and/or other digestive disorders. The time frame can vary depending on various factors such as for example, the user's overall health, other conditions the user may have such as diabetes, or gastroparesis, or the type and amount of food the user has consumed prior to resting on the cushion system, etc. In another example, in the inclined or reclined LLD position, a reduction in the frequency of reflux episodes of the user can result.
In this embodiment, the support element 220 and the riser element 222 are formed as a single component and collectively form a body support member configured to support a user. The support element 220 and the riser element 222 define a receiving portion 258 between the support element 220 and the riser element 222. The receiving portion 258 can be used as a shoulder relief area for the user to place a portion of a user's arm and/or shoulder when using the cushion system 200. In this embodiment, the support element 220 includes a top surface 240 that is substantially parallel to a bottom surface 239. Similarly, the riser element 222 includes a top surface 217 that is substantially parallel to a bottom surface 218 that is continuous with the bottom surface 239 of the support element 220.
The support element 220 has a first end portion 215 (also referred to as caudad end portion) and a second end portion 216 (also referred to herein as cephalad end portion) and includes a cushion member 223 (see
The riser element 222 includes a pillow insert 225 (see
The outer casing 261 can also encase the riser cushion member and the pillow insert 225. In other words, a single outer casing 261 can be used. The pillow insert 225 can be disposed, for example, within a pocket (not shown) formed in the riser cushion member or can be disposed on top of the riser cushion member. The pillow insert 225 can include an inner casing (not shown) and filler material (not shown) as described above for pillow insert 125 such that the riser element 222 can include a compliant region to allow a user to form cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences.
The body element 224 also includes a sleeve member 231 that has an inner edge portion 250 and an outer edge portion 249 in which a pillow insert (not shown) (e.g., such as pillow insert 129 described above) can be disposed. The pillow insert forms the shape of the arc portion 241 the first arm 247 and the second arm 248. In this embodiment, the second arm 248 includes an end portion 255 that is disposed at an angle relative to a remainder of the second arm 248. The end portion 255 can be disposed, for example, at an angle of up to about 25 degrees. A stitching feature 256 can be disposed at the start of the bend portion 255. The first arm 247 includes a rounded or curved end portion 257, and the end of the end portion 255 can optionally be similarly rounded.
The tubular shape of the sleeve member 231 can be formed, for example, by sewing or stitching along the outer edge portion 249 of the sleeve member 231. Thus, the sleeve member 231 can be free of stitching along an inner edge portion 250 of the sleeve member 231 where a user typically contacts the sleeve member 231 during use. As described above, having the inner edge portion 250 free of stitching can provide increased comfort for the user and can eliminate or reduce distortion of the body element 224 during use. In this embodiment, the sleeve member 231 also includes stitching features 252 that extend at an angle from the inner edge portion 250 to the outer edge portion 249. The stitching 252 can extend, for example, at a 45 degree angle.
As shown in
In this embodiment, the support element 320 and the riser element 322 are constructed as a single component to form a body support member configured to support a user, and define a receiving portion 358 between the support element 320 and the riser element 322 that can be used as a shoulder relief area for the user to place a portion of a user's arm and/or shoulder when using the cushion system 300. In this embodiment, the support element 320 includes a first top surface portion 340 that is substantially parallel to a bottom surface portion 339 and a second top surface portion 337 that is disposed at an angle relative to the bottom surface portion 339. The second top surface portion 337 can be disposed relative to the first bottom surface portion 339 at an angle between, for example, about 6 degrees and about 30 degrees. The support element 320 also includes a second bottom surface portion 328 that is disposed at an angle relative to the first bottom surface portion 339 and substantially parallel to the second top surface portion 337.
The riser element 322 includes a top surface 317 that is disposed substantially parallel to a bottom surface 318 that is continuous with the bottom surface 328 of the support element 320. The top surface 317 is also disposed at an angle relative to the first bottom surface portion 339 and substantially parallel to the second bottom surface portion 328. For example, the top surface 317 can be disposed relative to the first bottom surface portion 339 at an angle between, for example, about 6 degrees and about 30 degrees.
The support element 320 can include a cushion member (not shown) disposed within an outer casing 361, a concave portion 330 and angled or beveled corners 333 as described above for support element 220. The cushion member of the support element 320 can be formed with, for example, one or more foam materials as described above for previous embodiments. The riser element 322 can include a pillow insert 325 (see
The pillow insert 325 can be disposed, for example, within a pocket (not shown) formed in the riser cushion member or can be disposed on top of the riser cushion member. The pillow insert 325 can include an inner casing (not shown) and filler material (not shown) as described above for pillow insert 125 such that the riser element 322 can include a compliant region to allow a user to form cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences.
The body element 324 (shown in
As shown in
In this embodiment, the support element 420 and the riser element 422 are constructed as a single component to form a body support member configured to support a user, and collectively define a first receiving portion 457 and a second receiving portion 458 between the support element 420 and the riser element 422. The first and second receiving portions 457 and 458 can each be used as a shoulder relief area for the user to place a portion of a user's arm and/or shoulder when using the cushion system 400. In this embodiment, the support element 420 includes a top surface 440 that is substantially parallel to a bottom surface 439. Similarly, the riser element 422 includes a top surface 417 that is substantially parallel to a bottom surface 418 that is continuous with the bottom surface 439 of the support element 420.
The support element 420 can include a cushion member 423 (see
The outer casing 461 can also encase the riser cushion member and the pillow insert 425. The pillow insert 425 can be disposed, for example, within a pocket (not shown) formed in the riser cushion member or can be disposed on top of the riser cushion member. The pillow insert 425 can include an inner casing (not shown) and filler material (not shown) as described above for pillow insert 125 such that the riser element 422 can include a compliant region to allow a user to form cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences.
As shown in
In this embodiment, the support element 520 and the riser element 522 are constructed as a single component and form a body support member configured to support a user. The support element 520 and the riser element 522 collectively define a first receiving portion 557 and a second receiving portion 558 between the support element 520 and the riser element 522 that can each be used as a shoulder relief area for the user to place a portion of a user's arm and/or shoulder when using the cushion system 500. In this embodiment, the support element 520 includes a first top surface portion 540 that is substantially parallel to a bottom surface portion 539 and a second top surface portion 537 that is disposed at an angle relative to the bottom surface portion 539. The second top surface portion 537 can be disposed relative to the first bottom surface portion 539 at an angle between, for example, about 6 degrees and about 30 degrees. The support element 520 also includes a second bottom surface portion 528 that is disposed at an angle relative to the first bottom surface portion 539 and substantially parallel to the second top surface portion 537.
The riser element 522 includes a top surface 517 that is disposed substantially parallel to a bottom surface 518 that is continuous with the second bottom surface 528 of the support element 520. The top surface 517 is also disposed at an angle relative to the first bottom surface portion 539 and substantially parallel to the second bottom surface portion 528. For example, the top surface 517 can be disposed relative to the first bottom surface portion 539 at an angle between, for example, about 6 degrees and about 30 degrees.
The support element 520 can include a cushion member (not shown) disposed within an outer casing 561 and angled or beveled corners 533 as described above for support element 420. The cushion member of the support element 520 can be formed with, for example, one or more foam materials as described above for previous embodiments. The riser element 522 can include a pillow insert 525 (see
The pillow insert 525 can be disposed, for example, within a pocket (not shown) formed in the riser cushion member or can be disposed on top of the riser cushion member. The pillow insert 525 can include an inner casing (not shown) and filler material (not shown) as described above for pillow insert 125 such that the riser element 522 can include a compliant region to allow a user to form cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences.
The body element 524 (shown in
In this embodiment, the support element 620 and the riser element 622 are constructed as a single component and define a fixed receiving portion 658 between the support element 620 and the riser element 622 that can be used as a shoulder relief area for the user to place a portion of a user's arm and/or shoulder when using the cushion system 600. The support element 620 includes a concave portion 630 and angled portions 633 similar to the support elements described above. The support element 620 can include a cushion member (not shown) disposed within an outer casing 661 (see, e.g.,
The riser element 622 includes a riser cushion member (not shown) that can be formed integrally or separately with the cushion member of the support element 620. The riser cushion member can be formed with the same or different materials as the cushion member of the support element 620. The outer casing 661 can also encase the riser cushion member as described above. The riser element 622 can also include a pillow insert (not shown). For example, the pillow insert 625 can be disposed, for example, within a pocket (not shown) formed in the riser cushion member or can be disposed on top of the riser cushion member. The pillow insert 625 can include an inner casing (not shown) and filler material (not shown) as described above for pillow insert 125 such that the riser element 622 can include a compliant region to allow a user to form cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences.
As with a typical recliner, the cushion system 600 has a substantially upright configuration, as shown, for example, in
The cushion system 600 can also optionally include a body element 624, as shown in
The cushion system 600 can be used in a similar manner as described above for previous embodiments. For example, the cushion system 600 can allow the user to sleep comfortably for an extended period of time in a substantially seated or a reclined position. The user can be positioned in a RLD position or LLD position as described above. Also as described above, when used in the reclined RLD position, the cushion system 600 can serve to minimize, or eliminate, gastro-esophageal reflux while it facilitates the emptying of the stomach into the duodenum of the user, and when the user is in a reclined LLD position, the cushion system can serve to reduce reflux episodes.
In one example use of the cushion system 600, the body element 624 can optionally be positioned on the cushion system 600 as described above and as shown in
The support element 720 includes a curved top surface portion 733 (see, e.g.,
In this embodiment, the riser element 722 includes a fixed or stationary riser member 753 and a movable riser member 754. The fixed riser member 753 can include a cushion member(s) (not shown) that can be formed integrally or separately with the cushion member(s) of the support element 720. The cushion member(s) of the fixed riser member 753 can be formed with the same or different materials as the cushion member of the support element 720. The outer casing 761 can also encase the cushion member of the fixed riser member 753 in a similar manner as described above for riser element 622. The movable riser member 754 can include a pillow insert (not shown) as described above for previous embodiments (e.g., pillow insert 125) such that the movable riser member 754 can include a compliant region to allow a user to form cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences. The movable riser member 754 also includes a curved bottom surface portion 743 (see, e.g.,
The movable riser member 754 is movable between a first position in which the curved bottom surface portion 743 of the movable riser member 754 abuts or is positioned adjacent or in contact with the curved top surface portion 733 of the support member 720 (as shown in
As described above for cushion system 600, the cushion system 700 can be moved between a substantially upright configuration, as shown, for example, in
The cushion system 700 can also optionally include a body element 724, as shown in
The cushion system 700 can be used in a similar manner as described above for cushion system 600. For example, the therapeutic cushion system 700 can allow a user to sleep comfortably for an extended period of time in a substantially seated or a reclined position. The user can be positioned in a RLD position or LLD position as described above. Also as described above, when used in the reclined RLD position, the cushion system 700 can serve to minimize, or eliminate, gastro-esophageal reflux while it facilitates the emptying of the stomach into the duodenum of the user, and when the user is in the reclined LLD position, the cushion system 700 can serve to reduce reflux episodes of the user.
In this embodiment, the support element 820 includes a curved upper surface portion 833 (see, e.g.,
In this embodiment, the riser element 822 includes a fixed or stationary riser member 853 and a movable riser member 854. The fixed riser member 853 can include a cushion member (not shown) that can be formed integrally or separately with the cushion member of the support element 820. The cushion member of the fixed riser member 853 can be formed with the same or different materials as the cushion member of the support element 820. The outer casing 861 can also encase the cushion member of the fixed riser member 853 in a similar manner as described above for previous embodiments. The movable riser member 854 can include a pillow insert (not shown) as described above for previous embodiments (e.g., pillow insert 125) such that the movable riser member 854 can include a compliant region to allow a user to form cavities or bulges to accommodate specific body parts and/or portions to accommodate the user's needs and/or preferences. The movable riser member 854 also includes a curved bottom surface portion 843 (see, e.g.,
The movable riser member 854 is movable between a first position in which the curved bottom surface portion 843 of the movable riser member 854 abuts or is positioned adjacent or in contact with the curved top surface portion 833 of the support member 820 (as shown in
As described above for cushion systems 600 and 700, the cushion system 800 can also be moved between a substantially upright configuration, as shown, for example, in
The cushion system 800 can also optionally include a body element 824, as shown in
The cushion system 800 can be used in a similar manner as described above for cushion systems 600 and 700. For example, the therapeutic cushion system 800 can allow a user to sleep comfortably for an extended period of time in a substantially seated or a reclined position. The user can be positioned in a RLD position or LLD position as described above. Also as described above, when used in the reclined RLD position, the cushion system 800 can serve to minimize, or eliminate, gastro-esophageal reflux while it facilitates the emptying of the stomach into the duodenum of the user, and when the user is in the reclined LLD position, the cushion system 700 can serve to reduce reflux episodes of the user.
While various embodiments have been described above, it should be understood that they have been presented by way of example only, and not limitation. Where methods described above indicate certain events occurring in certain order, the ordering of certain events may be modified. Additionally, certain of the events may be performed concurrently in a parallel process when possible, as well as performed sequentially as described above
Where schematics and/or embodiments described above indicate certain components arranged in certain orientations or positions, the arrangement of components may be modified. While the embodiments have been particularly shown and described, it will be understood that various changes in form and details may be made. Any portion of the apparatus and/or methods described herein may be combined in any combination, except mutually exclusive combinations. The embodiments described herein can include various combinations and/or sub-combinations of the functions, components and/or features of the different embodiments described.
For example, any of the embodiments of a cushion system can include a support element with a top surface that is angled at an angle between, for example, 6-30 degrees relative to a bottom surface of the support element. Any of the body elements described herein can include an arc portion and the arc portion can be curved, for example, between about 30 and about 180 degrees. In another example, any embodiment of cushion system can include one or more side bolsters and or one or more side support members. The body elements can include a first arm and a second arm having a variety of different lengths not necessarily shown.
This application is a continuation of U.S. application Ser. No. 16/712,297, entitled “Therapeutic Cushion Systems and Methods,” filed Dec. 12, 2019, which is a continuation of U.S. patent Ser. No. 16/002,522, entitled “Therapeutic Cushion Systems and Methods,” filed Jun. 7, 2018, which is a continuation of U.S. patent application Ser. No. 14/376,372, entitled “Therapeutic Cushion Systems and Methods,” filed Aug. 1, 2014 (now U.S. Pat. No. 9,993,379), which is a 371 national phase application of International Patent Application No. PCT/US2013/024358, filed Feb. 1, 2013 and claims priority to and the benefit from U.S. Provisional Application No. 61/594,840, entitled “Therapeutic Cushion System,” filed Feb. 3, 2012, and U.S. Provisional Application No. 61/683,935, entitled “Therapeutic Cushion Systems and Methods,” filed Aug. 16, 2012, and U.S. Provisional Application No. 61/710,913, entitled “Therapeutic Cushion Systems and Methods,” filed Oct. 8, 2012, each of the disclosures of which is incorporated herein by reference in its entirety.
Number | Date | Country | |
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61710913 | Oct 2012 | US | |
61683935 | Aug 2012 | US | |
61594840 | Feb 2012 | US |
Number | Date | Country | |
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Parent | 16712297 | Dec 2019 | US |
Child | 17574368 | US | |
Parent | 16002522 | Jun 2018 | US |
Child | 16712297 | US | |
Parent | 14376372 | Aug 2014 | US |
Child | 16002522 | US |