IP Library Granted Patent US 7,122,055
Granted Patent B2
US 7,122,055 · App. 10/177,378 · Granted Oct 17, 2006

Artificial intervertebral disc having a spider spring force restoring element

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Quick Facts
Patent No.
US 7,122,055
App. No.
10/177,378
Granted
Oct 17, 2006
Kind
B2
Abstract

An artificial disc having a pair of opposing plates for seating against opposing vertebral bone surfaces, separated by a spider spring having a plurality of spring arms extending radially from a central hub. Various spring arm embodiments disclosed include spring arms that are straight, bowed, grooved, wavy, thinning, or thickening; and spring arms with parallel sides, radially outwardly diverging sides, or radially outwardly diverging and curving sides. Various spider spring embodiments disclosed include spider springs with central hubs that are solid, bored, have curvate sockets, or have semispherical protuberances. Various plate embodiments disclosed include plates having, on inwardly facing surfaces, a curvate socket, a semispherical protuberance, a circular recess, or a flat surface. The spider springs are disposable between the plates, through various disclosed couplings, so that the plates compress, rotate and angulate freely relative to one another, enabling the artificial disc to mimic a healthy natural intervertebral disc.

Claims (6)

1. An intervertebral spacer device, comprising: first and second plates, said plates being disposed in a spaced apart relationship such that a plate surface of said first plate faces a plate surface of said second plate, said facing surfaces being inner surfaces, and alternative faces of each plate being outer surfaces; and

at least one restoring force providing element disposed between the inner surfaces of said first and second plates, and disposed such that a compressive load applied to the outer surfaces of said first and second plates is counteracted by said at least one restoring force providing element, said at least one restoring force providing element including at least one spider spring having a central hub and a plurality of spring arms extending radially from the central hub, wherein one of said first plate and said at least one spider spring comprises a curvate socket and the other of said first plate and said at least one spider spring comprises a semispherical protuberance that is rotatably and angulatably couplable to the curvate socket, wherein the semispherical protrusion comprises a radially deflectable semispherical portion and the curvate socket has an interior volume and an opening leading to the interior volume, the curvate socket accommodating the semispherical portion for free rotation and angulation therein, the semispherical portion fitting through the opening only when radially deflected, the semispherical portion being adapted to receive a deflection preventing element that when applied to the semispherical portion prevents the semispherical portion from fitting through the opening, wherein the semispherical protuberance comprises at least one radial slot such that the semispherical protuberance is radially deflectable upon the application of a radially inwardly directed force.

2. The intervertebral spacer device of claim 1 , wherein the semispherical protuberance further comprises an axial bore into which a deflection preventing element is disposable to prevent the radial deflection of the semispherical protuberance.

3. An intervertebral spacer device, comprising: first and second plates, said plates being disposed in a spaced apart relationship such that a plate surface of said first plate faces a plate surface of said second plate, said facing surfaces being inner surfaces, and alternative faces of each plate being outer surfaces; and at least one restoring force providing element disposed between the inner surfaces of said first and second plates, and disposed such that a compressive load applied to the outer surfaces of said first and second plates is counteracted by said at least one restoring force providing element, said at least one restoring force providing element including at least one spider spring having a central hub and a plurality of spring arms extending radially from the central hub, wherein at least one of said first and second plates comprises a circular recess within which an end of the at least one spider spring is disposed, said spacer device further comprising a retaining element fastened to the at least one of said first and second plates having the circular recess, the retaining element preventing the dislocation of the end of the at least one spider spring from the circular recess.

4. An intervertebral spacer device, comprising: first and second plates, said plates being disposed in a spaced apart relationship such that a plate surface of said first plate faces a plate surface of said second plate, said facing surfaces being inner surfaces, and alternative faces of each plate being outer surfaces; and at least one restoring force providing element disposed between the inner surfaces of said first and second plates, and disposed such that a compressive load applied to the outer surfaces of said first and second plates is counteracted by said at least one restoring force providing element, said at least one restoring force providing element including at least one spider spring having a central hub and a plurality of spring arms extending radially from the central hub, wherein at least one of said first and second plates comprises on its outer surface an element that is deformably reshapeable under anatomical loads to securably engage a vertebral body endplate.

5. An intervertebral spacer device, comprising: first and second plates, said plates being disposed in a spaced apart relationship such that a plate surface of said first plate faces a plate surface of said second plate, said facing surfaces being inner surfaces, and alternative faces of each plate being outer surfaces; and at least one restoring force providing element disposed between the inner surfaces of said first and second plates, and disposed such that a compressive load applied to the outer surfaces of said first and second plates is counteracted by said at least one restoring force providing element, said at least one restoring force providing element including at least one spider spring having a central hub and a plurality of spring arms extending radially from the central hub, wherein at least one of spring arms is selected from the group consisting of a spring arm having parallel arm sides and a spring arm having diverging arm sides, wherein each spring arm has at least one radially extending groove.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 053897 FRAME: 0621. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 30, 2020
From: SPINECORE, INC.
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 053941/0753 →
MERGER Recorded Sep 25, 2020
From: SPINECORE, INC.
To: HOWMEDICA OTEONICS CORP.
Reel/Frame 053897/0621 →