A body pillow is meant to lay alongside a sleeper's body rather than just be underneath his or her head. A typical mattress presents a flat plane as its upper surface and will cushion only a part of a sleeper's body, such as his or her front, back or one side. A body pillow lends additional lateral support.
Body pillows have been provided for use by pregnant women who otherwise may experience discomfort while attempting to sleep. One form of these body or pregnancy pillows has a length much greater than its thickness. However, pregnancy pillows currently on the market have drawbacks. They often take up too much room in the bed, do not stay in place, do not permit the use of a conventional head pillow, are itchy, have exposed and irritating zippers, have shapes or firmnesses that cannot be easily altered, and/or are stuffed with a fill that gets lumpy and poorly distributed over time. Optimally, a pregnancy pillow should be long enough to support the belly and knees/legs at the same time, should be easy for the user to position both herself and the pillow, should be able to be easily altered in shape as the user's body changes shape, should have a firmness that can be changed for different parts of the body, and should permit the user to use her own head pillow. The body pillow described herein provides these advantages.
According to one aspect of the invention, a body pillow is provided that has a pillow body defined by an elongate outer cover. The outer cover has a circumferential band that is formed around a long axis of the pillow body, and so as to be spaced from both first and second opposed ends of the outer cover. This circumferential band is composed of a stretch fabric. The body further includes first and second inner pillows that are disposed inside of the outer cover. A first end of the first inner pillow is disposed near the first end of the outer cover. A second end of the first inner pillow is disposed to be near the circumferential band. A first end of the second inner pillow is disposed to be near the circumferential band. A second end of the second inner pillow is disposed to be near the second end of the outer cover.
The body pillow is capable of assuming each of a nontwisted configuration and a twisted configuration. In the twisted configuration, the outer cover is helically twisted around the axis at the circumferential band. This pushes apart the second end of the first inner pillow from the first end of the second inner pillow. It also increases the firmness of the first and second inner pillows. In the nontwisted configuration, the outer cover is not helically twisted about its axis. In one embodiment, the body pillow may be helically twisted by varying amounts to suit the user. One of these amounts can be 360 degrees.
According to another aspect of the invention, a body pillow has an elongate outer cover defining a pillow body, the pillow body being formed around along a longitudinal axis. The outer cover has an inner side that in use faces a torso of the user and an opposed outer side for facing away from the torso of the user. The inner side extends from a first side margin of the outer cover to a second side margin of the outer cover. A first, stretch fabric makes up at least a majority of the inner side. An outer side also extends from the first side margin to the second side margin. A second, nonstretch fabric makes up at least a majority of the outer side.
In one embodiment, the outer cover has a first end disposed on the axis and a second end disposed on the axis to be remote from the first end. The outer cover has a circumferential band of stretch fabric that is disposed around the axis so as to be between the first end and the second ends. Substantially all of the inner side of the outer cover is composed of stretch fabric. Substantially all of the outer side, with the exception of the circumferential band, is composed of nonstretch fabric.
In one embodiment, the pillow is capable of being helically twisted about its longitudinal axis by about 360 degrees, so that in the twisted configuration only stretchy fabric will face the torso of the user.
In either of the above aspects of the invention, a width of the circumferential band, when the body pillow is in the nontwisted configuration and as measured in a direction parallel to the axis, is less than about a tenth of an overall length of the body pillow, as measured between the first and second ends thereof in parallel to the axis.
In either of the above aspects of the invention, the outer cover is composed of a plurality of fabric panels. These fabric panels include the circumferential band and at least one panel made out of nonstretch fabric. In one embodiment, the outer cover has at least two such panels made out of nonstretch fabric.
In either of the above aspects of the invention, the circumferential band may be positioned closer to the first end of the outer cover than to the second end of the outer cover. In these embodiments, an axial length of the first inner pillow will be shorter than an axial length of the second inner pillow. Alternatively, the circumferential band may be positioned approximately equidistantly between the first end and the second end of the outer cover, and in this case the axial lengths of the inner pillows will be about the same.
In either of the above aspects of the invention, the body pillow is tapered from the second end of the outer cover to the first end of the outer cover. In one embodiment, the tapering occurs in a horizontal plane, but not in a vertical plane. Said another way, a thickness of the body pillow from a midline on the inner side to a midline on the outer side tapers as one proceeds from the second end of the outer cover to the first end of the outer cover, but the thickness from a top margin or seam to a bottom margin or seam remains substantially constant along most of the length of the outer cover. In one embodiment, the outer cover has a further, end panel, disposed at the second end, which is made of nonstretch fabric.
In either of the above aspects of the invention, first and second inner pillows are disposed inside of the outer cover, and may be filled with expanded polystyrene (EPS) microbeads.
The body pillow enables the use of a method for enhancing the comfort of a pregnant woman, during both a first time during her pregnancy and a second time during her pregnancy that is spaced from the first time. At the first time, the body pillow may be used in an untwisted configuration. At the second time, the user helically twists the body pillow, about its axis and at the outer cover's circumferential band of stretchy material, by a desired amount. In the twisted configuration, the spacing between the first and second inner pillows is increased, and/or the firmness of each of the first and second inner pillows is increased. The user then sleeps with the body pillow in the twisted configuration. In one embodiment, the user helically twists the pillow a full 360-degrees about the axis, so that stretchy material continues to face her torso.
The pillow of the present invention enhances the support of the user's knees or legs, and increases the ability of the user to adjust and customize pillow firmness. Because of the pillow's technical advantages, the user gets a better night's sleep, especially during pregnancy when the shape and weight of her body changes.
Further aspects of the invention and their advantages can be discerned in the following detailed description as read in conjunction with the drawings of exemplary embodiments, in which like characters denote like parts and in which:
As seen in
Stated another way, and referring to
A circumferential band 114 of material is disposed around axis X, at a location between ends 106 and 108. In the embodiment seen in
To accommodate this degree of helical twisting, the circumferential band 114 is made of a stretchy material. In one embodiment, this can be a stretchy material with a soft pile, such as a nylon/Spandex jersey. The rest of outer side 110 preferably is composed of a smooth, soft but nonstretch material, such as a TENCEL® weave. TENCEL® is a trademark for a rayon fabric made of lyocell and modal fibers. In one embodiment, the remaining panels of stretchy fabric described herein are made of nylon/Spandex jersey, and the remaining panels of nonstretch fabric described herein are made of TENCEL®.
In the illustrated embodiment, a first panel 124 of nonstretch material extends from band 114 to end 106, and extends between seams 120 and 122. A second panel 126 of nonstretch material extends from band 114 to end 108, and between seams 120 and 122. As more clearly seen in
The outer cover 102 is completed by an end panel 200 (
In one embodiment, the panels of the outer cover 102 are color-coded. For example, the color of the circumferential band 114 can be made to be in a color different from the rest of the panels of the cover. This is to provide the user a visual clue as to where to twist the pillow. In another embodiment, stretch panels 114, 128 and 130 may be provided in a first color, while nonstretch panels 124, 126 and 200 may be provided in another color. In a third embodiment, the color of circumferential band 114 may be chosen to be different from the color of nonstretch panels 124, 126 and 200, and also to be different in color from the rest of the stretch panels 128 and 130. In a fourth embodiment, the color of all panels is the same.
In the embodiment of the invention where circumferential band 114 is closer to end 106 than it is to end 108, two inner pillows 1000, 1300 are provided to be of different lengths. A first, smaller, inner pillow 1000 is shown in
In the illustrated embodiment, a cover 1006 of the first inner pillow 1000 is made from an inner panel 1008 that extends from end 1002 to end 1004 and from a bottom seam 1010 to a top seam 1012; an outer panel 1014 that also extends from end 1002 to end 1004 and from top seam 1012 to bottom seam 1010; and a preferably elliptical end panel 1016, the margins of which are stitched to inner panel 1008 and outer panel 1014. Panels 1008, 1014 and 1016 can be made of nonstretch fabric. A zipper 1018 is located on seam 1010 (alternatively but not shown, on seam 1012) to permit access to the interior of first inner pillow 1000. The zipper may have its pull removed and covered by a flap of fabric (not shown) to reduce irritation to the user. First inner pillow 1000 may be about eighteen inches long. Its end panel 1016 may take the form of an ellipse in which a major axis is disposed vertically in use and which may be about nine inches. A minor axis of end panel 1016 is disposed horizontally in use and may be about five inches. In conformance with the nature of the taper of outer cover 102, first inner pillow 1000 is tapered in a horizontal plane but not in a vertical plane, as is evident in
The second inner pillow 1300 is illustrated in
The second inner pillow 1300 may be tapered from second end 1304 to first end 1302. The degree of taper preferably conforms to that of outer cover 102. Also to this end, the second inner pillow is tapered in a horizontal plane, as seen in
First and second inner pillows 1000, 1300 may be filled with a fill 700 (
In summary, a body pillow has been shown and described that is particularly suited as a sleeping aid during pregnancy. The user may helically twist the pillow at a stretchy circumferential band to increase the firmness of inner pillows disposed inside of the outer cover, or use the pillow in an untwisted configuration. The pillow is thus adaptable for use during different times during pregnancy.
While illustrated embodiments of the present invention have been described and illustrated in the appended drawings, the present invention is not limited thereto but only by the scope and spirit of the appended claims.
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