IP Library Granted Patent US 10,383,669
Granted Patent B2
US 10,383,669 · App. 14/321,626 · Granted Aug 20, 2019

Interphalangeal joint implant methods

Inventor: Michael Graham (Machomb, MI)
A61B17/846A61B17/68A61B17/7291A61F2/4225A61F2/4241A61F2002/30622A61F2002/4228A61F2002/4233A61F2002/4243A61F2002/4246A61F2002/4248
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,383,669
App. No.
14/321,626
Granted
Aug 20, 2019
Kind
B2
Abstract

A method and apparatus for correcting malformed joints, in particular the “hammer toe” contraction of the proximal interphalangeal joint. The disclosure comprises a two-component implant: a proximal phalanx component and a middle phalanx component. An endosseous stem on each component is inserted axially into the end of a respective host bone and, after insertion, the components are attached. The attached components are held together in various ways, for example a detent arm/aperture mechanism. Each component can be cannulated to allow for the passage of a kirschner wire, if necessary, to stabilize adjacent joints such as the proximal interphalangeal joint. The bones of the treated joint can be set to form a desired angle by adjusting the angle formed by the corresponding endosseous stems.

Claims (35)

1. A method of correcting abnormal flexion of a lesser human toe at a proximal interphalangeal joint by fusing a distal end of a proximal phalanx and a proximal end of a corresponding middle phalanx, the method comprising:

making an incision in an area of a proximal interphalangeal joint;

separating the bones flanking the proximal interphalangeal joint;

removing the articular cartilage of the bones flanking the proximal interphalangeal joint;

drilling a centrally located hole into the distal end of the proximal phalanx;

drilling a centrally located hole into the proximal end of the middle phalanx;

inserting into the proximal phalanx hole a proximal phalanx stem which is mounted on a first base plate, said proximal phalanx stem and first base plate comprising a first component;

inserting into the middle phalanx hole a middle phalanx stem which is mounted on a second base plate, said middle phalanx stem and second base plate comprising a second component;

after both first and second components are inserted into their respective bones, joining said first and second base plates together with an attachment so that the base plates directly abut thus preventing movement between the base plates in all directions and fixing at a preferred angle said proximal phalanx stem and said middle phalanx stem; and

closing said incision, wherein said preferred angle is maintained between the proximal phalanx stem and the middle phalanx stem will maintain the proximal phalanx and the middle phalanx bones at the preferred angle thus fusing the proximal phalanx and the middle phalanx bones and thereby correcting abnormal flexion of the proximal interphalangeal joint.

2. A method of correcting abnormal flexion of a lesser human toe as defined in claim 1 wherein said step of joining said base plates together comprises:

establishing said preferred angle such that an imaginary central axis of the middle phalanx stem is collinear with the imaginary central axis of the proximal phalanx stem.

3. A method of correcting abnormal flexion of a lesser human toe as defined in claim 1 wherein said step of joining said base plates together comprises:

establishing said preferred angle such that an imaginary central axis of the middle phalanx stem is inclining approximately 10° downward with respect to an imaginary central axis of the proximal phalanx stem and is offset upward with respect to the proximal phalanx stem.

4. A method of correcting improper bone alignment fusing the misaligned bones with an implant,

said implant comprising a first component and a second component,

said first component comprises a first base plate and a first endosseous stem mounted upon said first base plate

said second component comprises a second base plate and a second endosseous stem mounted upon said second base plate

said first and second components also comprise complementary locking structures configured such that when these complementary locking structures are engaged they securely lock said first base plate directly abutting said second base plate so that a preferred angle is maintained between the longitudinal axis of the first stem and the longitudinal axis of the second stem,

said method comprising the steps:

making an incision in an area of a joint between a first bone and a second bone;

separating the bones flanking the joint;

removing the articular cartilage of the bones flanking the joint and exposing ends of the first and seconds bones;

drilling a centrally located hole into the end of the first bone;

drilling a centrally located hole into the end of the second bone;

inserting the first endosseous stem into the first bone,

inserting the second endosseous stem into the second bone;

after inserting both first and second endosseous stems into their respective bones, engaging the complementary locking structures to securely lock said first base plate directly to said second base plate, and

closing said incision,

wherein the preferred angle maintained between the first stem and the second stem causes a preferred angle to be maintained between the first bone and the second bone thus fusing the bones and correcting the improper bone alignment.

5. The method of correcting improper bone alignment as defined in claim 4 wherein said first and second bones are selected from the group consisting of finger and toe bones.

6. The method of correcting improper bone alignment as defined in claim 4 wherein said complementary locking structures include detent arms integrally connected to, and extending from, one component;

said arms are spring loaded when inserted into said other component,

opposing apertures are fashioned through said other component; and

said arms lock when they reach the apertures in said other component.

Continuity (2)
Division 13484861 · May 31, 2012
Related Publication 20140316474A1 · Oct 23, 2014