The present invention relates generally to exercise apparatus and particularly to exercise apparatus for allowing push-up exercise.
The push-up exercise is one of the most common out-of-gym exercises performed by those wanting to increase upper body strength. Though a simple, effective exercise, its technique encompasses ergonomic and physiological drawbacks that can lead to long term nerve and tissue damage in the hands and wrists; the identification of which has led to the production of push-up apparatus that supposedly addresses these issues.
Whilst current solutions on the market claim to both increase ergonomic efficiency and enhance muscle interaction, research undertaken found this in fact to be only partially true. Whilst the incorporated rotating ability of modern apparatus go some way to improving the physiological flaws identified in the push-up technique, ultimately they are flawed due to the flat surface upon which they rotate.
Through the analysis of the evident popularity and effectiveness of both the barbell and dumbbell press gym-based exercises, and how various home gym products have tried to emulate these benefits but seemingly failed to do so, a solution was sought incorporating what is proven to be the most effective principle in free-weight integration—in addition to such popular gym equipment as the Swiss Ball—the principle of instability.
The present invention provides an exercise apparatus, comprising: a pair of handle elements, and a pair of housing elements; each handle element comprises a manually grippable bar and a base portion presenting a substantially spherical contact surface, each housing element is substantially hemispherical and defines a substantially central window, and each handle element is releasably locatable within a housing element to form a substantially hemispherical handle body in which the contact surface of the handle element is presented within the window of the housing element and provides a contact point about which the housing body is rotatable when located on a support surface.
The formed handle bodies may be releasably joinable to form a substantially spherical housing.
The handle bodies may be releasably joinable by an integrated clip arrangement.
The windows of said housing elements may present a ridge profile arranged to inhibit overtilting of the formed handle body to accommodate flexion, extension, radial and ulnar hand movements. The ridge profile may be arranged to inhibit overtilting of the handle body in either direction of rotation about the roll axis of the manually grippable bar. The ridge profile may be arranged to inhibit tilting of the formed handle body beyond approximately 30 degrees of rotation in either direction about the roll axis of the manually grippable bar, from the untilted position of the handle body.
The manually grippable bars may comprise securing means to allow a resistance band to be connected between them.
The manually grippable bars may be apertured to allow the end of a resistance band to be looped therethrough.
The apparatus may further comprise a resistance band containable within said substantially spherical housing.
The manually grippable bar may be positioned below the upper edge of the substantially hemispherical handle body.
The present invention also provides exercise apparatus comprising a pair of substantially hemispherical handle bodies, each handle body comprises a manually grippable bar, each handle body defines a substantially central window, in which a substantially spherical contact surface is presented that provides a contact point about which said handle body is rotatable when located on a support surface, and each handle body comprises a ridge profile for preventing overtilting in a direction of rotation about said contact point.
The handle bodies may be releasably joinable to form a substantially spherical housing.
The handle bodies may be releasably joinable by an integrated clip arrangement.
The ridge profile may be arranged to inhibit overtilting of the handle body in either direction of rotation about the roll axis of the manually grippable bar.
The ridge profile may be arranged to inhibit tilting of the handle body beyond approximately 30 degrees of rotation in either direction about the roll axis of the manually grippable bar, from the untilted position of the handle body.
The manually grippable bars may extend diametrically between opposed inner surfaces of the substantially hemispherical bodies.
The manually grippable bars may be removable from said substantially hemispherical bodies, and comprise securing means to allow a resistance band to be connected between the removed manually grippable bars.
The manually grippable bars may be apertured to allow the end of a resistance band to be looped through.
The apparatus may further comprise a resistance band containable within said substantially spherical housing.
The window may be formed integrally with the handle body.
Each handle body may be formed as a one-piece construction.
The present invention also provides push-up apparatus comprising or including the exercise apparatus as described herein.
The present invention also provides an exercise kit comprising exercise apparatus as described herein together with a resistance band.
Different aspects and embodiments of the invention may be used separately or together.
Further particular and preferred aspects of the present invention are set out in the accompanying independent and dependent claims. Features of the dependent claims may be combined with the features of the independent claims as appropriate, and in combination other than those explicitly set out in the claims.
The present invention will now be more particularly described, by way of example only, with reference to the accompanying drawings, in which:
Example embodiments are described below in sufficient detail to enable those of ordinary skill in the art to embody and implement the systems and processes herein described. It is important to understand that embodiments can be provided in many alternate forms and should not be construed as limited to the examples set forth herein.
Accordingly, while embodiments can be modified in various ways and take on various alternative forms, specific embodiments thereof are shown in the drawings and described in detail below as examples. There is no intent to limit to the particular forms disclosed. On the contrary, all modifications, equivalents, and alternatives falling within the scope of the appended claims should be included. Elements of the example embodiments are consistently denoted by the same reference numerals throughout the drawings and detailed description where appropriate.
The terminology used herein to describe embodiments is not intended to limit the scope. The articles “a,” “an,” and “the” are singular in that they have a single referent, however the use of the singular form in the present document should not preclude the presence of more than one referent. In other words, elements referred to in the singular can number one or more, unless the context clearly indicates otherwise. It will be further understood that the terms “comprises,” “comprising,” “includes,” and/or “including,” when used herein, specify the presence of stated features, items, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, items, steps, operations, elements, components, and/or groups thereof.
Unless otherwise defined, all terms (including technical and scientific terms) used herein are to be interpreted as is customary in the art. It will be further understood that terms in common usage should also be interpreted as is customary in the relevant art and not in an idealized or overly formal sense unless expressly so defined herein.
The apparatus incorporates an innovative set of mobile, multi-functional push-up apparatus that aims to increase ergonomic efficiency and enhances both upper body and core muscle interaction, eliminating all physiological drawbacks of the technique to provide the most effective push-up performance.
The spherical profile of each of a pair of hemispheres provides the apparatus with its effective unstable nature—increasing muscle interaction, whilst also enabling it to conform to the joint movements of the arms and hands—reducing strain, providing the most effective and ergonomic push-up solution.
In one embodiment [
In
The shell 10a comprises a handle element 12a and a housing element 14a. Each handle element 12a comprises a manually grippable bar 16a and a base portion 18a presenting a substantially spherical contact surface 19a.
The housing element 14a is substantially hemispherical and defines a substantially central window 20a. The handle element 12a is releasably locatable within the housing element 14a to form a substantially hemispherical handle body in which the contact surface 19a of the handle element 12a is presented within the window 20a of the housing element and provides a contact point about which the housing body is rotatable when located on a support surface.
In this embodiment the handle element 12a is formed from two parts: a generally cylindrical hollow bar 16a and a base portion in the form of a curved seat 18a [see
The point surface contact enables natural rotation, to accommodate pronation and supination arm movements. [
It is to be noted that in this embodiment each handle body comprises a ridge profile 5 for preventing overtilting in a direction of rotation about the contact point. This is provided by the intersection between the periphery of the housing window and the contact surface (which is recessed in the window). The periphery of the housing window presents a ridge profile that prevents overtiliting.
Whilst the main purpose of the apparatus is as a set of advanced push-up apparatus, the product also doubles-up as a set of resistance tube handles. This versatile aspect transforms the product from a predominantly chest and core-region focused apparatus into a full-body workout set of apparatus. [
Integrated clip features enable each hemisphere to come together to form one compact, enclosed sphere I—enabling all five incorporated components to become one—within seconds. The peripheral rim of each hemisphere may be non-linear. For example, as shown in the figures the rim of a hemispherical portion of the exercise apparatus is undulating whilst the other hemisphere is correspondingly undulating to allow their connection to form a sphere. That is, as shown in
With reference to, for example,
Alternatively, the peripheral rim of respective hemispherical portions of the apparatus can be linear such that there are no undulations.
In a closed configuration, the apparatus may be opened by a user by pulling apart to release the clips or by twisting the hemispherical portions so as to release the two parts from one another. In an example, such as if the peripheral rim of the portions of the apparatus is linear, the parts may be releasably connected by way of a screw thread, in which one portion has, for example, continuous or semi-continuous helical outer thread surface arranged to cooperate and engage with an inner surface of the other portion of the apparatus.
It is noted that the handle bar 16a is located within the hemisphere i.e. it does not project above the open side of the housing 14a. Having the handle bar close to the ground has been found by the present inventor to be important is allowing for an efficient push-up movement; providing instability but not excessively so.
In
In
With reference to
The height at which the handle bar is in relation to the contact surface (X) is paramount; directly stipulating the level of instability. In turn, this height—to an extent—also defines the overall diameter of the complete sphere (Z). Value X is defined as follows;
Minimum Value=Handle Radius (A)+Grasping Hand (B)+Clearance (C)+Material Thickness (D)
If, when X is at minimum height, value ‘E’ does not match or exceed a value defined by anthropometric data, the minimum height will ultimately be defined by value ‘E’.
Maximum Value=Desired maximum external diameter of sphere (Z).
Optimum Value=Between the maximum and minimum.
Whilst at present it is foreseen that the optimum—and therefore final—value of X will be defined by its minimum value, as so not to provide excessive instability, this will ultimately be determined through product testing.
Although illustrative embodiments of the invention have been disclosed in detail herein, with reference to the accompanying drawings, it is understood that the invention is not limited to the precise embodiments shown and that various changes and modifications can be effected therein by one skilled in the art without departing from the scope of the invention as defined by the appended claims and their equivalents.
Number | Date | Country | Kind |
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1401668.7 | Jan 2014 | GB | national |
Filing Document | Filing Date | Country | Kind |
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PCT/GB2015/050257 | 1/30/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2015/114377 | 8/6/2015 | WO | A |
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Number | Date | Country | |
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20170007878 A1 | Jan 2017 | US |