IP Library Granted Patent US 11,660,488
Granted Patent B2
US 11,660,488 · App. 17/174,312 · Granted May 30, 2023

Spring exercise system and method of exercising

Inventors: Charlyn Huss d'Anconia (Los Angeles, CA); Joel Raymond Fernandez (Los Angeles, CA)
A63B21/00043A63B21/4034A63B21/4035
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Quick Facts
Patent No.
US 11,660,488
App. No.
17/174,312
Granted
May 30, 2023
Kind
B2
Abstract

A spring exercise system and method of exercising that allows a user to perform a full body, low-impact style of exercise. The system utilizes a non-fixed extension spring that stretches and generates resistance when pulling and pressing forces are applied. The extension spring or springs are stretchable between multiple types of interchangeable grasp handles which may include any combination of a resilient loop handle with or without double “D” rings, a single rigid handle, and/or a resilient double loop handle. The spring may have a swiveling link or other mechanism/structure that joins the free ends of the spring to the grasp handles allowing a 360° rotation. The grasp handles are used with combinations of hands and feet, arms and legs to generate an extension of resistance that stretches, strengthens and tones muscles, enhances flexibility, core strength, joint stability, and muscle balance.

Claims (37)

1. A spring exercise system, comprising:

a spring defined by a pair of free ends, the spring operable to generate resistance to a pulling or pressing force when stretched;

a pair of grasp handles respectively attached to the pair of free ends of the spring, the pair of grasp handles being operable to enable grasping to hands, feet, or both of a user; and

a pair of swiveling connectors respectively joining the pair of free ends of the spring to the pair of grasp handles, the pair of swiveling connectors respectively enabling the pair of grasp handles to rotate up to 360 degrees;

whereby the resistance generated by the spring generates an extension of resistance;

wherein the pair of grasp handles are each resilient double loop handles;

wherein each resilient double loop handle comprises an inner loop and an outer loop, the inner loop being operable to enable grasping by the hand, the outer loop being operable to enable wrapping around a wrist of the user; and

wherein for each of the pair of grasp handles, a corresponding one of the pair of swiveling connectors connects the inner loop and the outer loop to a corresponding one of the pair of free ends of the spring to enable the inner loop and the outer loop to move independently.

2. The spring exercise system of claim 1 , wherein the spring is an extension spring.

3. The spring exercise system of claim 2 , wherein the extension spring is a non-fixed spring.

4. The spring exercise system of claim 1 , wherein the spring is defined by a hard resistance.

5. The spring exercise system of claim 1 , wherein the spring is defined by a medium resistance.

6. The spring exercise system of claim 1 , wherein the spring is defined by a soft resistance.

7. The spring exercise system of claim 1 , wherein the spring comprises a metal material.

8. The spring exercise system of claim 1 , wherein the outer loop of each resilient double loop handle has a greater resilience than that of the respective inner.

9. The spring exercise system of claim 1 , wherein the pair of grasp handles include at least one of the following materials: leather, fleece, neoprene, and cloth.

10. The spring exercise system of claim 1 , wherein the spring exercise system is operable to perform Pilates-styled exercises.

11. The spring exercise system of claim 1 , wherein the pair of grasp handles are configured to be grasped by the hands, or abutted against the feet, or both.

12. A spring exercise system, comprising:

an extension spring defined by a pair of free ends, the extension spring operable to generate resistance to a pulling or pressing force when stretched;

a pair of grasp handles respectively attached to the pair of free ends of the extension spring, the pair of grasp handles being operable to enable grasping to hands, feet, or both of a user; wherein the pair of grasp handles are each resilient double loop handles;

wherein each resilient double loop handle comprises an inner loop and an outer loop, the inner loop being operable to enable grasping by the hand, the outer loop being operable to enable wrapping around a wrist of the user, the outer loop of each resilient double loop handle having a greater resilience than that of the respective inner loop; and

a pair of swiveling metal chain links respectively joining the pair of free ends of the extension spring to the pair of grasp handles, the pair of swiveling metal chain links respectively enabling the pair of grasp handles to rotate up to 360 degrees,

whereby the resistance generated by the extension spring generates an extension of resistance;

wherein for each of the pair of grasp handles, a corresponding one of the pair of swiveling metal chain links connects the inner loop and the outer loop to a corresponding one of the pair of free ends of the extension spring to enable the inner loop and the outer loop to move independently.

13. The spring exercise system of claim 12 , wherein the extension spring is defined by one of: a hard resistance, a medium resistance, and a soft resistance.

14. The spring exercise system of claim 12 , wherein the pair of grasp handles are configured to be grasped by the hands, or abutted against the feet, or both.

15. A spring exercise method, comprising:

grasping, with a hand, a first grasp handle attached to one end of an extension spring;

abutting, with a foot, a second grasp handle attached to an opposing end of the extension spring;

extending an arm comprising the hand against a tension of the extension spring;

extending a leg comprising the foot against the tension of the extension spring;

causing the extension spring to stretch, whereby an extension of resistance is generated;

retracting the arm and the leg simultaneously; and

repeating multiple extensions and retractions of the arm and leg, whereby a low-impact exercise is performed;

wherein the first and second grasp handles are resilient double loop handles each comprising an inner loop and an outer loop;

wherein for each of the first and second grasp handles, a corresponding one of a pair of swiveling connectors connects the inner loop and the outer loop to a corresponding one of the one end and the opposing end of the extension spring to enable the inner loop and the outer loop to move independently.

Continuity (1)
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