IP Library Granted Patent US 10,105,195
Granted Patent B2
US 10,105,195 · App. 15/529,553 · Granted Oct 23, 2018

Orthodontic auxiliary and connector with modifiable activation parameters

Inventor: James D. Cleary (Glendora, CA)
Assignee: 3M Innovative Properties Company
A61C7/36A61C7/18
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Quick Facts
Patent No.
US 10,105,195
App. No.
15/529,553
Granted
Oct 23, 2018
Kind
B2
Abstract

The present disclosure provides intra-oral devices for repositioning the relationship between upper and lower dental arches. The devices are attached to appliances on molar teeth of each arch and can be reactivated without removal or replacement of substantial components of the device.

Claims (19)

1. An intraoral force module configured for moving the relative positions of upper and lower dental arches, the force module comprising:

a first member having a first outer end portion and coupled to a helical compression spring coaxial with at least a portion of said first member, the first member having a length extending in a generally mesial direction when the force module is in a closed position;

a second member connected to the first member and pivotally movable relative to the first member in directions along a reference axis, a portion of the second member extending distally to a second outer end portion along a portion of the length of the first member when the force module is in the closed position; and

a rotatable lower connector connected to the second outer end portion, wherein the rotatable lower connector includes a first channel having an arcuate axis, the first channel defining an axis of rotation for the second outer end portion, wherein the second member is movable in an arc relative to the lower connector about a first axis that is generally perpendicular to the reference axis, and wherein the lower connector is rotatable between a first orientation and a second orientation, the second orientation providing for a more distal location of the second outer end portion relative to the first orientation.

2. The force module of claim 1 , wherein the axis of rotation is along an arc of no greater than 60 degrees, such that both the first member and the second member are substantially parallel to an occlusal plane of the lower dental arch.

3. The force module of claim 1 , wherein the spring includes an activation force in the first orientation and a second activation force in the second orientation, and wherein the activation force in the second orientation is greater than the activation force in the first orientation.

4. The force module of claim 1 , wherein the second member includes a rotation stop received in the first channel, wherein the rotation stop includes a shaft and a stop pin, and wherein the shaft is resiliently attached to the second member and the stop pin is configured for receipt in the first channel, and wherein movement of the shaft is in a generally buccal direction disengages the stop pin from the first channel.

5. The force module of claim 1 wherein the lower connector further includes a second channel having an arcuate axis and an aperture, wherein the aperture is disposed between the first and second channel.

6. The force module of claim 5 , wherein the first and second channels are disposed on opposing edge regions of the connector.

7. The force module of claim 6 , wherein entrances to the first and second channels are substantially coplanar within a first reference plane.

8. The force of module of claim 1 , wherein the connector includes a wall segment extending in a direction generally orthogonal to the reference plane, the wall segment including a coupling portion for attachment to an orthodontic molar appliance.

9. The force module of claim 8 , wherein the wall segment includes a passage for receipt of a connecting pin, and wherein alignment of the passage and a recess of the orthodontic molar appliance allows the connecting pin to attach the lower connector to the molar appliance.

10. The force module of claim 5 , wherein the first channel is mesial to the second channel in the first orientation, and wherein the second channel is mesial to the first channel in the second orientation.

11. An intraoral force module configured for moving the relative positions of upper and lower dental arches, the force module comprising:

a first member having a first outer end portion, the first member having a length extending in a generally mesial direction when the force module is in the closed position;

a second member connected to the first member and pivotally movable relative to the first member in directions along a reference axis, a portion of the second member extending distally to a second outer end portion along a portion of the length of the first member when the force module is in the closed position; and

a lower connector, wherein the lower connector is rotatable, and wherein the lower connector includes a first channel and a second channel, the first and second channels disposed on opposing edge regions of the connector, the first and second channels each including an arcuate axis, wherein the lower connector is connected to the second outer end portion of the second member, wherein the second member is movable in an arc relative to the lower connector about a first axis that is generally perpendicular to the reference axis, and wherein the lower connector is moveable between a first orientation and a second orientation, wherein the force module has a first active force in the first orientation and second active force in the second orientation.

12. The force module of claim 11 , wherein the first active force is greater than the second active force.

13. The force module of claim 11 , wherein the first active force is less than the second active force.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2024
From: 3M INNOVATIVE PROPERTIES COMPANY
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 066445/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2017
From: CLEARY, JAMES D.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 042504/0371 →
Continuity (2)
Provisional Application 62095909 · Dec 23, 2014
Related Publication 20170319297A1 · Nov 9, 2017