Offset polyaxial ball and socket fastener
A bottom loading fastening system that consists of the polyaxial ball and socket joint used in conjunction with an anchoring bone screw. The system allows attachment of a connector assembly having an offset angular shape for anchoring a connecting rod. The spherical ball connector using a locking ring positioned in a locking ring slot. Upon installation, the locking ring is moved to a ring containment slot to expand a retainer ring, allowing passage of a bone screw spherical ball, the retainer ring forcing the locking ring back to the locking ring slot, thereby permanently attaching the connector assembly to the anchoring bone screw. The offset between the upper and lower sections allows the rod to be received at an angle optimized for spinal alignment, thereby reducing the need for rod contouring and minimizing stress concentration on the spherical joint.
1 . A polyaxial ball and socket fastener comprising:
an anchor member formed from a shank having bone threads forming a proximal end, and a spherical ball having an upper surface and a lower surface forming a distal end;
a connector assembly securable to said anchor member, said connector assembly having an upper section with a first side wall spaced apart from a second side wall forming a threaded opening therebetween, and a lower section having a continuous sidewall with a centrally disposed opening forming a lower cavity for receipt of said spherical ball, said lower section having a ring containment slot and a locking ring slot;
a retainer ring positioned within said ring containment slot, said retainer ring having a top wall, a bottom wall, a non-continuous outer side wall and an inner side wall having a beveled upper and lower edge;
a locking ring positioned within said locking ring slot, said locking ring having a top surface, a non-continuous outer side wall and an inner wall having a beveled upper and lower edge;
a saddle member slidably insertable into said centrally disposed opening, said saddle having an upper surface in alignment with said threaded opening for receipt of a rod member, and a lower spherical surface constructed and arranged to engage said upper surface of said spherical ball, wherein said spherical ball is coupled to said connector assembly by inserting through said centrally disposed opening by moving said locking ring from said locking ring slot into said ring containment slot, thereby expanding said retainer ring, allowing the upper surface of said spherical ball to enter said lower cavity, whereby said retainer ring forces said locking ring back into said locking ring slot and preventing removal of said spherical ball from said lower cavity; and
a set screw operatively associated with said first and second side walls, wherein the rod member is positioned on said upper surface of said saddle and secured thereto by said set screw, said set screw applying pressure to said upper surface of said spherical ball, whereby the lower surface of said spherical ball engages said locking ring to secure said anchor member in a fixed position;
the improvement comprising: said lower section of said connector assembly being angularly offset from said upper section; and said saddle member constructed from an upper member and a lower member, said upper member being placed in alignment with said threaded opening for receipt of the rod member, and said lower member having a top edge constructed and arranged to engage said upper member and a bottom edge constructed and arranged to engage said upper surface of said spherical ball.
2 . The polyaxial ball and socket fastener according to claim 1 , wherein angular offset is between 15 degrees and 35 degrees.
3 . The polyaxial ball and socket fastener according to claim 1 , wherein angular offset is 30 degrees.
4 . The polyaxial ball and socket fastener according to claim 1 , wherein said upper member of said saddle member include dovetail connectors operatively associated with receptacles formed in said lower member of said saddle member.
5 . The polyaxial ball and socket fastener according to claim 1 , wherein said saddle member is spring biased.
6 . The polyaxial ball and socket fastener according to claim 1 , wherein a lower end of said lower member of said saddle member engages an upper surface of said locking ring, and said inner side wall of said retainer ring engages an outer surface of said lower member of said saddle member before insertion of said spherical ball into said lower cavity.
7 . The polyaxial ball and socket fastener according to claim 1 , wherein said locking ring is constructed and arranged to indicate movement of said locking ring by tactile feel and sound when said locking ring is relocated from said ring containment slot to said locking ring slot.
8 . The polyaxial ball and socket fastener according to claim 1 , wherein said locking ring beveled lower edge is shaped to engage said upper surface of said spherical ball during said insertion, said locking ring having an outer surface shaped to engage said retainer ring beveled lower edge, wherein insertion of said spherical ball forces said locking ring into said ring containment slot, causing the expanding of said retainer ring and said retainer ring forces said locking ring to return to said locking ring slot upon insertion of said spherical ball.