The present invention relates to a training device for improving abdominal muscle control.
Abdominal muscles, together with the back muscles, provide support for the trunk of a human body and enable its movement in different directions. These muscles are layered, and especially the muscles closer to the spine, the so-called inner abdominal muscles (the transverse abdominal muscle and the internal oblique muscles), affect the posture and stability of the trunk as well as the appropriate placement of internal organs.
Well-trained inner abdominal muscles are known for promoting trunk control and thus back health. However, they are also important in almost any type of physical activity, ranging from ballet dancing to racket sports, such as tennis. In addition to their strength, also the ability to control and be aware of the muscles is essential for sports performance. Focused force production during specified stages of movement determines how the power produced by the body is conveyed to the actual object to be moved by that power. Inner abdominal muscle control also adds to the balance of the movement, thus helping the athlete to rapidly proceed to the next movement. Further, improved inner abdominal muscle control can help rehabilitate patients and elderly whose muscle strength has declined for some reason. Improved trunk control can prevent them from falling or developing body misalignments that could lead to further injuries or functional disorders.
In the patent document WO 2013038129, an exercise device is disclosed comprising an elongated handle and, at the distal end of the handle, at least one roller. The roller is configured to be in contact with the surface along which the exercise device is arranged to move. The axis of the portion of the handle supporting the roller is offset to the axis of the part of the handle which is held by the user.
There are also other types of training devices targeted to exercise abdominal muscles. However, typical for all the solutions is that they focus on the heaviness of the exercise motion due to some sort of a resistance to the movement. Since the muscles are required to work throughout the exercise motion, these solutions do not train the user to focus on the timing and control of the inner abdominal muscle activity, but center on the increase of muscle strength.
An object of the present invention is to provide a new type of a training device for inner abdominal muscles that focuses on the timing, awareness and control of the inner abdominal muscle activity.
By a mass with an inertia suitable for physical training is herein meant a mass that resists the change of the direction of movement sufficiently to trigger a response in human muscles that is perceptible to the individual inducing the said change of the said mass. Such a mass usually varies in the range from a few kilograms to tens of kilograms depending on the physical characteristics and training goals of the user as well as on the mechanical configuration of the mass in a training device.
By a user herein is meant an individual using the training device according to the present disclosure.
By an appropriate training position herein is meant a balanced stance in which hips and shoulders are vertically aligned, head is straight and eyes look forward. Elbows are bent to an angle that is larger than 90 degrees (i.e. the angle between brachium and forearm is larger than 90 degrees), but the elbow should remain bent. Ideally the angle of the elbow is approximately 100 degrees. The hands of the user grip the training device and the wrists are substantially straight. The upper arm is vertically aligned with the trunk of the body or the elbows are slightly in front of the body.
Although for most users and training needs a standing position is suitable, the embodiments according to the present disclosure can also be modified to accommodate training in a sitting position. This would enable also users suffering from weakness, injuries or dysfunction of lower limbs to exercise with the training device according to the present disclosure. Such modification can be accomplished by, for example, providing a seat with height adjustment means, or means to fasten a wheelchair, in the training device.
By an exercise movement herein is meant a body movement, starting at the appropriate training position, in which the arms are rotated to one side and the head, the eyes and shoulders remain stationary. Also the body from hip downwards remains stationary. The exercise movement is continued for about 60 degrees to the side from a point that is in front of the user. The direction of movement is then changed through tensioning the abdominal muscles. At this point the focus of the user should be in the inner abdominal muscles. The exercise movement to the other direction is continued to the corresponding point on the other side of the user and the direction of the movement is changed again. The sideways movement is repeated several times, the number of times depending on the characteristics of the user. The user should at all times remain in control of the movement and aim at a steady movement instead of swinging or throwing motions. Unnecessary tensioning of the arms and hands should be avoided and the exercise movement should be performed with as little input as possible from other muscle groups than the inner abdominal muscles.
By wheels or gliding or rolling means herein is meant any structure which allows a low-resistance weight movement to be achieved through an exercise movement so, that the force required to change the direction of the mass to be moved is larger and clearly differentiable by the user from the force required to continue the exercise movement to the original direction. The restriction of the exercise movement sector and the change in the direction of the exercise movement are controlled by the user.
The training device for training abdominal muscles presented here is characterized by comprising an arm, a handle for holding with two hands, the handle being attached to or forming an integral part of the arm, further characterized in that the training device comprises a platform attached to or forming and integral part of the arm and configured to carry a mass, and wheels or gliding or rolling means attached to the platform for enabling movement of the training device on a surface by the user when the user is holding the handle.
In a second aspect there is disclosed a training device for training abdominal muscles comprising an arm, a handle for holding with two hands, the handle being attached to or forming an integral part of the arm, characterized in that the training device comprises a stationary training pedestal for the user to stand on, and the arm being moveably attached to the training pedestal for enabling an arch-like movement of the handle in relation to the training pedestal when the user is holding and moving the handle.
In a third aspect there is disclosed a training device for training abdominal muscles comprising an arm, a handle for holding with two hands, the handle being attached to or forming an integral part of the arm, characterized in that the training device comprises a base part to which the handle is connected, and a rotatable training pedestal for a user to stand on, the training pedestal being connected to the base part for rotation in relation to the base part.
In a fourth aspect there is disclosed a training device for training abdominal muscles comprising an arm, a handle for holding with two hands, the handle being attached to or forming an integral part of the arm, characterized in that the training device comprises an arch-shaped track or rails to which the arm is moveably attached to allow an arch-like movement of the of the handle along the track or rails, and a mass attached to the arm.
The training device according to the present disclosure offers at least one of the following advantages over prior art:
In one embodiment of the first aspect of the current disclosure, the mass is either an integral part of the platform or it can be adjusted through detachable weights.
In one embodiment of the first aspect of the current disclosure, the arm is a straight piece and at an angle so that the height of the training device and the radius of the weight movement are adjusted simultaneously.
In one embodiment of the first aspect of the current disclosure, the training device is configured to be moveable to any direction.
In one embodiment of the first aspect of the current disclosure, the training device is configured to be used on a flat surface.
In one embodiment of the first aspect of the current disclosure, there are at least three wheels supporting the platform.
In one embodiment of the second aspect of the current disclosure, the training device comprises a platform configured to carry a mass and attached to the arm.
In one embodiment of the second aspect of the current disclosure, the training device comprises a platform configured to carry a mass and to be a flywheel rotated by a gearwheel through a cogged belt, and the gearwheel is configured to be turned by the handle.
In one embodiment of the second aspect of the current disclosure, the training device comprises a pair of weights configured to be reciprocally moveable by the handle connected to the weights through a wire, rope or a belt.
In one embodiment of the third aspect of the current disclosure, the training device comprises weights mounted on the training pedestal.
In one embodiment of the third aspect of the current disclosure, the training device comprises a platform configured to carry a mass and to be a flywheel rotated by the rotation of training pedestal through a cogged belt.
In one embodiment of the third aspect of the current disclosure, the training device comprises a pair of weights configured to be reciprocally moveable by the rotation of the training pedestal connected to the weights through a wire, rope or a belt.
In one embodiment of the fourth aspect of the current disclosure, the mass is carried by a platform attached to the arm.
In one embodiment of the fourth aspect of the current disclosure, the training device comprises a pair of weights configured to be reciprocally moveable by the handle connected to the weights through a wire, rope or a belt.
In a further embodiment, the training device is configured to allow variation in the radius of the arch-like movement according to user anatomy.
In yet another embodiment, the arm comprises height adjustment means.
In yet another embodiment, the arm has a joint for additional adjustment of the arm and the handle.
The accompanying drawings, which are included to provide a further understanding of the invention and constitute a part of this specification, illustrate embodiments of the invention and together with the description help to explain the principles of the invention. In the drawings:
The training device 1 comprises a handle 2 to be held with both hands. In the embodiment of
The part of the handle 2 to be held can be horizontal, vertical or angled in between these two extremes, or the angle can be adjustable with a joint. The width of the part of the handle 2 to be held can vary to accommodate users of different body structures. In an optimal situation, the user grips the handle 2 at a width that is approximately the width of the user's shoulders. The width of the handle 2 can thus vary from approximately 35 cm to 95 cm and is, for an average-sized user, approximately 65 cm.
The training device 1 of
The training device 1 of
The angle of the arm 3 relative to the platform 5 and to the surface on which the training device 1 is moved can be for example 60 degrees, as in the embodiment of
In the embodiment of
In
The training device 1 according to the embodiment of
The material for the training device 1 can be selected from many different alternatives known in the art for building training devices. Steel, for example, would have the benefit of being heavy enough in itself for some users. Lighter materials, such as aluminum, composite materials or wood, would allow a wider range of exercise weights in the lower end of the weight range. Some parts could be manufactured from inexpensive plastic materials as well.
The numbering adopted in
The rails 10 can have any construction with low enough frictional resistance to movement and their connection to the platform 5 can have bearings, many types of which are known in the art. In
Human body movement rarely follows exact geometrical patterns. Therefore, the training device 1 as presented in this embodiment, can have different means to accommodate the deviations of the exercise movement of the user from Ube exact circular arch defined by the rails 10. These means can be incorporated for example in the bearing of the rails 10, in the upper part of the arm 3 above the joint 9 or in the handle 2. The user can thus follow the natural movement of his/her body without being constrained by the training device 1 to an artificially geometrical movement path.
Safety features, such as stoppers for the platform 5 are omitted from
The stand 15 in
In
The platform 5, weight attachment means 6 and the weights 7 move with the training pedestal 15b and, together with the weight of the user, provide the mass to be moved in the exercise. The heaviness of the exercise movement can be adjusted through weights 7 of different mass, through changing the distance of the weights 7 from the hinge 14, or the combination of both alternatives.
The above embodiments are to be understood as illustrative examples of the invention. Further embodiments of the invention are envisaged. It is to be understood that any feature described in relation to any one embodiment may be used alone, or in combination with other features described, and may also be used in combination with one or more features of any other of the embodiments, or any combination of any other of the embodiments. Furthermore, equivalents and modifications not described above may also be employed without departing from the scope of the invention, which is defined in the accompanying claims.
Filing Document | Filing Date | Country | Kind |
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PCT/FI2013/050742 | 7/10/2013 | WO | 00 |
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WO2015/004308 | 1/15/2015 | WO | A |
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