Method for bone adjustment with anchoring function

US2021393301A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2021393301-A1
Application numberUS-202117365116-A
CountryUS
Kind codeA1
Filing dateJul 1, 2021
Priority dateOct 31, 2008
Publication dateDec 23, 2021
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A method and a device for bone adjustment in a mammal is presented, wherein a device is implanted in the medullar cavity of a bone in the body of said mammal, said device being a device exerting a force to anchoring devices anchored in said bone. The method and device has utility in therapeutic and cosmetic bone adjustments, including the lengthening, reshaping and realigning of bones, for example in the correction of congenital deformations, restorative orthopaedic surgery and the like.

First claim

Opening claim text (preview).

1 .- 35 . (canceled) 36 . A method for bone adjustment in a mammal, comprising the steps implanting a bone adjusting housing of a bone adjusting device intramedullary in a femoral or tibial bone in said mammal, attaching two or more anchoring devices to the femoral or tibial bone of the mammal, exerting a force on said to or more anchoring devices with an adjustment device to postoperatively adjust at least one of a distance between or orientation of, at least two of said two or more anchoring devices. 37 . A method for bone adjustment according to claim 36 , wherein the device is implanted intramedullary in the body of said mammal, exerting a force to anchoring devices anchored to the inside of said bone. 38 . The method according to claim 36 , wherein said bone adjustment is the lengthening of a bone, the healing of a fracture, the changing of a bone angle, the reshaping of a bone, or a combination thereof. 39 . The method according to claim 36 , wherein said adjustment is a step in a treatment to correct a limb discrepancy caused by a congenital condition, deformation or previous trauma. 40 . The method according to claim 36 , wherein said adjustment is reshaping or lengthening of a bone involving one of distraction osteogenesis treatment, a step of correcting a congenital deformation a step of a cosmetic treatment. 41 . (canceled) 42 . (canceled) 43 . The method according to claim 40 , wherein reshaping is one of changing the angle or curvature of a bone, changing the torsion of a bone, changing the angle between the diaphysis and the epiphysis, changing the thickness of a bone or a combination thereof. 44 . A method for bone adjustment in a mammal wherein a device is implanted intramedullary in the body of said mammal, wherein said device is one of a hydraulic device exerting a force to anchoring devices anchored in said bone and a control device which controls the amount of force exerted by the device, or a mechanical device exerting a force to anchoring devices anchored in said bone and a control device which controls the amount of force exerted by the device. 45 . (canceled) 46 . The method according to claim 44 , wherein said control device follows a program of incremental changes, set before the device is implanted. 47 . The method according to claim 44 , wherein said control device follows a program of incremental changes, communicated to the control device after implantation and/or during the treatment. 48 . (canceled) 49 . The method according to claim 44 , wherein the device is stabilized by filling the device with a material which stabilizes the position of the adjustment device and permanents the distance between the anchoring devices. 50 . The method according to claim 49 , wherein said material is chosen from a curable foam, a curable gel, a polymer or polymer mixture which solidifies, crosslinks or otherwise attains and retains a stable volume. 51 . The method according to claim 49 , wherein the device is a hydraulic device and the hydraulic fluid is a material chosen from a curable foam, a curable gel, a polymer or polymer mixture which solidifies, crosslinks or otherwise attains and retains a stable volume when the curing, solidification, crosslinking or other reaction is initiated by the user. 52 . (canceled) 53 . (canceled) 54 . A method for treating a bone dysfunction of a mammal patient by providing a device for bone adjustment comprising at least two anchoring devices, the method comprising the steps of i. inserting a needle or tube-like instrument into a cavity of said mammal patient; ii. inflating said cavity by introducing a fluid through said needle or tube-like instrument and thereby expanding said cavity; iii. placing at least two laparoscopic trocars in said cavity; iv. inserting a camera through one of said laparoscopic trocars into said cavity; v. inserting at least one dissecting tool through one of said at least two laparoscopic trocars; vi. dissecting an area of the dysfunctional bone; vii. placing the device for bone adjustment and anchoring devices in the medullar cavity of said bone; viii. anchoring said anchoring devices in contact with said bone; ix. closing the mammal body preferably in layers; and x. non-invasively adjusting said bone postoperatively. 55 . (canceled) 56 . (canceled) 57 . (canceled) 58 . The method of treating a mammal patient according to claim 54 , wherein the step of dissecting includes dissecting an area of the arm or leg comprising, dissecting an area of at least one of the following bones; clavicula, scapula, humerus, radius, ulna, pelvic bone, femur, tibia, fibula or calcaneus. 59 . The method of treating a mammal patient according to claim 54 , wherein the step of dissecting includes dissecting an area of the arm or leg comprising, dissecting an area at least one of the following joints; shoulder, elbow, hip, knee, hand and foot. 60 . The method of treating a mammal patient according to claim 54 , wherein an opening into the medullar cavity is made by drilling. 61 .- 142 . (canceled) 143 . The method according to claim 36 , further comprising the step of: controlling the operation device according to a pre-programmed time-schedule with an outgoing speed of the gearbox that is less than 10 turn per second during. 144 . The method according to claim 54 , further comprising the step of: controlling the operation device according to a pre-programmed time-schedule with an outgoing speed of the gearbox that is less than 10 turn per second during.

Assignees

Inventors

Classifications

  • using remote controls · CPC title

  • with laterally expanding parts, e.g. for gripping the bone · CPC title

  • Devices acting on, attached to, or simulating the effect of, vertebral processes, vertebral facets or ribs (rib fixation devices A61B17/8076); Tools for such devices · CPC title

  • for small bones, e.g. in the foot, ankle, hand or wrist · CPC title

  • electric or electromagnetic means · CPC title

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What does patent US2021393301A1 cover?
A method and a device for bone adjustment in a mammal is presented, wherein a device is implanted in the medullar cavity of a bone in the body of said mammal, said device being a device exerting a force to anchoring devices anchored in said bone. The method and device has utility in therapeutic and cosmetic bone adjustments, including the lengthening, reshaping and realigning of bones, for exam…
Who is the assignee on this patent?
Forsell Peter
What technology area does this patent fall under?
Primary CPC classification A61B17/7216. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu Dec 23 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).