The invention relates generally to multi-functional exercise devices and more specifically to aerobics, core, weight and resistance devices.
Step aerobics are aerobics routines based on kinesthetic movements that involve stepping on to and off of a step or bench. Typically, benches provided for step aerobics are modular in construction, such that two identical benches can be stacked one on the other to form a single bench of double the height.
Resistance Exercises
Resistance exercise devices are common in physical therapy and training settings. They range from complicated home gyms, e.g. BowFlex™, to simple polymer bands used in physical therapy to provide muscle training through a full range of motion.
Hand Weights
Relatively light hand weights are common in aerobic exercise settings. The addition of weight to aerobic exercises promotes muscle tone and increases the intensity of aerobic exertion. Common hand weights are metal or latex-rubber coated metal.
Increasingly, popular training regimens combine body weight exercises with balance, coordination and external resistance exercises. These cross-training regimens focus on physical attributes, including flexibility, coordination, and certain muscles, that traditional training or aerobics exercises often ignore. To accomplish this goal, these regimens often incorporate principles from more esoteric, but increasingly popular, fitness disciplines, such as yoga or Pilates.
For example, core training focuses on stabilizing the spine by strengthening core muscles of the torso, particularly the transversus abdominis. These muscles play a key role in balance, coordination, and mobility. While yoga and similar practices strengthen these muscles, they don't promote aerobic fitness or non-core muscular toning and development as much as traditional aerobics or strength training. Hence, core training regimens seek to combine traditional and core-strengthening exercises into integrated exercise routines.
Unfortunately, to perform exercises combining step aerobics, resistance, and hand weights, a consumer must purchase multiple devices as outlined above. Further, most such devices provide instructions only for their use alone. Consumers must either purchase separate exercise literature instructing them on a routine combining the three exercise types, or devise one on his or her (“her”) own.
The present invention provides a multi-functional exercise device that provides for aerobic, weight, and resistance exercises. The embodiments of the present invention include exercise platforms adapted for aiding a user in performing aerobic and core exercises, such as step aerobics, as well as resistance and weight exercises. Preferably, the top surface of the platforms is a soft material, which provides less stability than a hard plastic surface to encourage balance and core stability. The embodiments of the present invention include resistance devices and detachable weight modules that allow a user to perform resistance exercises against her body weight, and weight exercises using the weight of the device. Further, the exercise platforms of the present invention are stackable to allow for cooperative use of multiple platforms at once to perform a variety of different exercises. In the preferred embodiment of the present invention, a platform is packaged with at least two sets of weight modules having different weights, and at least one resistance device.
For example, some embodiments relate to a step exercise device. One class of such devices consistent with embodiments of the present invention comprises a rigid housing and a platform surface. The rigid housing includes a platform-supporting structure. The platform surface formed of an elastomeric material configured to deform under body weight, and coupled to the platform-supporting structure of the first housing. Preferably, the rigid housing is formed of a substantially rigid material such as thermoplastic.
Some embodiments relate to sets of exercise steps. For example, an exercise system comprises a first exercise step and a second exercise step. The first exercise step includes a first housing and a first platform surface. The first housing includes a first platform-supporting structure, a first upper lip and a first lower lip. The first platform surface is formed of an elastomeric material configured to deform under body weight, and coupled to the first platform-supporting structure of the first housing.
Similarly, the second housing includes a second platform-supporting structure, a second upper lip and a second lower lip. The second platform surface is formed of an elastomeric material configured to deform under body weight, and coupled to the second platform-supporting structure of the second housing.
In this system, the first upper lip is configured to mate with the second lower lip, and the second upper lip is configured to mate with the first lower lip, such that the first exercise step is able to be stably stacked upon the second exercise step and the second exercise step is able to be stably stacked upon the first exercise step. Preferably, the first and second housings are formed of a substantially rigid material such as thermoplastic.
Some other embodiments relate to multi-function exercise devices. For example, consistent with the present invention, a multifunctional exercise device comprises a body, a platform surface and a weight module. The body includes a platform-supporting structure, a weight-retaining structure, and an accessory interface. The platform surface is formed of a material that deforms under body weight, providing substantially less stability when stood upon than would a hard surface. It is coupled to the platform-supporting structure of the body. The weight module (preferably there are at least two) is removably coupled to the weight-retaining structure of the body. Preferably, the body is formed of a substantially rigid material such as thermoplastic.
Additional embodiments relate to exercise systems that aids a user in performing a plurality of exercise movements. For example, an exercise system comprises an exercise platform, a first weight module set, a second weight module set, and a resistance device set.
The exercise platform includes a surface formed from a resilient foam material, an accessory interface, and two or more weight-module interface features. The first weight module set comprises two weight modules each having a first weight and is configured to be removably coupled to the exercise platform via the weight-module interface features. The second weight module set also comprises two weight modules each having a second weight and is also configured to be removably coupled to the exercise platform via the weight-module interface features. The first weight and the second weight are different. The resistance device set comprises a first resistance device with a first resistance strength and configured to be removably coupled to the accessory interface.
In addition, the present invention relates to a method of performing an exercise routine. In some embodiments, such a method comprises performing a first set of step aerobics using a stack of a lower exercise platform and an upper exercise platform, wherein the upper exercise platform comprises removable handle features, removing the upper exercise platform by grasping its handle features, and performing a second set of step aerobics using the lower exercise platform while holding the upper exercise platform and using it as a weight.
Two broad embodiments of the present invention are discussed below with reference to the included drawings. The discussion of the specific components of these embodiments should not be taken to disclaim equivalents of the structures described herein.
Structure
The central component of the embodiments of the present invention is a platform configured with resistance devices (preferably detachable) and detachable weight modules. In both the first embodiment, discussed with reference to
The general features of a platform, e.g. 100′ of
The interlocking lip, e.g. 102 or 502, and interlocking lower edge, e.g. 106 or 506, permit stacking of one device with others of the same construction.
In the various embodiments of the present invention, resistance devices are configured for operation with a platform. A variety of configurations are consistent with the present invention, such as coupling a resistance device with the platform or simply positioning a resistance device for use with the platform. In some embodiments, as illustrated in
In other embodiments, such as those shown in
Preferably, a variety of resistance devices of different resistive force and sizes for insertion into and use with a single platform body, are provided along with such a body in accordance with the present invention. Alternatively, as shown with reference to
Though the illustrated embodiments include only resistance devices as possible accessories, the present invention also contemplates inserting an exercise pole or any other appropriate device through the accessory portal.
The two broad embodiments differ most markedly in how the weights and weight couplings are constructed. In a first embodiment, illustrated and discussed with reference to
In
The interface between the weight module, e.g. 150, and the platform, e.g. 100, relies on the coupling of the coupling features, e.g. 154, with the coupling points, e.g. 122, to retain the weight module within the indented feature, e.g. 120, of the platform.
In accordance with this first broad embodiment of the present invention, a variety of different weight modules containing differing amounts of weight, but all having the general form factor of the weight module 150 are provided with a platform body. Preferably, the weight modules of varying weights each have substantially the same size and shape. This can be accomplished by a variety of means, all of which alter the overall density of the weight module. Examples include forming a piece of lead or other very dense material within the weight module. Modules with differing weights could have accordingly different amounts of lead, but the same overall shape. However, in this embodiment it is also possible for the form factor to vary slightly. For example, the thickness of the weight module (distance between face with integrated handle and that with the coupling features) can vary without substantial loss of functionality.
In
The interface between the weight module, e.g. 550, and the platform, e.g. 500, relies on the coupling of the cylindrical body with the coupling points, e.g. 522, to retain the weight module within the cutout feature, e.g. 520, of the platform.
Preferably the interface between the coupling points and the weight module 750 retains the weight module within the cut-out region 720 with sufficient force to permit a user to move the assembled platform around by gripping the region of the weight module 750 that includes gripping features 752 to perform weight-based exercises (using the weight of the full platform including both weight modules and possibly the resilient feature). In addition, the interface preferably permits a user to easily remove the weight module from the platform by bracing one hand against the platform body and pulling the handle without using undue force.
The substantially cylindrical weight modules require tighter tolerances in their interface with the coupling points. Weight modules of varying heaviness designed for use with a single platform must be substantially the same size and shape in order to ensure that a user's hand can fit into the cutout region and grasp the gripping features of the weight module of an assembled platform. As mentioned above, one possible method for constructing such weights is to encase varying amounts of a very dense material, e.g. lead, within multiple modules of the same size.
In
The interface between the weight module, e.g. 1150, and the platform, e.g. 1100, relies on the coupling of the cylindrical ends with the coupling points, e.g. 1122, to retain the weight module within the cutout feature, e.g. 1120, of the platform. As shown in
Preferably the interface between the coupling points and the weight module 1050 retains the ends of the weight module within the cut-out region 1020 with sufficient force to permit a user to move the assembled platform around by gripping the handle 1052 to perform weight-based exercises (using the weight of the full platform including both weight modules and possibly the resilient feature). In addition, the interface preferably permits a user to easily remove the weight module from the platform by bracing one hand against the platform body and pulling the handle without using undue force.
The substantially cylindrical ends of these weight modules require tight tolerances in their interface with the coupling points. Weight modules of varying heaviness designed for use with a single platform must have ends of substantially the same size and shape in order to ensure that they can each fit into the platform. As mentioned above, one possible method for constructing such weights is to encase varying amounts of a very dense material, e.g. lead, within multiple modules of the same size.
Operation
In operation, the present invention provides multiple exercise functions in a single package. For even more options, the present invention allows for multiple platforms to combine, providing additional exercise functions.
The most basic function of the present invention is that of a simple platform for step aerobics or core exercises. However, unlike conventional steps, the platform, e.g. 100, includes an integrated durable gel surface or AeroMat™-type feature, e.g. 110, that provides a softer top surface to reduce potential impacts during aerobic exercise. In addition the top surface provides a soft and comfortable surface for a user kneeling, sitting, or laying on the platform. Furthermore, because the top surface is less stable than a hard bench surface, it requires a user's leg to stabilize itself, which promotes balance and core stability. In some embodiments, the durable gel surface includes propylene glycol and water.
As illustrated best in
In the preferred embodiment of the invention, illustrated in
In addition, other stretched configurations are possible. For example, as illustrated in
Notably, the accessory portals, e.g. 130, 530, are semi-elliptical in shape. This shape allows a relatively large handle, e.g. 140, 540, to be inserted through an accessory portal, while providing a constraint for a small-diameter exercise pole accessory. Specifically, a pole inserted through two accessory portals disposed on opposite walls of a platform will be limited in diameter to the diameter of the largest circle circumscribed by the semi-ellipse of the portal. On the other hand, handles of a larger diameter (equal to the length of the bottom of the semi ellipse) can be slid through along the bottom of the semi-elliptical accessory portal.
In addition, platforms according to the present invention permit weight training with a variety of weight levels. Specifically, as discussed above, weight modules in accordance with the present invention, e.g. 150, 550 or 1050, couple with platform bodies of the present invention, e.g. 100, 500 or 900, to form assembled platforms suitable for weight training uses, e.g. 200, 700, 1000. With the weight modules in place and serving as handles, a user is able to perform a variety of exercises by grasping one or more of the handles and moving the platform relative to her body.
In some embodiments, a platform in accordance with the present invention is provided along with a plurality of weight module sets, each of differing weights, and a plurality of resistance devices, each of differing resistance, to permit a user to perform a variety of exercises having varying difficulties. Of course, in other embodiments, notably those illustrated in
The interlocking edges of the platforms, and the fact that accessories and weight modules are interchangeable between platforms of the same construction, means that platforms according to the present invention have modular construction. By combining two or more platforms, more exercises are possible, and not simply step aerobics using a doubly high platform. A good example is the configuration illustrated in
The preferred embodiment of the present invention is as illustrated in
The present invention provides many fitness functions in a single, compact unit. Devices in accordance with the present invention can aid cardiovascular, muscular, and balance or core training. By combining a soft, elevated pad to aid in balance training, removable weights, and an ability to add other equipment (e.g. resistance devices) in a compact package, devices in accordance with the present invention provide a high level of functionality without taking up much space. Because of its compactness, a device in accordance with the present invention can be used by multiple persons in a single confined space, such as a yoga studio.
The present invention has been described in terms of specific embodiments incorporating details to facilitate the understanding of the principles of construction and operation of the invention. As such, references herein to specific embodiments and details thereof are not intended to limit the scope of the claims appended hereto. It will be apparent to those skilled in the art that modifications can be made to the embodiments chosen for illustration without departing from the spirit and scope of the invention.
This application claims benefit of priority under 35 U.S.C. Section 119(e) of the U.S. Provisional Patent Application Ser. No. 60/791,633, filed Apr. 12, 2006 and entitled “Multi-function exercise platform,” which is hereby incorporated by reference.
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Number | Date | Country | |
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