Therapeutic exercise devices utilizing reciprocating ankle rests are known. In use, a person will lie flat on his back and place his ankles on the ankle rest. In operation, the ankle rest reciprocates horizontally in a side-to-side motion which causes the legs to swing back and forth. In some instances, a person who could receive treatment cannot receive adequate treatment from such a device due to the person being bed ridden and the device not being able to be adequately supported on a bed. Improvements are desired.
An exercise device assembly is disclosed. The exercise device assembly can include an adjustable exercise device having a base plate supporting a reciprocating ankle rest that has a longitudinal axis. The base plate can be provided with a first plurality of support members at a bottom side for supporting the base frame. The exercise device can also include a knee rest connected to the housing, wherein the knee rest has a longitudinal axis that is generally parallel to a longitudinal axis of the ankle rest. In one aspect, the knee rest is adjustable in a horizontal direction relative to the longitudinal axis of the ankle rest. The knee rest can also be provided with a second plurality of support members at a bottom side for supporting the knee rest.
The exercise device assembly may also include a bed adapter which may be attached or unattached to the exercise device. In one aspect, the bed adapter may include a main body defining a first side and a second side. A first plurality of receptacles can be provided that receive and retain the first plurality of support members, wherein each of the first plurality of receptacles being disposed in the main body first side and having a sidewall connecting the main body first side to a support surface of the receptacle. Similarly, a second plurality of receptacles can be provided that receive and retain the second plurality of support members, wherein each of the second plurality of receptacles being disposed in the main body first side and having a sidewall connecting the main body first side to a support surface of the receptacle.
Reference will now be made in detail to the exemplary aspects of the present disclosure that are illustrated in the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like structure.
Referring to
Still referring to
Still referring to
In the exemplary embodiment shown, the upper member 102 is connected to a base member 106 by a pair of support legs 110. Base member 106 is for supporting upper member and for providing a connection point between the knee rest 100 and the frame 80 of the housing 10. As shown, base member 106 has a pair of rubber support feet 108 for contacting the surface on which exercise device 1 rests. Support feet 108 also provide for vibration isolation. Base member 106 further includes a pair of collars 112 for receiving support legs 110. Support legs 110 are slidable within the collars 112 such that the upper member 102 of the knee rest 100 can be adjusted in a vertical direction V. By use of the term “vertical direction” is meant a direction that is generally perpendicular to the surface on which the exercise device 1 rests which is also the plane of the base plate 80. This adjustment allows an individual user to set the knee rest 100 height at a satisfactory level. In one position, the height of the upper member 102 is set to be lower than the height of the ankle rest 70 (i.e. axis X-X is lower in the horizontal plane than axis Y-Y). In the embodiment shown, upper member 102, base member 106, and support legs 110 are constructed from ABS plastic, although other materials and shapes may be used.
As shown, each collar 112 includes a locking mechanism 114 that operates to bind each leg 108 to the collar 112. This feature ensures that once the vertical height of the knee rest 100 is set, that it is securely retained in this position. In one embodiment, the legs 110 have a plurality of notches 110a for receiving a detent 114a on the locking mechanism 112. In one embodiment the locking mechanism 114 is a latch. However, those skilled in the art will appreciate that other means for locking the legs 110 may be used, such as pins. Referring to
In the exemplary embodiment shown, the base member 106 of the knee rest 100 is connected to the base plate 80 of the housing 10 by a pair of extension legs 90. Extension legs are for horizontally spacing the knee rest 100 from the ankle rest 70 a desired distance such that the exercise device 1 can be adjusted to accommodate the particular leg length and proportions of a particular user.
As shown, each extension leg 90 includes an inner member 92 that is slidable within an outer member 94. The inner member 92 is received into recess 116 and secured by screws (not shown) while the outer member is shown as being secured to the base plate 80 via clamps 99. One skilled in the art will appreciate that inner and outer members 92, 94 may be respectively attached to the base member 106 and base plate 80 by a variety of means known in the art. In the embodiment shown, members 92, 94 are aluminum tubes. However, one skilled in the art will appreciate that other materials and shapes may be used.
Each extension leg 90 is also provided with a collar 96 having a locking mechanism 98. In the embodiment shown, collar 96 and locking mechanism 98 are secured to outer member 94 and configured such that locking mechanism can selectively engage the inner member 92. In one embodiment, locking mechanism 98 is a latch. However, those skilled in the art will appreciate that other means for locking the legs 110 may be used, such as pins. In the embodiment shown, collar 96 and locking mechanism 98 are primarily constructed from ABS plastic, although other materials may be used. Referring to
By operation of the locking mechanism 98, the relative position of the inner member 92 to the outer member 94 may be set to a fixed position. Because the inner member 92 is slidable with respect to the outer member 94, the knee rest 100 position may be adjusted in a horizontal direction H such that the desired spacing between the knee rest 100 and the ankle rest is achieved (i.e. axis X-X is spaced a desired horizontal distance from axis Y-Y). By use of the term “horizontal direction” is meant a direction that is generally parallel to the surface on which the exercise device 1 rests and perpendicular to the longitudinal axis X-X of the leg rest 100.
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The bed adapter 200 may be physically attached to the exercise device 1, may be formed integrally with the base portion (housing 10 and/or base plate 80) of the exercise device 1, or may be provided as a separate component upon which the exercise device 5 rests. Additionally, the bed adapter 200 may be used with an exercise device that is provided with or without the knee rest 100. In one embodiment, the exercise device 1 is attached to the bed adapter 200 via mechanical fasteners, for example fasteners 83 connecting the base plate 80 to the bed adapter 200.
Furthermore, the bed adapter 200 is particularly suited for an exercise device 1 having a knee rest 100 that is adjustable relative to the base portion (i.e. housing 10 and base plate 80), wherein the base portion and the knee portion have a plurality of support members. As can be seen at
With reference to
As shown, the main body 202 can be provided with rounded side edges 202a-202d extending between the first and second support sides 204, 206 such that no sharp (i.e. 90 degree) corners are present on the main body 202. In one aspect, the first support side 204 is configured for directly supporting the exercise device 1 while the second support side 206 is configured to rest against and to be supported by the bed 5.
On the first support surface 205, a first plurality of receptacles 208 for receiving and retaining the support members 82 associated with the main housing 10, 80 is provided. As shown, eight receptacles 208 are provided in the first support side 204 and are arranged to receive the four support members 82 of the base portion 10, 80 in two different positions. Each of the receptacles 208 is provided with a sidewall 208a connecting the main body first support side 204 to a support surface 208b of the receptacle 208.
As most easily seen at
On the first support surface 205, a second plurality of receptacles 210 for receiving and retaining the support members 108 associated with the knee rest 100 is provided. As shown, two slot-shaped receptacles 210 are provided in the first support side 204 and are arranged to receive the two support members 108 of the knee rest 100. As shown, each of the receptacles 210 is provided with a sidewall 210a connecting the main body first support side 204 to a support surface 210b of the receptacle 210.
As most easily seen at
As shown, the receptacles 208 and 210 are configured such that their respective support surfaces 208b and 210b are recessed from the plane defined by the main body 202 by about one eighth of an inch. However, other recess depths between the support surfaces 208b, 210b and the first support side 204 may be utilized without departing form the concepts presented herein. Additionally, although the sidewalls 208a, 210a are shown as being generally perpendicular to the plane defined by the first support surface 204, the sidewall may be angled such that the dimension of the receptacles 208a and/or 210a decreases from the first support surface 204 to the support surfaces 208b, 210b. Such a configuration would facilitate easier initial positioning of the exercise device 1 with a wider opening near the first support surface 204 and more securely hold the support members 80, 108 with a narrower opening near the support surfaces 208b, 210b.
In one example, the main body 202 is formed from a polymeric material by a molding process (e.g. injection molding, rotational molding, blow molding, etc.). In one example, the main body 202 is provided with a hollow interior 214. To provide structural support to the receptacles 208, 210 (and the main body), structural recesses 212 may be provided at the second side 206 of the main body 202 opposite the receptacles 208, 210. As configured, the structural recesses 212 have sidewalls 212a, connecting the surface 206 to a surface 212b, that aid in supporting the support surfaces 208b, 210b such that the support surfaces are sufficiently strong to support the weight of the exercise device 1 and the weight of a user's legs without undue deflection of the support surfaces 208b, 21b and the main body 202. Although the structural recesses 212 are shown as being provided with a circular shape, other shapes can be used without departing from the concepts presented herein.
In light of the presently disclosed teachings, the bed adapter 200 allows any person, and especially a bed-ridden person, to make full use of an adjustable exercise device 1 on a soft surface (e.g. a bed, couch, sofa, etc.) upon which the person is supported and to further be able to set the adjustments of the exercise device without having to leave the soft surface. Accordingly, the bed adapter 200 allows some persons to utilize an exercise device 1 who would otherwise be unable to do so.
Various modifications and alterations of this disclosure will become apparent to those skilled in the art without departing from the scope and spirit of this disclosure, and it should be understood that the scope of this disclosure is not to be unduly limited to the illustrative embodiments set forth herein.
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Number | Date | Country | |
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20150374570 A1 | Dec 2015 | US |