This invention relates to stabilization braces and more particularly to a support which stabilizes the ankle and forefoot of the user at a desired neutral position.
The supination of a foot combines inward rotation at the ankle, adduction of the hind foot inversion of the forefoot and medial arch elevation. Basically, supination produces a medial (inward) movement at the talocalcaneal (subtalus) joint known as inversion as well as similar movement between the hind foot (talus) and mid foot (navicular) bones. A foot that supinates appears to naturally favor the lateral region or outside edge of the foot. A certain amount of supination is normal during the toe off stage of running, i.e., when the heel first lifts off the ground until the end of the step. During excessive supination, the lateral structures of the foot tighten which may rupture or avulse portions of the lateral collateral ligaments resulting in a “rolling over” of the ankle or ankle sprain.
The pronation of a foot produces opposite foot behavior of the subtalar joint including adduction of the forefoot, eversion of the hind foot and dorsiflexicon. Basically, pronation produces a lateral (outward) movement of the foot at the subtalar joint known as eversion as well as similar hind foot and mid foot movements. A foot that pronates appears to naturally favor the inside or medial edge of the foot. The foot naturally pronates to absorb the shock resulting from the heel hitting the ground. Excessive pronation increases the stress on the inside/medial portion of the foot which may lead to various injuries such as arch strain, heel pain, inner ankle pain and shin splints.
Accordingly, it is desirable to preclude excessive pronation and/or supination of the ankle joint and foot. Thus, various devices have been proposed to prevent ankle and foot injuries by attempting to maintain the foot in a “neutral position”. Although assumably effective in their operation, such devices have failed to simultaneously provide the effective stabilization of the ankle and forefoot and in a neutral position. This desired stabilization, which resists excessive pronation and/or supination, positions the foot for a proper impact during walking, running and jumping rather than on the edge of the foot while in an excessive pronated or supinated position.
In response thereto, stabilization braces are presented for simultaneously maintaining the ankle and the forefoot at a neutral position while permitting natural movement through a full range of motion. A first brace presents an elastic, sock-like body positioned in a compressive fit about the ankle and foot of the wearer. A pair of torque straps is anchored to the body adjacent the distal (head) ends of the first and fifth metatarsals. Each strap is then wound about the forefoot, heel and ankle and anchored above the ankle joint so as to present countervailing forces along the foot and ankle joint complex. These forces resist excessive movement of the foot and ankle from their normal, neutral position without precluding normal ambulatory movement thereof. The brace design anatomically fits either foot about the heel, ankle and forefoot aspects thereof. A first closure system which allows the sock-like body to be easily slipped onto the foot. A second closure system maintains the circumferential integrity of the brace about the ankle joint region and presents anchor zones for the free ends of the bilateral torque straps. This structure allows the user to variably adjust the tension on these torque straps and thus the countervailing forces presented thereby.
A second brace similar in construction presents bifurcated ends at the end of each torque strap. These ends are respectively anchored adjacent the distal ends of the metatarsals, Achilles tendon and the heel. Each strap is then wound about the foot as above with the dual anchor zones enhancing the distribution of forces along the foot.
It is therefor a general object of the invention to provide a brace which simultaneously secures the ankle and the forefoot at a neutral position so as to resist excessive supination and pronation thereof.
Another object of the invention is to provide a brace, as aforesaid, which presents a pair of torque straps which present countervailing forces along the ankle and foot regions extending between the metatarsal heads and the superior region of the ankle joint complex to resist excessive pronation or supination.
A particular of this invention is to provide a brace, as aforesaid, which presents a pair of torque straps either anchored at its ends to a zone adjacent the metatarsals or to spaced-apart zones adjacent the metatarsals and heel of the wearer.
A further object of this invention is to provide a brace, as aforesaid, having a sock-like body which slips over the foot and provides a compression fit thereto between the metatarsal heads and the superior region of the ankle joint complex.
Another object of this invention is to provide a brace, as aforesaid, wherein a first closure system allows the brace to be used with variously sized feet while maintaining a compressive fit.
A still further object of this invention is to provide a brace, as aforesaid, having a second closure mechanism for providing circumferential forces about the ankle joint complex while presenting anchor points for the torque straps.
Another particular object of this invention is to provide a brace, as aforesaid, which presents a pattern to fit the ankle, heel and forefoot aspects of the foot of the wearer.
A more particular object of the invention is to provide a brace as aforesaid, which uses either heat seals along the seams of the brace pattern in lieu of stitching so as to enhance the fit of the brace and/or stitching.
Other objects and advantages of this invention will become apparent from the following description taken in connection with the accompanying drawings, wherein is set forth by way of illustration and example, a now preferred embodiment of this invention.
Turning more particularly to the drawings, the first brace 100 comprises a sock like body 110 made of an elastic material. The body 110 presents first 112 and second 114 integral sleeves made from joined blanks 112′, 114′. The body 110 provides a compression fit about the ankle joint complex and forefoot of the wearer. The forefoot is described as that region of the foot extending from the heel to approximate the distal/head ends of the first 2100 and fifth metatarsals 2500. The body 110 presents a first free edge 120 which circumscribes the foot at a superior position above the ankle joint complex. A second free edge 122 circumscribes the foot adjacent the distal ends/heads of the first 2100 and fifth 2500 metatarsals. It is preferred that this edge 122 not extend beyond such distal ends as it may present discomfort to the foot during flexion. As such, upon slipping the body 110 over the foot, the body 110 presents a compression fit between these edges 120, 122.
The initial extension of the foot through the opening presented by the free edge 120 is enhanced by a closure system 200. This closure system is presented by a U-shaped notch 210 which extends from the free edge 120. As such, first and second flaps 130, 140 are presented which allow the user to increase the initial opening presented by the upper free edge 120. As such, a foot of various sizes may be initially extended through this free edge 120 for ultimate extension of the phalanges 2300 through the downstream free edge 122. Aperture 190 allows for extension of the heel therethrough.
The closure system 200 presents a plurality of tabs 230 which are secured at one end along the longitudinal extent of the notch 210 on flap 130. These tabs have Velcro™ fastener material 232 on the inside thereof. Complementary Velcro™ material 234 is located along the extent of the notch 210 on the opposed flap 140. The engagement of each tab 230 fastener 232 to the complementary fastener 234 enables the user to adjust the compression of the sleeve 112 about the ankle joint region as the degree of overlap of these fasteners 232, 234 can be selectably adjusted. A tongue 260 is attached to the interior of the body portion 112 for extension along notch 210 so as to preclude the sleeve 112 and tabs 230 from directly contacting the user.
Further attached to the rear of body portion 112 adjacent edge 120 is a second closure system 300 which presents first 310 and second 312 straps made of an elastic and/or non-stretchable material. The straps 310, 312 present complementary Velcro™ fasteners 314, 316 at the free ends thereof. Accordingly, these flaps are wrapped circumferentially around the ankle joint complex and attached one to the other as shown in
The brace 100 further includes medial 500 and lateral 600 countervailing force straps which are anchored at a location 550 underneath the sleeve 114 and adjacent the free edge 122 (
Accordingly, the right foot being shown, the medial strap 500 is first wrapped so as to provide a force along the forefoot, heel and ankle regions of the wearer. As such, a first extension 510 of strap 500 extends from zone 550 and to the medial side of the foot, across the dorsal aspect of the forefoot and rearwardly towards the lateral side of the heel. A second extension of the strap 520 is wound underneath the heel as best shown in
Subsequently, a first extension 610 of the lateral strap 600 is wound about the dorsal aspect of the foot from the lateral side thereof, across the dorsal aspect of the forefoot and rearwardly towards the medial side of the heel (
Accordingly, the body 110 along with the closure systems 200, 300 provides compressive forces about the ankle and foot of the user. The medial 500 and lateral 600 straps present countervailing forces beginning at the metatarsal heads, along the forefoot and upward along the ankle joint complex. As previously discussed, pronation and supination of the foot respectively present opposed movements at the subtalar joint, hind foot and mid foot such that the foot favors the lateral region foot (supination) or the medial region (pronation) of the foot. Straps 500, 600 thus present countervailing forces in these regions so as to resist movement of the ankle and foot, inclusive of its underlying structures, from excessive pronation or supination. Thus, as the foot is held in a neutral position, the probability of the user landing on an excessively supinated or pronated foot during walking, jumping and/or running is reduced which reduces the probability of injury. The use of these counter force straps 500, 600 with or without the compressive fit offered by the body 110 and the compression mechanisms 200, 300 enhances the prophylactic advantages of the brace 100.
Alternatively, a second embodiment of brace 100a is shown in
Embodiment 100a is utilized in a manner as above described in embodiment 100. As such, the foot is initially extended through the opening 120 presented by the free edge of the body member 110 for ultimate extension of the metatarsal flanges 2300 through this free edge and the downstream free edge 122 with extension of the heel through aperture 190. First and second closure systems 200 and 300 function as above described.
The medial strap 500a is first wrapped so as to provide a force along the forefoot, heel and ankle regions of the wearer. As such, the free end of the strap 500a is first extended through the opening 602c presented by the bifurcated strap ends 602a, 602b of lateral strap 600a. The first extension 510a of strap 500a, comprising, in the main, ends 502a, 502b, extend from the two spaced anchor points on sleeve 114 to the medial side of the foot across the dorsal aspect of the forefoot and rearwardly towards the lateral side of the foot.
A second extension 520a of the strap comprising, in the main, the reduced lateral portion of strap 520a is wound underneath the foot and shown in phantom in
Strap 600a works on foot in an opposed manner to present countervailing forces on the foot. Thus, the first extension 610a of the lateral strap 600a including, in the main, the bifurcated straps 602a, 602b, is wound about the dorsal aspect of the foot from the lateral side thereof, across the dorsal aspect of the foot and rearwardly toward the medial side of the heel. A second strap extension 620a, i.e., primarily the reduced lateral portion, is then wound underneath the heel with a third extension 630a brought upwardly along the lateral side of a heel and ankle joint complex (
It is also noted that the bifurcated ends of one of the straps, e.g., 602a, 602b, present a guide 602c for the initial extension of the free end of the opposite strap, e.g., 500a, so as to direct the initial winding of the first strap, e.g., 500a, in a proper direction. Thus, the proper application of the countervailing force straps 500a, 600a about the foot of the wearer is assured.
It is noted that embodiment 100a is similar in construction to embodiment 100. Thus, identical numbers refer to identical elements as utilized between the two braces 100, 100a.
Although now preferred embodiments of this invention have been described herein, it is understood that such a description is not limited except as set forth in the claims and allowable functional equivalents thereof.
This application is a continuation-in-part of application Ser. No. 11/079,942, filed Mar. 15, 2005.
| Number | Date | Country | |
|---|---|---|---|
| Parent | 11079942 | Mar 2005 | US |
| Child | 11709424 | Feb 2007 | US |