IP Library › Granted Patent US 12,478,492
Granted Patent B2
US 12,478,492 · App. 17/405,959 · Granted Nov 25, 2025

Cable knee brace system

Inventor: Darren Fleming (Vista, CA)
Assignee: Mobius Technologies, Inc.
A61F5/0123A61F2005/0137A61F2005/0167A61F2005/0179
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Quick Facts
Patent No.
US 12,478,492
App. No.
17/405,959
Granted
Nov 25, 2025
Kind
B2
Abstract

It is the object of the invention to provide a knee bracing system that bolsters the body's natural ligaments to reduce the knees proneness to injury or re-injury. The invention is a cable system that acts much like the body's natural way that resists the forces that cause excessive joint movement and injury to the ACL and or MCL. As the leg travels through the range of motion the cables provide external hyper extension, bending, and rotation support preventing the tibia bone from moving forward (hyper extending) or twisting (lateral rotation) and or laterally bending with respect to the femur.

Claims (20)

1 . A knee brace, comprising:

a patellar plate;

a femoral plate configured to receive a first thigh portion of a leg, the femoral plate being rotationally coupled to the patellar plate;

a tibial plate configured to receive a shin portion of the leg, the semi-rigid tibial plate being rotationally coupled to the patellar plate;

a back plate capable of being located behind the leg and just above a knee joint, and wherein the back plate cooperates with the femoral plate and the tibial plate; and

a cable, wherein the cable travels around the back plate, the cable traveling around and over the top of the tibial plate, the cable crossing over itself at a crossover point at the back plate, and then the cable traveling to the top of the femoral plate, and wherein the cable is routed through a tensioning mechanism, and

wherein a femoral loop portion of the cable, which extends from the crossover point over the femoral plate and back to the cross-over point, and a tibial loop portion of the cable, which extends from the crossover point over the tibial plate and back to the cross-over point, are configured such that a lengthening of the tibial loop portion of the cable results in a corresponding shortening of the femoral loop portion of the cable, and further wherein a corresponding tightening force resulting from the shortening of the femoral loop portion of the cable provides a radial force along the tibial loop portion of the cable directed toward the center of the tibial loop portion.

2 . The knee brace of claim 1 wherein the femoral plate includes cable connectors.

3 . The knee brace of claim 1 further comprising padding located underneath at least one of the patellar, femoral, tibial and back plates.

4 . The knee brace of claim 1 wherein the routing of the cable includes the cable being attached to the tibial plate.

5 . The knee brace of claim 1 wherein the cable includes cable segments coupled together.

6 . The knee brace of claim 1 wherein the tightening force urges the back plate closer to the tibial plate and closer to the femoral plate, in use.

7 . The knee brace of claim 1 wherein the tensioning mechanism is configured to selectively tension the cable.

8 . The knee brace of claim 1 further comprising a locking device coupled to the femoral plate and including the tensioning mechanism.

9 . The knee brace of claim 1 , further comprising a cable guide plate having a channel and coupled to is a medial side of the patellar plate, the cable routed through the channel.

10 . The knee brace of claim 9 wherein the channel in the cable guide plate is a substantially straight channel.

11 . The knee brace of claim 9 wherein the channel in the cable guide plate is a curvilinear channel.

12 . The knee brace of claim 1 , further comprising a cable guide plate having a channel and coupled to a lateral side of the patellar plate, the cable routed through the channel.

13 . The knee brace of claim 12 wherein the channel in the cable guide plate is a substantially straight channel.

14 . The knee brace of claim 12 wherein the channel in the cable guide plate is a curvilinear channel.

Continuity (4)
Continuation 13867910 · Apr 22, 2013
Continuation 12987084 · Jan 8, 2011
Continuation In Part 11744213 · May 3, 2007
Related Publication 20210369481A1 · Dec 2, 2021
References Cited (6)
US 2270685A · Miller · 1942 [cited by examiner]
US 3785371A · Lewis · 1974 [cited by examiner]
US 4955369A · Bledsoe · 1990 [cited by examiner]
US 11123210B2 · Fleming · 2021 [cited by examiner]
US 20020052568A1 · Houser · 2002 [cited by examiner]
US 20060200057A1 · Sterling · 2006 [cited by examiner]