IP Library › Granted Patent US 10,426,998
Granted Patent B1
US 10,426,998 · App. 15/674,114 · Granted Oct 1, 2019

Portable device for movement and resistance training of the lower extremities

Inventor: Laura Dawn McRee (Tucson, AZ)
Assignee: ARIZONA BOARD OF REGENTS ON BEHALF OF THE UNIVERSITY OF ARIZONA
A63B23/04A63B21/0407A63B24/0062A63B71/0622A63B2022/0097A63B2220/17A63B2220/56A63B2220/833A63B2225/50
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Quick Facts
Patent No.
US 10,426,998
App. No.
15/674,114
Filed
Aug 10, 2017
Granted
Oct 1, 2019
Kind
B1
Art Unit
3784
USPC
482/8
Abstract

A device for movement and resistance training of the lower extremities is disclosed which helps prevent muscle de-conditioning and deep vein thrombosis from lack of movement resulting in venous stasis and potential development of blood clot formation. The device includes footpads with spring resistance and sensors that register the number of times the pads are depressed and the amount of force applied by a user to the footpads. Data from use of the device may be stored and provided as feedback to the user so the user can monitor progress in using the device.

Claims (30)

1. A device for movement and resistance training of a lower extremity, said device being capable of electronically tracking use and level of resistance for a user, said device comprising:

(a) a support base ( 10 );

(b) a footpad ( 16 ), having an upper end ( 44 ) and a lower end ( 46 ), attached to the support base ( 10 ), wherein the footpad ( 16 ) has a curved shape to ensure full contact between a foot ( 32 ) of the user and the footpad ( 16 ) thus allowing the foot ( 32 ) of the user to apply an equal distribution of pressure to the footpad ( 16 ), wherein the curved shape of the footpad ( 16 ) is convex from the upper end ( 44 ) of the footpad ( 16 ) to the lower end ( 46 ) of the footpad ( 16 );

(c) a resistance mechanism, attached to the footpad ( 16 ), to resist pressure applied by the foot ( 32 ) of the user to the footpad ( 16 ), wherein the resistance mechanism comprises:

(i) a curved arm ( 18 ) having a first end and a second end, wherein the first end is attached near the upper end ( 44 ) of the footpad ( 16 ), and wherein the curved arm ( 18 ) curves toward the lower end ( 46 ) of the footpad ( 16 );

(ii) a spring hinge mounted to a bracket ( 22 ) secured to the support base ( 10 ), wherein the second end of the curved arm is attached to the bracket ( 22 ) via the spring hinge, wherein a resistance of the spring hinge determines a resistance of the footpad ( 16 ), wherein the bracket ( 22 ) provides a pivot point configured such that the foot ( 32 ) of the user moves about pivot point wherein the pivot point is between the upper end ( 44 ) and the lower end ( 46 ) of the footpad ( 16 ); and

(iii) a brace ( 36 ) directly coupling the curved arm ( 18 ) to the support base ( 10 ), wherein a placement of the brace along the curved arm ( 18 ) determines a range of motion of the footpad ( 16 ),

wherein the resistance mechanism provides an equal distribution of resistance to the footpad ( 16 ) for a more effective training of the lower extremity; and

(d) one or more sensors ( 24 , 26 ) attached to the footpad ( 16 ), wherein the one or more sensors ( 24 , 26 ) are configured to detect an amount of pressure applied by the foot ( 32 ) of the user and a number of presses by the foot ( 32 ) of the user.

2. The device of claim 1 , further comprising a first wall supporting the footpad and a second wall perpendicular to the first wall, the second wall configured to support a leg of the user.

3. The device of claim 1 , wherein the first end of the curved arm is disposed between the upper end ( 44 ) of the footpad ( 16 ) and a middle portion of the footpad ( 16 ).

4. The device of claim 1 , wherein the curved shape of the footpad ( 16 ) is convex or straight from a leftmost border ( 40 ) of the footpad ( 16 ) to a rightmost border ( 42 ) of the footpad ( 16 ).

5. The device of claim 1 , wherein the one or more sensors includes a pressure sensor.

6. The device of claim 1 further comprising a data output module for providing the amount of pressure applied by the foot ( 32 ) of the user and the number of presses by the foot ( 32 ) of the user to an external computing device ( 30 ) for display, thereby providing motivational visual incentives to the user.

7. The device of claim 6 , wherein the data output module includes a wireless transmitter.

8. A device for movement and resistance training of a lower extremity, said device being capable of electronically tracking use and level of resistance for a user, said device comprising:

(a) a support base ( 10 );

(b) a footpad ( 16 ), having an upper end ( 44 ) and a lower end ( 46 ), attached to the support base ( 10 ), wherein the footpad ( 16 ) has a curved shape to ensure full contact between a foot ( 32 ) of the user and the footpad ( 16 ) thus allowing the foot ( 32 ) of the user to apply an equal distribution of pressure to the footpad ( 16 ), wherein the curved shape of the footpad ( 16 ) is convex from the upper end ( 44 ) of the footpad ( 16 ) to the lower end ( 46 ) of the footpad ( 16 ); and

(c) a resistance mechanism, attached to the footpad ( 16 ), to resist pressure applied by a foot ( 32 ) of the user to the footpad ( 16 ), wherein the resistance mechanism comprises:

(i) a curved arm ( 18 ) having a first end and a second end, wherein the first end is attached near the upper end ( 44 ) of the footpad ( 16 ), and wherein the curved arm ( 18 ) curves toward the lower end ( 46 ) of the footpad ( 16 ); and

(ii) a spring hinge mounted to a bracket ( 22 ) secured to the support base ( 10 ), wherein the second end of the curved arm is attached to the bracket ( 22 ) via the spring hinge, wherein the bracket ( 22 ) provides a pivot point configured such that the foot ( 32 ) of the user moves about pivot point, wherein the pivot point is between the upper end ( 44 ) and the lower end ( 46 ) of the footpad ( 16 );

wherein the resistance mechanism provides an equal distribution of resistance to the footpad ( 16 ) for a more effective training of the lower extremity.

9. The device of claim 8 , wherein the first end of the curved arm is disposed between the upper end ( 44 ) of the footpad ( 16 ) and a middle portion of the footpad ( 16 ).

10. The device of claim 8 further comprising a brace ( 36 ) directly coupling the curved arm ( 18 ) to the support base ( 10 ), wherein a placement of the brace along the curved arm ( 18 ) determines a range of motion of the footpad ( 16 ).

11. The device of claim 8 , wherein a resistance of the spring hinge determines a resistance of the footpad ( 16 ).

12. The device of claim 8 further comprising one or more sensors ( 24 , 26 ) attached to the footpad ( 16 ), the one or more sensors ( 24 , 26 ) configured to detect an amount of pressure applied by the foot ( 32 ) of the user and a number of presses by the foot ( 32 ) of the user.

13. The device of claim 12 , wherein the one or more sensors ( 24 , 26 ) includes a pressure sensor.

14. The device of claim 13 further comprising a data output module for providing the amount of pressure applied by the foot ( 32 ) of the user and the number of presses by the foot ( 32 ) of the user to an external computing device ( 30 ) for display, thereby providing motivational visual incentives to the user.

15. The device of claim 14 , wherein the data output module includes a wireless transmitter.

16. The device of claim 8 further comprising a first wall supporting the footpad ( 16 ) and a second wall perpendicular to the first wall, the second wall configured to support a leg of the user.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2017
From: MCREE, LAURA DAWN
To: ARIZONA BOARD OF REGENTS ON BEHALF OF THE UNIVERSITY OF ARIZONA
Reel/Frame 043283/0655 →
Continuity (2)
Continuation In Part 14694398 · Apr 23, 2015
Provisional Application 61984643 · Apr 25, 2014
Cited By (3)
US 12,186,248 US 12,274,652 US 12,714,905