IP Library Patent Application 11711954
Patent Application
App. No. 11/711,954

Snap-off screw with recessed breakoff area

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Quick Facts
Patent No.
US None
App. No.
11/711,954
Abstract

A snap-off screw ( 10 ) for insertion into one or more two bone regions ( 12 A) ( 12 B) includes a screw body ( 14 ) having a screw region ( 16 ) and a driver region ( 18 ). Upon insertion of the screw region ( 16 ), the driver region ( 18 ) is designed to be decoupled from the screw region ( 16 ). The screw region ( 16 ) includes a screw distal end ( 224 ), an opposed screw proximal end ( 226 ), a threaded area ( 228 ), and a head area ( 232 ) positioned at the screw proximal end ( 226 ). The driver region ( 18 ) includes a driver attachment end ( 238 ) and an opposed driver distal end ( 240 ). The driver attachment end ( 238 ) is coupled to the screw region ( 16 ) between the screw distal end ( 224 ) and the screw proximal end ( 226 ). With this design, when the driver region ( 18 ) is decoupled from the screw region ( 16 ), a screw break surface ( 460 ) is positioned below a portion of the head area ( 232 ) of the screw region ( 16 ). As a result thereof, the screw break surface ( 460 ) does not provide an area of irritation for soft tissue around the inserted snap-off screw ( 10 ).

Claims (23)

1 . A snap-off screw for screwing into a bone region, the snap-off screw comprising:

a screw body including (i) a screw region having a screw distal end, an opposed screw proximal end, a threaded area, and a head area positioned at the screw proximal end, and (ii) a driver region having a driver attachment end and an opposed driver distal end, the driver attachment end being coupled to the screw region between the screw distal end and the screw proximal end.

2 . The snap-off screw of claim 1 wherein the screw region includes a recessed area and the driver attachment end is positioned within the recessed area.

3 . The snap-off screw of claim 2 wherein the screw body includes a breakoff area that is positioned within the recessed area, the breakoff area being the area in which the drive shaft region becomes decoupled from the screw region.

4 . The snap-off screw of claim 1 wherein breakoff area is encircled by the head area.

5 . The snap-off screw of claim 1 wherein the breakoff area is recessed from the head area.

6 . The snap-off screw of claim 1 wherein the breakoff area is at least approximately 0.001 inches from the screw proximal end.

7 . The snap-off screw of claim 6 wherein the breakoff area is at least approximately 0.01 inches from the screw proximal end.

8 . A snap-off screw for screwing into a bone region, the snap-off screw comprising:

a screw body including (i) a screw region having a screw distal end, an opposed screw proximal end, a threaded area positioned near the screw distal end, a head area positioned at the screw proximal end, and a recessed area that is positioned at the screw proximal end, and (ii) a driver region having a driver attachment end and an opposed driver distal end, the driver attachment end being coupled to the screw region within the recessed area.

9 . The snap-off screw of claim 8 wherein the screw body includes a breakoff area that is positioned within the recessed area, the breakoff area being the area in which the drive shaft region becomes decoupled from the screw region.

10 . The snap-off screw of claim 9 wherein breakoff area is encircled by the head area.

11 . The snap-off screw of claim 8 wherein the breakoff area is recessed from the head area.

12 . The snap-off screw of claim 8 wherein the breakoff area is at least approximately 0.001 inches from the screw proximal end.

13 . The snap-off screw of claim 12 wherein the breakoff area is at least approximately 0.01 inches from the screw proximal end.

14 . A method of engaging a bone region, the method comprising the steps of:

threading a screw region of a snap-off screw into a bone region, the screw region including a screw distal end, an opposed screw proximal end, a threaded area, and a head area positioned at the screw proximal end, and

decoupling a driver region of the snap-off screw from the screw region so that a screw break surface of the screw region is recessed below at least a portion of the head area.

15 . The method of claim 14 wherein the screw region includes a recessed area and wherein the step of decoupling includes the step of the screw break surface being positioned within the recessed area.

16 . The method of claim 15 wherein the screw body includes a breakoff area that is positioned within the recessed area, the breakoff area being the area in which the drive shaft region becomes decoupled from the screw region.

17 . The method of claim 16 wherein breakoff area is encircled by the head area.

18 . The method of claim 16 wherein the breakoff area is recessed from the head area.

19 . The method of claim 16 wherein the break-off area is at least approximately 0.001 inches from the screw proximal end.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2008
From: NEXA ORTHOPEDICS, INC.
To: TORNIER, INC.
Reel/Frame 020582/0299 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2007
From: CORRAO, ERNIE; WAHL, REBECCA HAWKINS; TAYLOR, ALAN G.
To: NEXA ORTHOPEDICS, INC.
Reel/Frame 019044/0587 →