Intersomatic cage with unified grafts

Abstract
An intervertebral cage includes a thin main wall having two return parts at opposite ends of the wall. The wall has an approximately constant thickness. The return parts are extended by facing end parts having a gap between them. The wall, the return parts and end parts delimit an inner cavity. The gap extends parallel to the wall and has a length between 50% and 100% of the cavity length. The gap length is preferably between 70% to 90% of the cavity length.
Description
FIELD OF INVENTION

The present invention relates to an intervertebral cage designed to be placed between two vertebrae to restore and/or maintain the intervertebral space, to replace the intervertebral disk. After the cage or implant has been placed, the intervertebral space is filled with autologous spongy bone or adapted bone substitutes. This invention also relates to instrumentation for placement of the intervertebral cage. Finally, it also relates to a pair of intervertebral cages of this type.


BACKGROUND ART

Prior art has already described intervertebral cages, for example Stryker cages. These cages are parallelepiped-shaped, the bottom and the top of the cage being completely open, the side and top openings will be placed facing the two vertebrae that are to be kept at a distance from each other. Spongy bone is then compacted inside the cage to finally cause fusion of the bone (or arthrodesis) of the two vertebrae separated by a suitable disk space.


For posterior placement, there are usually two cages adjacent to each other at a distance from each other in the intervertebral space, and the graft is firstly compacted inside the two cages and secondly the space between the two cages is filled in by spongy bone or bone substitute.


It is found that the growths of the three independent grafts (two inside the cages and one between the cages) vary with respect to each other. In particular, the graft placed between the cages contributes more quickly to the fusion than the compacted grafts inside the cages. Obviously, this is a disadvantage, particularly with regard to the stability of the grafts and the two vertebrae held in place by these grafts, and concerning the time necessary to obtain good stability.


Document WO/98/55052 also discloses intervertebral cages.


In the first case, they are composed of a main very thick curved part particularly with a thickness that increases from the middle towards the ends. Therefore, these cages are complicated to make due to their curved shape.


In the second case, they are composed of a straight main part and return parts each being prolonged by an end part that together form a small interval less than 25% of the longitudinal extension of the internal housing of the cage.


SUMMARY OF THE INVENTION

The present invention overcomes the disadvantages mentioned above by proposing an intervertebral cage that enables good growth of the graft or grafts placed between the vertebrae and is each to make, particularly due to the fact that it has straight longitudinal walls, and has good resistance to compression forces applied by the vertebral plates, particularly in the case of posterior implantation in which two intervertebral cages are placed side by side at a distance from each other.


According to the invention, the intervertebral cage is composed of a thin main wall prolonged by two return parts, the thin main wall having an approximately constant thickness and each return part being extended by an end part, the end parts facing each other with a gap between them, the wall, the return parts and the end part delimiting an inner cavity, the extension of the clear gap parallel to the straight wall being between 50% and 100% of the largest dimension of the cavity parallel to the wall, and preferably between 70% and 90%.


Thus, according to the invention, the intervertebral cage comprises only three walls, namely the straight main wall and the two return parts prolonged by the end parts, such that the graft that was compacted on the inside of each cage before the cage was placed (in the case of posterior placement in which two cages are used arranged side by side and at a spacing from each other), and the graft that is made to grow between the two cages are all three in mutual contact, such that there is actually only a single graft which will therefore grow homogeneously to obtain an optimum contact between the vertebral plate—graft—vertebral plate, in other words a good homogeneous and stable contact, also making the cage more resistant even though it only has one straight main wall and a large gap between the end parts.


The applicant realized before anyone else that in the case in which there is a main part in the form of a straight wall, it is still possible to significantly move the end parts away from the return parts without endangering the stability and the strength of the intervertebral cages between the vertebral plates. The applicant believes that the fact that the central graft and the compacted grafts in the internal parts of the two cages arranged with their openings facing each other fuse together well and helps to make the two cages more resistant to the tension forces exerted by the vertebral plates, and it is therefore possible to increase the air gap between the end parts, although the main part is only a thin single straight wall; but this is only a hypothesis that the applicant cannot confirm.


According to one preferred embodiment of the invention, the thin main wall is a straight wall.


According to one advantageous embodiment, the thickness of the end parts is the same as the thickness of the thin main wall.


According to one advantageous embodiment, the thickness of the thin main wall is between 1 mm and 5 mm and preferably between 2 mm and 4 mm, for example 3 mm.


According to one advantageous embodiment, the end part that projects from the largest return part is provided with at least one hole, and preferably two holes on the front face facing the other end part, and the other return part comprises a threaded hole on its part external to the ring, these holes being designed to cooperate with pins associated with placement instrumentation for placement of the implant or the intervertebral cage in the intervertebral space.


The present invention also relates to instrumentation for placement of an intervertebral cage, particularly by posterior placement.


According to the invention, the instrumentation for placement of an intervertebral cage between two vertebrae in the disk space comprises a rod that will cooperate with associated coupling means formed in an outer surface of the intervertebral cage.


According to one improvement of the invention, the instrumentation comprises a prolonged part in the form of a rectangular or slightly curved wall, on the distal end of the rod, the dimensions and position of which are such that the wall closes off the clear gap between the two end parts, when the rod is in a position to cooperate with the coupling means.


The rectangular wall replaces the “missing wall” of the cage during placement, firstly to retain the graft that was compacted inside the cage before the cage was put into position, and secondly to make the assembly stiffer to facilitate its placement in the intervertebral space.


For example, coupling means are composed of a hole formed in the outer surface of the cage, the hole being sized such that the rod can be inserted inside it.


According to the invention, it is also possible to use blocking means that will block mutual rotation of the cage and the instrumentation in the position in which the rod and the coupling means cooperate with each other.


For example, these blocking means may be composed such that the shape of the periphery of the hole is made hexagonal or to have at least one flat, and one end of the rod has a matching shape.


According to one improvement of the invention, attachment means designed to fix the rod to the coupling means may also be provided. These attachment means, which in particular can be released, are used to insert the cage such that it cannot accidentally stop cooperating with the rod.


For example, these attachment means may consist of tapping the hole and providing an associated thread at the distal end of the rod. In this case, the tapping in the hole and the thread on the rod also form blocking means.


According to one improvement to the invention, the outside distal edge of the wall comprises two pins that can penetrate into the holes formed in the face on the end part of the cage.


According to the invention, the wall is offset with respect to the centre line of the main rod, particularly by a distance equivalent to half of the dimension of the return part at the rod end.


The invention also relates to a pair of intervertebral cages according to the invention, in particular the two intervertebral cages of the pair being symmetric with each other like in a mirror.


The drawings, given solely as examples of one embodiment of an intervertebral cage according to the invention and instrumentation used for placement in the intervertebral space, are described.





BRIEF DESCRIPTION OF THE DRAWING


FIG. 1 is a perspective view of an intervertebral cage according to the invention;



FIG. 2 is a longitudinal sectional view from the top of the intervertebral cage of FIG. 1,



FIG. 3 is a side view of the intervertebral cage in FIG. 1,



FIG. 4 shows instrumentation for placement of an intervertebral cage according to the invention, and also shows the intervertebral cage shown in FIG. 1;



FIG. 5 is an enlarged view of part of FIG. 4;



FIG. 6 is a perspective view of the enlarged part of the instrumentation of FIG. 4, without showing the intervertebral cage of FIG. 1;



FIG. 7 is a perspective view of the intervertebral cage of FIG. 1 showing an attachment structure;



FIG. 8 is a perspective view of the intervertebral cage of FIG. 1 showing a blocking structure.





DETAILED DESCRIPTION OF THE DRAWING


FIG. 1 shows in intervertebral cage 1 according to the invention The intervertebral cage comprises a main wall 2 from which two return parts 3 and 4 project. The two return parts 3 and 4 are prolonged by a first end part 5 and a second end part 6 respectively The two end parts 5 and 6 are approximately parallel to the main wall 2. The wall 2, the return parts 3 and 4 and the end parts 5, 6 delimit an inner cavity 30 in the cage, by prolonging the two end parts towards each other.


The two end parts 5, 6, are at a distance from each other and there is a clear gap between them. The clear gap extends along the direction of the length parallel to the main wall 2 over a length equal to 78% of the longest length of the inner cavity 30.


The two end parts 5, 6 face each other through a first end face 7 and a second end face 8. The main wall 2 is 3 mm thick. The thickness of the end walls is the same as the thickness of the main wall 2. The two return parts 3 and 4 are approximately perpendicular to the main wall 2. The two end parts 5 and 6 extend from the return parts 3 and 4 that are approximately perpendicular to the end parts, parallel to the main wall 2, such that the shape of the cage 1 forming the intervertebral cage is approximately like a C with a straight back in the cross-sectional plane (see FIG. 2).


The upper edge 9 and the lower edge 10 of the ring forming the intervertebral cage have a toothed shape 11. These teeth or notches give good anchorage of the cage in the vertebral plates.


Two holes 12 are formed in face 8, facing the end part 5. A tapped hole 13 is formed in the outside edge of the return part 4.


These holes 12 and 13 are designed to cooperate, respectively, with the pins 20 and the threaded end 21 of the rod 15 of an instrument 14 for the placement of a thin type intervertebral cage between the two vertebrae, particularly by posterior placement. In particular, this instrumentation 14 is shown in FIGS. 4 to 6.


It comprises a hollow rod 15 that is extended at its end 16 by a part 17 in the form of a wedge comprising a surface 18 perpendicular to the centre line of the rod 15 and a wall 19 forming an angle of about 75° from the surface 18. The shape of the wall 19 is rectangular. The angle between the wall 19 and the surface 18 depends on the extended length of the clear gap. It is designed such that the wall 19 completely fills the opening between the two end parts 5 and 6.


On its edge opposite the rod 15, the plate or wall 19 comprises two pins 20 designed to cooperate with holes formed in the face 8 of the intervertebral cage 1. The instrumentation 14 also comprises a threaded end 21 (FIG. 6) of the rod 15 that will cooperate with the tapped hole 13 (FIG. 7) formed in the outside part of the return part 4 of the intervertebral cage. This threaded end 21 extends inside the rod 15 and opens up at the end 16 of this rod 15, at the surface 18 through a hole formed in it. The user screws and unscrews the threaded rod using the manoeuvring handle 22. Screwing the rod in firstly blocks the rod and the cage in rotation, and secondly fixes the rod to the cage.


The length of the plate 29 is approximately equivalent to the length of the main wall 2 of the intervertebral cage, such that when the threaded end 21 is screwed into the tapped hole 13, pins 20 (FIG. 7) penetrate into the holes 12. It is thus possible to insert the intervertebral cage between two vertebrae and then to remove the instrumentation. The two sides 7 and 8 facing the end parts 5 and 6 are offset from each other by a dimension corresponding to the thickness of the plate 19.


The wall 19 replaces the “missing wall” of the cage during placement, firstly to fix the position of the graft that was compacted in the cage before its placement, and secondly to make the assembly stiffer to facilitate its placement in the intervertebral space.


Finally, the cage may be bevelled in the longitudinal direction (see FIG. 3). This bevelled shape makes it possible to restore the lordosis.

Claims
  • 1. An intervertebral cage configured for insertion between an upper vertebra and a lower vertebra, comprising: an elongated main wall having first and second opposing ends thereof;a first return part extending away from the first end of the main wall;a second return part extending away from the second end of the main wall;a first end part extending from the first return part and terminating at a first end face;a second end part extending from the second return part and terminating at a second end face;a substantially planar upper surface configured for contact with the upper vertebra, the upper surface comprising teeth and at least portions of the main wall, the first return part, the second return part, the first end part, and the second end part;a substantially planar lower surface configured for contact with the lower vertebra, the lower surface comprising teeth and at least portions of the main wall, the first return part, the second return part, the first end part, and the second end part;a gap formed between the first end face and the second end face, the gap open at the upper surface and the lower surface and extending therebetween so that the first end part and the second end part are connected only through the first return part, the second return part, and the main wall;a cavity delimited by the main wall, the first return part, the second return part, the first end part, and the second end part, the cavity open along the upper surface and the lower surface, with the intervertebral cage opened to the cavity along the gap;a coupler for a placement instrument adapted to place the cage between the upper and lower vertebrae; andan instrument for inserting the cage between the upper and lower vertebrae, the instrument comprising a rod attachable to the coupler, a first outward curved portion adapted to reach around the second end part of the cage, and a second incurvate portion attached to the first outward curved portion, the second incurvate portion adapted to close the gap and couple with the first end face.
  • 2. The intervertebral cage of claim 1 in which the main wall is substantially straight.
  • 3. The intervertebral cage of claim 2 in which the main wall has a substantially constant thickness between the upper and lower surface.
  • 4. The intervertebral cage of claim 3 in which the main wall and the first and second end parts have substantially the same thickness.
  • 5. The intervertebral cage of claim 1 in which the first end face and the second end face are substantially flat and substantially parallel.
  • 6. The intervertebral cage of claim 1 wherein the gap extends substantially parallel to the main wall and corresponds to between 100% and about 50% of the largest dimension of the cavity parallel to the main wall.
  • 7. The intervertebral cage of claim 1 wherein the gap extends substantially parallel to the main wall and corresponds to between about 90% and about 70% of the largest dimension of the cavity parallel to the main wall.
  • 8. The intervertebral cage of claim 1 further comprising a longitudinal bevel adapted to restore a lordosis.
  • 9. The intervertebral cage of claim 1 in which the teeth of the upper surface and the lower each extend along the main wall, the first return part, the second return part, the first end part, and the second end part.
  • 10. The intervertebral cage of claim 1 in which the second incurvate portion comprises a wall adapted to extend at least partially into the gap and to close the gap between the first and second end faces.
  • 11. The intervertebral cage and instrument of claim 10 wherein the instrument wall is offset from a center line of the rod.
  • 12. The intervertebral cage and instrument of claim 10 further comprising a blocking structure adapted to block rotation of the cage.
  • 13. The intervertebral cage and instrument of claim 12 wherein the blocking structure comprises at least one flat part matching a flat part at the end of the rod.
  • 14. The intervertebral cage and instrument of claim 13 wherein the blocking structure comprises matching hexagonal peripheries.
  • 15. The intervertebral cage and instrument of claim 10 wherein the coupler includes a hole disposed in the cage adapted to receive a portion of the rod.
  • 16. The intervertebral cage and instrument of claim 15 further comprising a blocking structure integral with the coupler, wherein the hole disposed in the cage is tapped and the portion of the rod received in the hole is threaded.
  • 17. An intervertebral cage configured for insertion between an upper vertebra and a lower vertebra, comprising: an elongated main wall having first and second opposing ends thereof;a first return part extending away from the first end of the main wall;a second return part extending away from the second end of the main wall;a first end part extending from the first return part and terminating at a first end face;a second end part extending from the second return part and terminating at a second end face;a substantially planar upper surface configured for contact with the upper vertebra, the upper surface comprising teeth and at least portions of the main wall, the first return part, the second return part, the first end part, and the second end part;a substantially planar lower surface configured for contact with the lower vertebra, the lower surface comprising teeth and at least portions of the main wall, the first return part, the second return part, the first end part, and the second end part;a gap formed between the first end face and the second end face, the gap open at the upper surface and the lower surface and extending therebetween so that the first end part and the second end part are connected only through the first return part, the second return part, and the main wall;a cavity delimited by the main wall, the first return part, the second return part, the first end part, and the second end part, the cavity open along the upper surface and the lower surface, with the intervertebral cage opened to the cavity along the gap;a coupler for a placement instrument adapted to place the cage between the upper and lower vertebrae; andan instrument for inserting the cage between the upper and lower vertebrae, the instrument comprising a rod attachable to the coupler and an instrument wall adapted to extend at least partially into the gap and to close the gap between the first and second end faces, wherein the instrument wall has at least two pins adapted to penetrate into holes formed in the first end face.
  • 18. The intervertebral cage and instrument of claim 17 wherein the instrument wall is offset from a center line of the rod.
  • 19. The intervertebral cage and instrument of claim 17 further comprising a blocking structure adapted to block rotation of the cage.
  • 20. The intervertebral cage and instrument of claim 19 wherein the blocking structure comprises at least one flat part matching a flat part at the end of the rod.
  • 21. The intervertebral cage and instrument of claim 20 wherein the blocking structure comprises matching hexagonal peripheries.
  • 22. The intervertebral cage and instrument of claim 17 wherein the coupler includes a hole disposed in the cage adapted to receive a portion of the rod.
  • 23. The intervertebral cage and instrument of claim 22 further comprising a blocking structure integral with the coupler, wherein the hole disposed in the cage is tapped and the portion of the rod received in the hole is threaded.
Priority Claims (1)
Number Date Country Kind
00 06351 May 2000 FR national
PCT Information
Filing Document Filing Date Country Kind 371c Date
PCT/FR01/01545 5/18/2001 WO 00 3/26/2003
Publishing Document Publishing Date Country Kind
WO01/87194 11/22/2001 WO A
US Referenced Citations (154)
Number Name Date Kind
4714469 Kenna Dec 1987 A
4997432 Keller Mar 1991 A
5192327 Brantigan Mar 1993 A
5246458 Graham Sep 1993 A
5306307 Senter et al. Apr 1994 A
5306309 Wagner et al. Apr 1994 A
5397364 Kozak et al. Mar 1995 A
5425772 Brantigan Jun 1995 A
5458638 Kuslich et al. Oct 1995 A
5534029 Shima Jul 1996 A
5554191 Lahille et al. Sep 1996 A
5609636 Kohrs et al. Mar 1997 A
5713899 Marnay et al. Feb 1998 A
5741253 Michelson Apr 1998 A
5755798 Papavero et al. May 1998 A
5766252 Henry et al. Jun 1998 A
5772661 Michelson Jun 1998 A
5776199 Michelson Jul 1998 A
5782919 Zdeblick et al. Jul 1998 A
5797909 Michelson Aug 1998 A
5800550 Sertich Sep 1998 A
5860973 Michelson Jan 1999 A
5865845 Thalgott Feb 1999 A
5888223 Bray Mar 1999 A
5888224 Beckers et al. Mar 1999 A
5984967 Zdeblick et al. Nov 1999 A
6001130 Bryan et al. Dec 1999 A
6033438 Bianchi et al. Mar 2000 A
6045579 Hochshuler et al. Apr 2000 A
6063121 Xavier et al. May 2000 A
6080158 Lin Jun 2000 A
6080193 Hochshuler et al. Jun 2000 A
6093205 McLeod et al. Jul 2000 A
6096038 Michelson Aug 2000 A
6096080 Nicholson et al. Aug 2000 A
6111164 Rainey Aug 2000 A
6113637 Gill et al. Sep 2000 A
6113638 Williams et al. Sep 2000 A
6120502 Michelson Sep 2000 A
6123705 Michelson Sep 2000 A
6136031 Middleton Oct 2000 A
6146421 Gordon et al. Nov 2000 A
6149650 Michelson Nov 2000 A
6156067 Bryan et al. Dec 2000 A
6179875 Von Strempel Jan 2001 B1
6193757 Foley et al. Feb 2001 B1
6206922 Zdeblick et al. Mar 2001 B1
6210412 Michelson Apr 2001 B1
6224595 Michelson May 2001 B1
6235059 Benezech et al. May 2001 B1
6241770 Michelson Jun 2001 B1
6245072 Zdeblick et al. Jun 2001 B1
6245108 Biscup Jun 2001 B1
6251140 Marino et al. Jun 2001 B1
6258125 Paul et al. Jul 2001 B1
6264656 Michelson Jul 2001 B1
6270498 Michelson Aug 2001 B1
6277149 Boyle et al. Aug 2001 B1
6296664 Middleton Oct 2001 B1
6302914 Michelson Oct 2001 B1
6306170 Ray Oct 2001 B2
6315797 Middleton Nov 2001 B1
6348071 Steffee et al. Feb 2002 B1
6350283 Michelson Feb 2002 B1
6364880 Michelson Apr 2002 B1
6371988 Pafford et al. Apr 2002 B1
6375655 Zdeblick et al. Apr 2002 B1
6395031 Foley et al. May 2002 B1
6395035 Bresina et al. May 2002 B2
6402750 Atkinson et al. Jun 2002 B1
6402785 Zdeblick et al. Jun 2002 B1
6409765 Bianchi et al. Jun 2002 B1
6419704 Ferree Jul 2002 B1
6423095 Van Hoeck et al. Jul 2002 B1
6432106 Fraser Aug 2002 B1
6432107 Ferree Aug 2002 B1
6447512 Landry et al. Sep 2002 B1
6447544 Michelson Sep 2002 B1
6447547 Michelson Sep 2002 B1
6454769 Wagner et al. Sep 2002 B2
6458159 Thalgott Oct 2002 B1
6461359 Tribus et al. Oct 2002 B1
6468310 Ralph et al. Oct 2002 B1
6471724 Zdeblick et al. Oct 2002 B2
6478823 Michelson Nov 2002 B1
6482233 Aebi et al. Nov 2002 B1
6500205 Michelson Dec 2002 B1
6524312 Landry et al. Feb 2003 B2
6527806 Ralph et al. Mar 2003 B2
6540785 Gill et al. Apr 2003 B1
6554863 Paul et al. Apr 2003 B2
6576016 Hochshuler et al. Jun 2003 B1
6579291 Keith et al. Jun 2003 B1
6582468 Gauchet Jun 2003 B1
6592624 Fraser et al. Jul 2003 B1
6599320 Kuslich et al. Jul 2003 B1
6605089 Michelson Aug 2003 B1
6610089 Liu et al. Aug 2003 B1
6610092 Ralph et al. Aug 2003 B2
6613091 Zdeblick et al. Sep 2003 B1
6616671 Landry et al. Sep 2003 B2
6635087 Angelucci et al. Oct 2003 B2
6645206 Zdeblick et al. Nov 2003 B1
6645249 Ralph et al. Nov 2003 B2
6652584 Michelson Nov 2003 B2
6660038 Boyer, II et al. Dec 2003 B2
6666890 Michelson Dec 2003 B2
6669730 Ralph et al. Dec 2003 B2
6669731 Ralph et al. Dec 2003 B2
6673113 Ralph et al. Jan 2004 B2
6676703 Biscup Jan 2004 B2
6679887 Nicholson et al. Jan 2004 B2
6679915 Cauthen Jan 2004 B1
6695851 Zdeblick et al. Feb 2004 B2
6695882 Bianchi et al. Feb 2004 B2
6709458 Michelson Mar 2004 B2
6716247 Michelson Apr 2004 B2
6719794 Gerber et al. Apr 2004 B2
6733504 Lin et al. May 2004 B2
6733531 Trieu May 2004 B1
6733535 Michelson May 2004 B2
6736850 Davis May 2004 B2
6740117 Ralph et al. May 2004 B2
6740118 Eisermann et al. May 2004 B2
6743255 Ferree Jun 2004 B2
6743256 Mason Jun 2004 B2
6743257 Castro Jun 2004 B2
6749636 Michelson Jun 2004 B2
6758849 Michelson Jul 2004 B1
6767367 Michelson Jul 2004 B1
6770074 Michelson Aug 2004 B2
6793679 Michelson Sep 2004 B2
RE38614 Paul et al. Oct 2004 E
6800092 Williams et al. Oct 2004 B1
6800093 Nicholson et al. Oct 2004 B2
20010020185 Ray Sep 2001 A1
20020082597 Fraser Jun 2002 A1
20020107572 Foley et al. Aug 2002 A1
20020151893 Santilli Oct 2002 A1
20020193880 Fraser Dec 2002 A1
20030028249 Baccelli et al. Feb 2003 A1
20030109928 Pasquet et al. Jun 2003 A1
20030167091 Scharf Sep 2003 A1
20030195626 Huppert Oct 2003 A1
20030195632 Foley et al. Oct 2003 A1
20030204260 Ferree Oct 2003 A1
20040073309 Bianchi et al. Apr 2004 A1
20040127993 Kast et al. Jul 2004 A1
20040127994 Kast et al. Jul 2004 A1
20040148029 Bianchi et al. Jul 2004 A1
20040162617 Zucherman et al. Aug 2004 A1
20040172130 Nakahara et al. Sep 2004 A1
20040199254 Louis et al. Oct 2004 A1
20050038511 Martz et al. Feb 2005 A1
Foreign Referenced Citations (21)
Number Date Country
3741493 Jun 1989 DE
0 965 313 Dec 1999 EP
0965313 Dec 1999 EP
2 703 580 Oct 1994 FR
2703580 Oct 1994 FR
2 733 413 Oct 1996 FR
2733413 Oct 1996 FR
2747034 Oct 1997 FR
2808995 Nov 2001 FR
2827156 Jan 2003 FR
WO 9715248 May 1997 WO
WO 9801091 Jan 1998 WO
WO 9801091 Jan 1998 WO
WO 9855052 Dec 1998 WO
WO 9855052 Dec 1998 WO
WO 9855052 Dec 1998 WO
WO 9909914 Mar 1999 WO
WO 9909914 Mar 1999 WO
WO9956676 Nov 1999 WO
WO 0187194 Nov 2001 WO
WO 0300593 9 Jan 2003 WO
Related Publications (1)
Number Date Country
20030195626 A1 Oct 2003 US