GB2139896A - Knee brace - Google Patents

Knee brace Download PDF

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Publication number
GB2139896A
GB2139896A GB08313519A GB8313519A GB2139896A GB 2139896 A GB2139896 A GB 2139896A GB 08313519 A GB08313519 A GB 08313519A GB 8313519 A GB8313519 A GB 8313519A GB 2139896 A GB2139896 A GB 2139896A
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United Kingdom
Prior art keywords
pair
brace
knee
pads
roller
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
GB08313519A
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GB2139896B (en
GB8313519D0 (en
Inventor
Snr Arthur C Peckham
Rolf A Faste
Arthur C Peckham
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Arthur Charles Peckham
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Arthur Charles Peckham
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Filing date
Publication date
Application filed by Arthur Charles Peckham filed Critical Arthur Charles Peckham
Publication of GB8313519D0 publication Critical patent/GB8313519D0/en
Publication of GB2139896A publication Critical patent/GB2139896A/en
Application granted granted Critical
Publication of GB2139896B publication Critical patent/GB2139896B/en
Expired legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F5/00Orthopaedic methods or devices for non-surgical treatment of bones or joints; Nursing devices; Anti-rape devices
    • A61F5/01Orthopaedic devices, e.g. splints, casts or braces
    • A61F5/0102Orthopaedic devices, e.g. splints, casts or braces specially adapted for correcting deformities of the limbs or for supporting them; Ortheses, e.g. with articulations
    • A61F5/0123Orthopaedic devices, e.g. splints, casts or braces specially adapted for correcting deformities of the limbs or for supporting them; Ortheses, e.g. with articulations for the knees

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  • Health & Medical Sciences (AREA)
  • Nursing (AREA)
  • Orthopedic Medicine & Surgery (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Vascular Medicine (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Orthopedics, Nursing, And Contraception (AREA)
  • Prostheses (AREA)

Abstract

A knee brace comprises two portions, the upper of which includes a pair of pressure pads 14 for engagement with the leg above the knee which are held in position by a strap 69 and are secured to respective plates 22. The lower portion includes pressure pads 15 for engagement with the leg below the knee which are held in position by a strap 80 and are secured to respective plates 27. After 42 positioning, inward pressure on the leg is applied by a toggle mechanism 82. The two portions of the brace are connected together by members 16 and are able to flex in relation to one another in such a way as to simulate the rolling and sliding movement of the human knee. This flexing is accomplished by a mechanism on each side which includes a roller 48 fitting in a recess in a pad 47 secured to a lower plate 27 and which engages an inclined surface on a bearing pad 46 secured to the corresponding upper plate 22. A pair of flexible inter-connecting cables pass around part of the periphery of the roller 48 and are anchored at their ends to respective plates 22 and 27. <IMAGE>

Description

SPECIFICATION Knee brace This invention relates generally to orthopaedic braces and more particularly to a novel knee brace construction which permits the flexing movement of the brace to closely simulate the rolling and sliding movement of the human knee. At the same time, the brace is constructed so that when worn it exerts pressure above and below the wearer's knee in the most desirable manner from an orthopaedic standpoint.
There is an extensive amount of prior art directed to orthopaedic braces and particularly knee braces, including U.S. Patent no: 3,194,233. Most of the knee braces that have been developed heretofore have a simple pivot connection between the upper and lower portions of the brace but it has become widely accepted in recent years that the actual bending movement of the human knee is a combination rolling and sliding movement. Because of this, many of the braces with simple pivot type hinges have caused discomfort to the wearers by restricting movement or by binding and chafing.
Although the description makes particular reference to a knee brace, it is not intended that the invention be restricted to a brace for the knee as it will be apparent from the description to follow that the construction of the brace enables it to be advantageously used with other joints having a bending motion similar to the knee.
Ideally, a knee brace should prevent unphysiologic motion in a normal knee and also prevent unphysiologic motion in an unstable knee, thus performing both protective and corrective functions. To achieve these goals, the brace should cancel or prevent abnormal knee motion, duplicate normal knee motion, provide rigid fixation and to do no damage to the tissue. Stated another way, the brace should be as rigid as practicable while at the same time simulating normal knee motion. Other desirable features of a knee brace are to allow full range of motion, be light-weight and durable, be painless in application and be adaptable to many sizes.
A knee brace in accordance with the invention comprises a pair of upper and a pair of lower pressure pads for respectively engaging the wearer's limbs above and below the joint, means connecting the upper and lower pads together for relative movement therebetween, the connecting means including co-acting roller and inclined plane means arranged to permit both rotational and translational movement between the upper and lower pads, the connecting means further including a pair of flexible cables each of which engages the roller means, one end of each cable being operably connected to an upper pressure pad and the other end of each cable being operably connected to a lower pressure pad, and a toggle mechanism connected to the pad connecting means and operable to cause the upper and lower pads to exert pressure on the wearer's limbs above and below the joint, the toggle means including a pair of co-acting toggle arms that together extend approximately half way around the joint. Such a brace closely simulates the normal rolling and sliding movement of the knee, provides the desired rigidity and also includes the other desirable features mentioned above.
The roller and inclined plane mechanism co-acting with the flexible inter-connecting cables to give movement of the roller which is both rotational and translational, provides the simulated knee movement. The cables provide for movement that is smooth and also serve to connect the upper and lower portions of the brace together. The roller and plane mechanism is located so that when the brace is worn the mechanism is above the point of contact of the femur and tibia as it must be to properly simulate the movement of the knee during bending.
The toggle mechanism operates when the brace is worn to cause the upper and lower pressure pads to exert inward pressure on the wearer's leg above and below the knee. The toggle mechanism and pads thus co-act to provide the desired rigidity, and the inward pad pressure also functions to force the femur and tibia towards one another by means of vector forces as will be explained in more detail hereinafter.
An example of knee brace in accordance with the invention will now be described in more detail, with reference to the accompanying drawings, in which: Figure 1 is a front elevation of the brace with parts broken away and shown in section to better illustrate the details of construction; Figure 2 is a left hand side elevation of the brace of Figure 1; Figure 3 is a top plan view of the brace of Figure 1 with certain parts omitted for clarity; Figure 4 is a horizontal section through a strap latch member taken on line 4 - 4 of Figure 2; Figure 5 is a simplified diagram illustrating the rolling and sliding movement of a human knee as it bends; Figure 6 is a diagram illustrating the resultant forces of pressure pad pressures on the leg bones; Figure 7 is a vertical section taken on line 7 - 7 of Figure 1, the section showing details of a hinge mechanism;; Figure 7A is a simplified view corresponding to Figure 7 illustrating the location of the hinge mechanism relative to the contact area of the femur and tibia, Figure 8 is a view corresponding to Figure 7 but showing the parts rotated with respect to one another; Figure 9 is a fragmentary front elevation of a toggle mechanism showing the toggle latch in open position; Figure 10 is a view corresponding to Figure 9 but showing the toggle latch in closed position; Figure 11 is a transverse section through the latch taken on line 11 - 11 of Figure 9; Figure 12 is an exploded view of the right hand side of the brace, with straps omitted, looking from outside the brace at the rear thereof; Figure 13 is an enlarged cross section through a roller of the mechanism shown in Figures 7 and 8; and Figure 14 is a longitudinal cross section through the toggle latch mechanism taken on line 14 - 14 of Figure 10.
Referring particularly to Figures 1 to 3, the knee brace comprises essentially a pair of upper pressure pads 14 - 14, a pair of lower pressure pads 15 - 15 and means connecting the upper and lower pads together for relative movement therebetween, the connecting means being generally indicated at 16 16. Each upper pad 14 comprises a rigid pad holder 17, preferably of plastic, and a flexible pad 18 that is preferably filled with a commercially available material marketed under the name Hanson Flowlite (registered trade mark). Similarly, each lower pad 15 has a rigid pad holder 20 and flexible pad 21.
A generally rectangular plate 22 is secured as by screws 24 to the outside of the pad holder 17 of each upper pad 14. These plates extend downwardly for a distance below the pads as best shown in Figure 1, and each plate is offset inwardly at its approximate mid-point as best shown at 25. The lower portion of each plate 22 is wider than the upper portion and is rounded to a generally circular shape as shown at 26 in Figures 7 and 12.
A pair of plates 27, similar in shape to plates 22, are respectively secured to the lower pressure pads 15 as by screws 28, Figures 1, 2 and 7. Plates 27 extend upwardly into spaced, confronting relation with the inwardly offset portions of plates 22 as shown in Figure 1.
Figure 1 is a front elevation of a brace forthe right knee. Accordingly, the upper and lower pressure pads 14, 15 on the left side of Figure 1 engage the outside of the wearer's leg and pads 14, 15 on the right side engage the inside. In this connection it will be seen that the pads 14, 15 on the right or inside are spaced from their respective plates 22 and 27 by posts 30 and 31 through which the connecting screws 24 and 28 respectively pass. This arrangement is necessary in that it allows the pad positions to substantially conform to the taper of the leg while enabling the two sets of confronting plates 22, 27 on the opposite sides of the brace to be parallel to each other as is necessary for proper operation of the plate connecting means. The connecting means are positioned between the plates and are to be presently described.
The lower pressure pads 15 are rigidly secured to their respective plates 27 by upper and lower posts 31 and screws 28, Figures 1 and 2. The upper pressure pads 14 are connected to their respective plates 22 adjacent the upper edges of the pads only, resulting in connections that are more flexible. This permits a fine adjustment of the angular position of the pads to conform closely to the wearer's leg.
The upper pad adjustment is carried out by a generally U-shaped spring member32 and an adjustmemt screw 34, Figure 1, for each pad. Each spring member is secured at one end to plate 22 as by a screw 35 and the opposite end of the spring is free and bears against the outside ofthe pad 14as shown. The inner end of the adjustment screw 34 normally engages the free end of the spring member and the position of the pad is adjusted by moving the screw in or out. The adjustment screw is supported by a block 36, Figures 1,2,7 and 12, connected as by screws 37 to a 90 flap or flange 38 on plate 22 and a similar flap 40 on an outer plate 41.The plate 41 on each side of the brace, Figure 1, is connected as by screws 42 to plate 22, there being a bearing plate 44 of Teflon (registered trade mark) or the like between plates 22 and 41.
The connecting members ~6, Figures 1, 2 and 7, for the upper and lower pressure pads includes the previously described upper and lower plates 22,27 and a roller and inclined plane mechanism that co-acts with flexible inter-connecting cables. The roller-inclined plane mechanism and cables are located between the confronting portions of plates 22,27 on each side of the brace and permit the upper and lower portions of the brace to move relative to one another with a rotational and translational movement that closely simulates the bending move ment of the human knee. Since the roller-inclined plane mechanism is the same for each side of the brace, only one such mechanism will be described.
Referring to Figures 1,7 and 12, the mechanism includes a bearing pad 46 secured to the upper plate 22 and a bearing pad 47 secured to the lower plate 27, both bearing pads being made of a plastic material such as Teflon (registered trade mark). A roller 48 is positioned between the bearing plates, the roller being rotatably connected to plate 27 only as by a screw 50. Roller 48 is received with a clearance in an arcuate recess 51, Figure 7, in bearing pad 47 and engages a straight, inclined surface 52 on bearing pad 46. As used herein, "inclined" is intended to mean an obliquely disposed surface or one inclined to the horizontal. In the embodiment disclosed, the surface or plane 52 is disposed at an angle of approximately 30 to the horizontal, and its location is important to the proper operation of the knee brace.
A pair of flexible cables 54 and 55 of constant length co-act with the roller 48 and inclined surface 52, Figures 7 and 12, the cables engaging a portion of the periphery of the roller as shown in Figure 7, and being received in a peripheral recess 56, Figures 1 and 13. Cable 54 is anchored at one end 57, Figure 7, to the lower bearing pad 47 and at its other end to a screw type tension adjustment 58 adjacent the upper bearing pad, see also Figure 12. Cable 55 is anchored at one end 60 to bearing pad 47 and at its other end to a tension adjustment 61 adjacent the upper bearing pad. The tension adjustments 58 and 61 are respectively secured to flaps or flanges 62 and 63 on the upper bearing pad plate 22, the flaps being integral with the plate and disposed at right angles thereto, Figure 12.
Cables 54, 55 control the relative movement between roller 48 and the inclined surface 52 on bearing pad 46; the cables also operate to hold the upper and lower plates 22,27 together and thus the upper and lower pressure pads 14, 15. When plate 22 moves relative to plate 27 or vice versa, the roller 48 rotates about its centre and at the same time the centre of the roller itself moves linearly because the entire roller moves along the inclined surface 52. The linear movement of the centre of the roller parallel to the inclined surface is referred to herein as translational movement by which is meant the roller moves along a defined path. Stated another way, roller 48 rolls without slippage along the path defined by the inclined surface 52.This can be best seen from a comparison of Figures 7 and 8 wherein upper plate 22 has moved in a clockwise direction relative to lower plate 27 as when the wearer of the brace moves from a standing position (Figure 7) to sitting or squatting position (Figure 8).
From comparing Figure 8 with Figure 7, it can be seen that pressure pad 46 with its inclined surface 52 has been rotated through approximately 1150 in the clockwise direction and that the position of the roller 48 relative to inclined surface 52 has changed. Thus, in Figure 7 the roller is positioned near the upper end of the incline, whereas in Figure 8 it is positioned adjacent the lower end. The movement just described simulates the bending movement of the human knee as shown diagrammatically in Figure 5.
The motion or kinematic action of the knee as it bends was analysed by Drs. Frankel and Burstein in their book Orthopaedic Biomechanics (Lea and Febi ger, 1970, pages 138 and 139), and Figure 5 is derived from this book. In Figure 5, as the femur 64 moves clockwise from its solid line to its phantom line position, the "instant centres" or pivot points for both the femur and tibia 65 change, the instant centres for the tibia being indicated by the dots 66 and the instant centres for the femur being indicated by an almost straight line 67. From this diagram it can be seen that the line 67 for the femur appears to roll clockwise around and along the arcuate path outlined by the dots 66 as the femur 64 moves clockwise.In the rotating and translating mechanism of the invention, the inclined surface 52 corresponds to line 67 and the path of the contact points of the roller 48 corresponds to the arcuate path formed by dots 66. In this connection, it should be noted that the inclined surface 52 could be contoured slightly to conform to the path of movement of the knee of a particular individual in which case the brace would be completely customised.
From Figure Sit can be seen that the path of movement of a stable, normal knee is located above the point of contact or contact area of the femur and tibia. Accordingly, in orderto properly simulate the movement of the knee, it is very important that the roller-inclined plane mechanism of the invention be correspondingly located when the brace is worn.
This is best shown in Figure 7A where it can be seen that the roller 48 and inclined surface 52 are located above the contact area of the femur 64 and tibia 65 when the brace is properly positioned on the leg. It is to be noted that the brace will naturally tend to self-locate in the proper position during fitting.
The upper pressure pads 14 are encircled by a leather or fabric strap 69, Figures 1 to 3, the strap being connected to the right hand plate 22 by a metal strip 70 and to the left hand plate 22 as by rivets 71, Figure 2. The strap 69 has a buckle 72 at the front of the brace for providing an approximate length adjustment. The strap also has a free end 74 with a heavy wire loop 75 that is engageable with a quick opening and closing over-centre latch 76. The latch 76 is connected as by a screw or rivet 77, Figure 1, to the left hand plate 22 and has a series of notches 78, Figures 3 and 4, for providing a fine adjustment for the strap length.
The lower pressure pads 15 are encircled by a leather or fabric strap 80 having essentially the same construction as strap 69 and connected in the same manner to lower plates 27. Strap 80 is also provided with a quick opening and closing over-centre latch 81, Figures 1 and 2.
The pressure pad encircling straps 68 and 80 help to hold the brace in position on the wearer's leg but the means for applying inward pressure through the pressure pads is a toggle mechanism generally indicated at 82 in Figures 1 and 2. Toggle mechanism 82 comprises a pair of rigid, curving arm members 84 and 85 that extend from points 86 on the opposite sides of the knee joint forwardly and downwardly to a point in front of the leg below the knee where the arm members are connected together by a linkage to be described. At the points 86 on the opposite sides of the knee joint, the upper ends of the toggle arms 84, 85 are respectively connected to opposite plates 27 as by screws 87. While the toggle mechanism is shown in the drawings as being located at the anterior side of the knee, it may be advantageous for certain applications of the brace to locate it at the posterior side.
The linkage connecting the lower ends of toggle arms 84,85 includes a front plate 88, Figures 9, 10 and 14, having a circular boss 90, Figure 14, on its back side to which the ends of the toggle arms are pivotally connected by means of a screw pivot connection 91. The boss 90 serves to space the plate 88 from the arms, and in the space provided there is a latch arm 92, one end of which is pivotally connected at 94 to toggle arm 84, Figures 9 and 10. A link plate 95 is also positioned in the space between the front plate and arm 84 with one end of the link plate being pivotally connected at 96 to the front plate and its other end being pivotally connected at 97 to latch arm 92. The latch arm and link plate thus have an over-centre relationship as may be seen from Figures 9 and 10.
Moving the latch arm 92 from its open position of Figure 9 to its closed position of Figure 10 causes the pivot point 94 between the latch arm and toggle arm 84 to move counter clockwise around the link plate pivot 97, and this moves the toggle arm upwardly or in a clockwise direction as viewed in Figures 1,9 and 10. Upward movementofthetoggle arm 84 relative to the other arm 85 has the effect of moving the upper ends of the two arms closer together at the points 86, Figure 1, and this results in a positive inward pressure at the opposite sides of the knee which is necessary for the brace to perform effectively. Referring to the diagram of Figure 6, the pressure applied by the toggle mechanism at points 86 on the brace is indicated by the arrows 98 and because of the shape of the leg bones the horizontal forces represented by arrows 98 have resultant forces as shown by the oblique arrows 100, these being the forces applied by upper and lower pressure pads 14 and 15. The forces represented by arrows 100 urge the ends of the femur and tibia towards one another which is very desirable as it minimises the possibility of twisting.
Referring again to the toggle mechanism, Figures 9 to 11, a size adjustment is provided at 101 comprising a boss 102 on the front plate 88 having a tapped hole and a boss 104 on the toggle arm 85 having an untapped hole. A knurled headed adjustment screw 105 passes with a free fit through the boss 104 and is threaded into boss 102. The underside of the head 106 of the screw bears against a notch 107 in toggle arm 85 and by turning the screw in or out the angular adjustment between the toggle arm and front plate 88 can be changed. This causes the distance between the upper ends of the toggle arms at points 86 to increase or decrease regardless of the position of the front latch mechanism.
When applying the brace to the wearer's leg, upper and lower strap latches 76 and 81 are open as is the latch arm 92 of the toggle mechanism. The brace is put on the leg with the upper and lower pressure pads 14, 15 comfortably positioned above and below the knee and the latches 76 and 81 are then engaged with their respective wire loops to hold the brace in place without exerting any significant pressure on the knee. In an initial wearing, the upper and lower straps 69 and 80 may be adjusted at their respective buckles but thereafter this usually need not be done. After the brace is in position on the leg, the latch arm 92 of the toggle mechanism is closed to cause pressure to be exerted on opposite sides of the knee as described above. The toggle mechanism, in conjunction with the upper and lower pressure pads and pressure pad plates 22 and 27, also imparts the overall rigidity that is desired.
From the foregoing description, it will be apparent that the invention provides a relatively simple yet very advantageous brace for a knee or the like having a novel mechanism to enable the brace to simulate the rolling and sliding movement of the human knee and also having a novel toggle mechanism that causes pressure to be exerted in a most beneficial manner on the opposite sides of the knee.

Claims (5)

1. A corrective and protective brace for a human joint, the brace encircling the joint when worn and comprising a pair of upper and a pair of lower pressure pads for respectively engaging the wearer's limbs above and below the joint, means connecting the upper and lower pads together for relative movement therebetween, the connecting means including co-acting roller and inclined plane means arranged to permit both rotational and translational movement between the upper and lower pads, the connecting means further including a pair of flexible cables each of which engages the roller means, one end of each cable being operably connected to an upper pressure pad and the other end of each cable being operably connected to a lower pressure pad, and a toggle mechanism connected to the pad connecting means and operable to cause the upper and lower pads to exert pressure on the wearer's limbs above and below the joint, the toggle means including a pair of co-acting toggle arms that together extend approximately halfway around the joint.
2. A corrective and protective knee brace comprising a pair of upper pressure pads positioned on opposite sides of the brace for engagement with opposite sides of the wearer's leg above the knee, a pair of lower pressure pads positioned on opposite sides of the brace below the upper pads for engagement with opposite sides of the wearer's leg below the knee, a pair of upper plate members respectively connected to the upper pressure pads, a pair of lower plate members respectively connected to the lower pressure pads, the upper plate member on each side of the brace extending downwardly into confronting, spaced relation with its respective lower plate member, means between each pair of confronting upper and lower plate members connecting the members together for relative movement therebetween, the connecting means being arranged to permit both rotational and translational movement between the upper and lower plate members and including for each pair of confronting plate members co-acting roller and inclined plane means, the connecting means for each pair of confronting upper and lower plate members further including a pair of flexible cables each of which engages the roller means, one end of each cable being connected to the upper plate member and the other end of each cable being operably connected to the lower plate member, the connecting means being located above the contact area of the femur and tibia when the brace is properly positioned on the wearer's leg, and means connecting the opposite members of one pair of plate members and operable to cause the upper and lower pressure pads to exert pressure on the wearer's leg above and below the knee joint.
3. A corrective and protective knee brace comprising a pair of upper pressure pads positioned on opposite sides of the brace for engagement with opposite sides of the wearer's leg above the knee when the brace is worn, a pair of lower pressure pads positioned on opposite sides of the brace below the upper pads for engagement with opposite sides of the wearer's leg below the knee, a pair of upper plate members respectively connected to the upper pressure pads, a pair of lower plate members respectively connected to the lower pressure pads, the upper plate member on each side extending downwardly into confronting, spaced relation with its respective lower plate member, an upper bearing pad secured to each upper plate member, each upper bearing pad having a rolling surface inclined to the horizontal, a lower bearing pad secured to each lower plate member, a roller member rotatably mounted on each lower plate member, the roller members being adapted to respectively engage the inclined surfaces of the upper bearing pads, and a pair of flexible cables for each pair of confronting upper and lower plate members, both of said cables engaging the mllermember on the lower plate, one end of each of said cables being connected to the upper plate member and the other end of each of said cables being connected to the lower bearing pad, the pair of cables on each side of the knee brace serving to connect the confronting upper and lower plate members on that side together and co-acting with the roller member and inclined surface on that side to permit the upper and lower plate members to have both rotational and translational movement relative to one another.
4. A brace as defined in claim 3 together with toggle means connecting the opposite members of one pair of plate members and operable to cause the upper and lower pressure pads to exert pressure on the wearer's leg above and below the knee joint.
5. A brace as defined in claim 3 together with means for adjusting the angular disposition of the upper pressure pads.
GB08313519A 1980-02-25 1983-05-17 Knee brace Expired GB2139896B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US12447480A 1980-02-25 1980-02-25

Publications (3)

Publication Number Publication Date
GB8313519D0 GB8313519D0 (en) 1983-06-22
GB2139896A true GB2139896A (en) 1984-11-21
GB2139896B GB2139896B (en) 1986-08-20

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ID=22415107

Family Applications (1)

Application Number Title Priority Date Filing Date
GB08313519A Expired GB2139896B (en) 1980-02-25 1983-05-17 Knee brace

Country Status (5)

Country Link
AU (1) AU558897B2 (en)
CA (1) CA1190820A (en)
DE (1) DE3320274C2 (en)
FR (1) FR2546743B1 (en)
GB (1) GB2139896B (en)

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EP0432303A1 (en) * 1988-03-16 1991-06-19 Richard G. Spademan Cuff device

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US4649906A (en) * 1984-06-15 1987-03-17 Spademan Richard George Cuff device
FR2571611B1 (en) * 1984-10-11 1989-02-17 Thuasne & Cie MEDICAL KNEE SUPPORT
US5002045A (en) * 1988-03-16 1991-03-26 Spademan Richard George Cuff device
US5063917A (en) * 1989-08-14 1991-11-12 Protectair Limited Limb brace or immobilizer
WO2012037275A1 (en) 2010-09-16 2012-03-22 Steadman Philippon Research Institute Posterior cruciate ligament support brace
US9125730B2 (en) 2011-10-31 2015-09-08 Ossur Hf Orthopedic device for dynamically treating the knee
US8979782B2 (en) 2011-12-07 2015-03-17 Ossur Hf Hinge used for the treatment of anterior and posterior cruciate ligament injury and method for using the same
EP2948108B1 (en) 2013-01-25 2019-03-27 Ossur Hf Orthopedic device having a dynamic control system
US9539135B2 (en) 2013-01-25 2017-01-10 Ossur Hf Orthopedic device having a dynamic control system and method for using the same
US10413437B2 (en) 2013-01-25 2019-09-17 Ossur Iceland Ehf Orthopedic device having a dynamic control system and method for using the same
WO2014205103A1 (en) 2013-06-21 2014-12-24 Ossur Hf Dynamic tension system for orthopedic device
US10512305B2 (en) 2014-07-11 2019-12-24 Ossur Hf Tightening system with a tension control mechanism
CA2955946C (en) * 2014-08-05 2021-06-08 United Surgical Associates, Inc. Knee brace with adjustable strut length and dynamic strut lengthening
WO2016069839A1 (en) 2014-10-31 2016-05-06 Ossur Hf Orthopedic device having a dynamic control system
US11547590B2 (en) 2017-11-27 2023-01-10 Ossur Iceland Ehf Orthopedic device having a suspension element
DE102019116417A1 (en) * 2019-06-17 2020-12-17 Michael Wagner Orthosis with a joint device and joint device that simulates a bicondylar joint

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CH267810A (en) * 1948-07-07 1950-04-15 Ruetschi Ernst Joint for a replacement limb.
US3945053A (en) * 1973-03-05 1976-03-23 Purdue Research Foundation Rolling contact prosthetic knee joint
US3932045A (en) * 1973-03-05 1976-01-13 Purdue Research Foundation Rolling contact joint
US3958569A (en) * 1975-05-19 1976-05-25 Vosburgh Arthur E Knee protector and brace
DE2918864A1 (en) * 1979-05-10 1980-11-20 Teufel Wilh Jul Fa Knee joint system for correction of bone deformity - has guide rails hinging together with stop to prevent strain
US4361142A (en) * 1981-08-20 1982-11-30 Northwestern University Knee orthosis and joint construction therefor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0432303A1 (en) * 1988-03-16 1991-06-19 Richard G. Spademan Cuff device

Also Published As

Publication number Publication date
CA1190820A (en) 1985-07-23
DE3320274C2 (en) 1986-11-13
GB2139896B (en) 1986-08-20
AU558897B2 (en) 1987-02-12
GB8313519D0 (en) 1983-06-22
FR2546743A1 (en) 1984-12-07
FR2546743B1 (en) 1985-08-23
DE3320274A1 (en) 1984-12-06
AU1451983A (en) 1984-11-15

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