IP Library › Granted Patent US 9,421,112
Granted Patent B2
US 9,421,112 · App. 14/356,861 · Granted Aug 23, 2016

Fixation system for spinal cages

Inventors: Kamil Bal (Ankara, TR); Ibrahim Ozgur Bektas (Ankara, TR)
Assignee: Tria Spine Meikal Ltd. Sti.
A61F2/447A61F2/4455A61F2002/3008A61F2002/3052A61F2002/30266A61F2002/30331A61F2002/30364A61F2002/30472A61F2002/30492A61F2002/30507A61F2002/30579A61F2002/30777A61F2002/30779A61F2002/30785A61F2002/30845A61F2002/30904A61F2002/4475A61F2310/00017A61F2310/00023A61F2310/00161A61F2310/00179
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Quick Facts
Patent No.
US 9,421,112
App. No.
14/356,861
Granted
Aug 23, 2016
Kind
B2
Abstract

A fixation system, which is developed for the treatment of diseases on a cervical, thoracal or lumbar spine and especially to maintain the distance between two vertebras on the spine and achieve fusion, is disclosed herein. The system preferably comprises a main cage ( 2 ), at least one dynamic shaft ( 3 ) fitted into the main cage ( 2 ) in parallel with cage axis, at least one sharp blade ( 5 ) fixed with a fixation pin ( 4 ) on to the shaft ( 3 ), and at least two imaging pins ( 6 ) located in two different axis- which helps to locate/identify the structure under X-Ray imaging during a surgery. A preferred sharp blade ( 5 ) is configured to turn 90° in the main cage ( 2 ) with the help of the shaft ( 3 ), and to penetrate into the vertebras with the help of sharp side surfaces ( 5.3 ) of the blade ( 5 ).

Claims (39)

1. A fixation system ( 1 ) for maintaining a distance between two vertebras on a patient's spine at a fixation stage of a surgery, the fixation system ( 1 ) comprising:

a main cage ( 2 ) having a sharp blade space ( 2 . 7 ),

at least one dynamic shaft ( 3 ) fitted into the main cage ( 2 ), the shaft having a hexagonal middle rise ( 3 . 3 ), and

at least one sharp blade ( 5 ) fixed on to the shaft ( 3 ) and located at the sharp blade space ( 2 . 7 ),

the sharp blade( 5 ) having:

a. a top and a bottom arms ( 5 . 2 ) configured to penetrate into the vertebras bi-directionally during the fixation stage, each of the arms ( 5 . 2 ) comprising a plurality of triangular concave sharp side surfaces ( 5 . 3 ) and cutting edges each formed by at least two of the triangular concave sharp side surfaces ( 5 . 3 ) and configured to allow the arms ( 5 . 2 ) to penetrate into the vertebras bi-directionally;

b. a hexagonal middle rest ( 5 . 1 ) configured to rest on the hexagonal middle rise ( 3 . 3 ) of the shaft ( 3 ); and

c. movement-restraining side walls ( 5 . 4 ) configured to restrict a blade movement within the sharp blade space ( 2 . 7 ).

2. A fixation system according to claim 1 , wherein

the main cage ( 2 ) further comprises an angled front surface ( 2 . 6 ) with a horizontal cut ( 2 . 11 ) and two cut-out lips ( 2 . 12 ) separated by the horizontal cut ( 2 . 11 ); and

the shaft ( 3 ) further comprises a round front end ( 3 . 2 ) and at least one expansion bump ( 3 . 5 ) located at the round front end ( 3 . 2 ), the expansion bump ( 3 . 5 ) being configured to expand and further separate the cut-out lips during the fixation stage.

3. A fixation system ( 1 ) for maintaining a distance between two vertebras on a patient's spine at a fixation stage of a surgery, the fixation system ( 1 ) comprising:

a main cage ( 2 ) with:

a. a top and a bottom surfaces ( 2 . 8 ),

b. a back surface ( 2 . 10 ),

c. an instrument fixation hole ( 2 . 1 ) located at the back surface ( 2 . 10 ),

d. a shaft hole ( 2 . 2 ) located at the back surface ( 2 . 10 ),

e. an instrument locking hole ( 2 . 3 ) located at the back surface ( 2 . 10 ),

f. top and bottom teeth ( 2 . 4 ) located at the top and bottom surfaces ( 2 . 8 ),

g. an angled front surface ( 2 . 6 ),

h. bone voids ( 2 . 5 ) located between the angled front surface ( 2 . 6 ) and the back surface ( 2 . 10 ),

i. a sharp blade space ( 2 . 7 ) located between the bone voids ( 2 . 5 ),

j. a horizontal cut ( 2 . 11 ) located at the angled front surface ( 2 . 6 ), and

k. cut out lips ( 2 . 12 ) located at the angled front surface ( 2 . 6 ) and separated by the horizontal cut ( 2 . 11 );

one dynamic shaft ( 3 )—placed in the main cage ( 2 )—with:

a. a hexagon back end ( 3 . 1 ),

b. a round front end ( 3 . 2 ),

c. a hexagon middle rise ( 3 . 3 ),

d. a fixation pin hole ( 3 . 4 ) located at the hexagon middle rise ( 3 . 3 ), and

e. expansion bumps ( 3 . 5 ) located at the round front end ( 3 . 2 );

a fixation pin ( 4 ) configured to mate with the fixation pin hole ( 3 . 4 ); and

at least one sharp blade ( 5 ) fixed on the shaft ( 3 ) by the fixation pin ( 4 ), the blade ( 5 ) comprising:

a. a hexagon middle hole/rest ( 5 . 1 ) configured to rest on the middle rise ( 3 . 3 ),

b. a top and a bottom arms ( 5 . 2 ) extending away from the middle hole/rest ( 5 . 1 ),

c. triangular concave side surfaces ( 5 . 3 ) located at the top and the bottom arms ( 5 . 2 ),

d. cutting edges, each formed by at least two of the triangular concave side surfaces ( 5 . 3 ) and configured for the top and the bottom arms ( 5 . 2 ) to penetrate into the vertebras bi-directionally during the fixation stage,

e. a movement-restraining side wall ( 5 . 4 ) located at an end of the blade ( 5 ), and

f. a sharp blade fixation pin hole ( 5 . 5 ) configured to receive the fixation pin ( 4 ) to fix the blade ( 5 ) on the shaft ( 3 ), wherein

when the shaft ( 3 ) moves during the fixation stage, the blade ( 5 ) penetrates into the vertebras, and the expansion bumps ( 3 . 5 ) simultaneously expand and further separate the cut-out lips ( 2 . 12 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2014
From: BAL, KAMIL; BEKTAS, IBRAHIM OZGUR
To: TRIA SPINE MEDIKAL LTD. STI.
Reel/Frame 032844/0410 →
Priority Claims (1)
TR a 2011 07005 · Jul 14, 2011 · national
Continuity (1)
Related Publication 20150100127A1 · Apr 9, 2015