Nucleus pulposus replacement and augmentation has been proposed to restore disk mechanics in early stages of degeneration with the option of providing a minimally invasive procedure for pain relief to patients with an earlier stage of degeneration. The goal of this paper is to examine compressive stability of the intervertebral disk after either partial nucleus replacement or nuclear augmentation in the absence of denucleation. Thirteen human cadaver lumbar anterior column units were used to study the effects of denucleation and augmentation on the compressive mechanical behavior of the human intervertebral disk. Testing was performed in axial compression after incremental steps of partial denucleation and subsequent implantation of a synthetic hydrogel nucleus replacement. In a separate set of experiments, the disks were not denucleated but augmented with the same synthetic hydrogel nucleus replacement. Neutral zone, range of motion, and stiffness were measured. The results showed that compressive stabilization of the disk can be re-established with nucleus replacement even for partial denucleation. Augmentation of the disk resulted in an increase in disk height and intradiskal pressure that were linearly related to the volume of polymer implanted. Intervertebral disk instability, evidenced by increased neutral zone and ranges of motion, associated with degeneration can be restored by volume filling of the nucleus pulposus using the hydrogel device presented here.

References

1.
White
,
A. A.
, and
Panjabi
,
M. M.
,
1990
,
Clinical Biomechanics of the Spine
,
Lippincott
,
Philadelphia
.
2.
Walker
,
B. F.
,
2000
, “
The Prevalence of Low Back Pain: A Systematic Review of the Literature From 1966 to 1998
,”
J. Spinal Disord. Tech.
,
13
(
3
), pp.
205
217
.10.1097/00002517-200006000-00003
3.
Vaccaro
,
A. R.
,
2005
,
Spine: Core Knowledge in Orthopaedics
,
Mosby Publishing
, Philadelphia, PA.
4.
Mossaad
,
M.
,
Herkowitz
,
H.
,
Dvorak
,
J.
,
Bell
,
G.
,
Nordin
,
M.
, and
Grob
,
D.
,
2004
, “
Degenerative Lumbar Spondlyolisthesis With Spinal Stenosis: Natural History, Diagnosis, Clinical Presentation, and Nonoperative Treatment
,”
Lumbar Spine
,
3
, pp.
514
523
.10.1097/01.BRS.0000119398.22620.92
5.
Adams
,
P.
, and
Muir
,
H.
,
1976
, “
Qualitative Changes With Age of Proteoglycans of Human Lumbar Discs
,”
Ann. Rheum. Dis.
,
35
(
4
), pp.
289
296
.10.1136/ard.35.4.289
6.
Bushell
,
G.
,
Ghosh
,
P.
,
Taylor
,
T.
, and
Akeson
,
W.
,
1977
, “
Proteoglycan Chemistry of the Intervertebral Disks
,”
Clin. Orthop. Relat. Res.
,
129
, pp.
115
123
.10.1097/00003086-197711000-00013
7.
Hedman
,
T. P.
,
Kostuik
,
J. P.
,
Fernie
,
G. R.
, and
Heller
,
W. G.
,
1991
, “
Design of an Intervertebral Disc Prosthesis
,”
Spine
,
16
(
6S
), pp.
S256
S260
.10.1097/00007632-199106001-00016
8.
Van Ooij
,
A.
,
Oner
,
F. C.
, and
Verbout
,
A. J.
,
2003
, “
Complications of Artificial Disc Replacement: A Report of 27 Patients With the Sb Charite Disc
,”
Spine
,
28
, pp.
369
383
.10.1097/00007632-200300001-00009
9.
Lehmann
,
T.
,
Spratt
,
K.
,
Tozzi
,
J.
,
Weinstein
,
J.
,
Reinarz
,
S.
,
El-Khoury
,
G.
, and
Colby
,
H.
,
1987
, “
Long-Term Follow-Up of Lower Lumbar Fusion Patients
,”
Spine
,
12
(
2
), pp.
97
104
.10.1097/00007632-198703000-00004
10.
Adams
,
M.
,
McNally
,
D.
, and
Dolan
,
P.
,
1996
, “
'Stress' Distributions Inside Intervertebral Discs. The Effects of Age and Degeneration,
J. Bone Joint Surg., Br.
Vol.,
78
(
6
), pp.
965
972
.10.1302/0301-620X78B6.1287
11.
Adams
,
M.
,
Dolan
,
P.
, and
Hutton
,
W.
,
1986
, “
The Stages of Disc Degeneration as Revealed by Discograms,
J. Bone Joint Surg., Br.
Vol.,
68
(
1
), pp.
36
41
.
12.
Cunningham
,
B. W.
,
Kotani
,
Y.
,
McNulty
,
P. S.
,
Cappuccino
,
A.
, and
McAfee
,
P. C.
,
1997
, “
The Effect of Spinal Destabilization and Instrumentation on Lumbar Intradiscal Pressure: An in Vitro Biomechanical Analysis
,”
Spine
,
22
(
22
), pp.
2655
2663
.10.1097/00007632-199711150-00014
13.
Leong
,
J.
,
Chun
,
S.
,
Grange
,
W.
, and
Fang
,
D.
,
1983
, “
Long–Term Results of Lumbar Intervertebral Disc Prolapse
,”
Spine
,
8
(
7
), pp.
793
799
.10.1097/00007632-198310000-00018
14.
Cinotti
,
G.
,
Della Rocca
,
C.
,
Romeo
,
S.
,
Vittur
,
F.
,
Toffanin
,
R.
, and
Trasimeni
,
G.
,
2005
, “
Degenerative Changes of Porcine Intervertebral Disc Induced by Vertebral Endplate Injuries
,”
Spine
,
30
(
2
), pp.
174
180
.10.1097/01.brs.0000150530.48957.76
15.
Van Tulder
,
M. W.
,
Assendelft
,
W. J.
,
Koes
,
B. W.
, and
Bouter
,
L. M.
,
1997
, “
Spinal Radiographic Findings and Nonspecific Low Back Pain: A Systematic Review of Observational Studies
,”
Spine
,
22
(
4
), pp.
427
434
.10.1097/00007632-199702150-00015
16.
Boden
,
S.
,
Davis
,
D.
,
Dina
,
T.
,
Patronas
,
N.
, and
Wiesel
,
S.
,
1990
, “
Abnormal Magnetic-Resonance Scans of the Lumbar Spine
,”
J. Bone Joint Surg. Am. Vol.
,
72
, pp.
403
408
.
17.
Jensen
,
M. C.
,
Brant-Zawadzki
,
M. N.
,
Obuchowski
,
N.
,
Modic
,
M. T.
,
Malkasian
,
D.
, and
Ross
,
J. S.
,
1994
, “
Magnetic Resonance Imaging of the Lumbar Spine in People Without Back Pain
,”
New Engl. J. Med.
,
331
(
2
), pp.
69
73
.10.1056/NEJM199407143310201
18.
Powell
,
M.
,
Szypryt
,
P.
,
Wilson
,
M.
,
Symonds
,
E.
, and
Worthington
,
B.
,
1986
, “
Prevalence of Lumbar Disc Degeneration Observed by Magnetic Resonance in Symptomless Women
,”
Lancet
,
328
(
8520
), pp.
1366
1367
.10.1016/S0140-6736(86)92008-8
19.
Cholewicki
,
J.
, and
McGill
,
S.
,
1996
, “
Mechanical Stability of the in Vivo Lumbar Spine: Implications for Injury and Chronic Low Back Pain
,”
Clin. Biomech.
,
11
(
1
), pp.
1
15
.10.1016/0268-0033(95)00035-6
20.
Panjabi
,
M. M.
,
2003
, “
Clinical Spinal Instability and Low Back Pain
,”
J. Electromyogr. Kinesiol.
,
13
(
4
), pp.
371
379
.10.1016/S1050-6411(03)00044-0
21.
Bono
,
C. M.
, and
Lee
,
C. K.
,
2004
, “
Critical Analysis of Trends in Fusion for Degenerative Disc Disease Over the Past 20 Years: Influence of Technique on Fusion Rate and Clinical Outcome
,”
Spine
,
29
(
4
), pp.
455
463
.10.1097/01.BRS.0000090825.94611.28
22.
Bao
,
Q.-B.
, and
Yuan
,
H. A.
,
2002
, “
New Technologies in Spine: Nucleus Replacement
,”
Spine
,
27
(
11
), pp.
1245
1247
.10.1097/00007632-200206010-00020
23.
Di Martino
,
A.
,
Vaccaro
,
A. R.
,
Lee
,
J. Y.
,
Denaro
, V
.
, and
Lim
,
M. R.
,
2005
, “
Nucleus Pulposus Replacement: Basic Science and Indications for Clinical Use
,”
Spine
,
30
(
16S
), pp.
S16
S22
.10.1097/01.brs.0000174530.88585.32
24.
Joshi
,
A.
,
Massey
,
C. J.
,
Karduna
,
A.
,
Vresilovic
,
E.
, and
Marcolongo
,
M.
,
2009
, “
The Effect of Nucleus Implant Parameters on the Compressive Mechanics of the Lumbar Intervertebral Disc: A Finite Element Study,
J. Biomed. Mater. Res., Part B
,
90
(
2
), pp.
596
607
.10.1002/jbm.b.31322
25.
Arthur
,
A.
,
Cannella
,
M.
,
Keane
,
M.
,
Singhatat
,
W.
,
Vresilovic
,
E.
, and
Marcolongo
,
M.
,
2010
, “
Fill of the Nucleus Cavity Affects Mechanical Stability in Compression, Bending, and Torsion of a Spine Segment, Which Has Undergone Nucleus Replacement
,”
Spine
,
35
(
11
), pp.
1128
1135
.10.1097/BRS.0b013e3181bdbb1a
26.
Cannella
,
M.
,
Arthur
,
A.
,
Allen
,
S.
,
Keane
,
M.
,
Joshi
,
A.
,
Vresilovic
,
E.
, and
Marcolongo
,
M.
,
2008
, “
The Role of the Nucleus Pulposus in Neutral Zone Human Lumbar Intervertebral Disc Mechanics
,”
J. Biomech.
,
41
(
10
), pp.
2104
2111
.10.1016/j.jbiomech.2008.04.037
27.
Batterjee
,
K.
,
Ray
,
C.
, and
Osman
,
M.
,
2000
, “
One Year Followup on 17 Saudi Patients Implanted With a Prosthetic Disc Nucleus
,”
Proceedings of the Annual Meeting of the International Society for the Study of the Lumbar Spine
.
28.
Ray
,
C. D.
,
2002
, “
The Pdn® Prosthetic Disc-Nucleus Device
,”
Eur. Spine J.
,
11
(
2
), pp.
S137
S142
.10.1007/s005860100346
29.
Nachemson
,
A.
,
1962
, “
Some Mechanical Properties of the Lumbar Intervertebral Discs
,”
Bull. Hosp. Jt. Dis.
,
23
, pp.
130
143
.
30.
Joshi
,
A.
,
Fussell
,
G.
,
Thomas
,
J.
,
Hsuan
,
A.
,
Lowman
,
A.
,
Karduna
,
A.
,
Vresilovic
,
E.
, and
Marcolongo
,
M.
,
2006
, “
Functional Compressive Mechanics of a PVA/PVP Nucleus Pulposus Replacement
,”
Biomaterials
,
27
(
2
), pp.
176
184
.10.1016/j.biomaterials.2005.06.003
31.
Kostuik
,
J. P.
,
1997
, “
Intervertebral Disc Replacement: Experimental Study
,”
Clin. Orthop. Relat. Res.
,
337
, pp.
27
41
.10.1097/00003086-199704000-00004
32.
Fernström
,
U.
,
1965
, “
Arthroplasty With Intercorporal Endoprothesis in Herniated Disc and in Painful Disc
,”
Acta Chir. Scand. Suppl.
,
357
, pp.
154
159
.
33.
Büttner–Janz
,
K.
,
Schellnack
,
K.
, and
Zippel
,
H.
,
1989
, “
Biomechanics of the Sb Charité Lumbar Intervertebral Disc Endoprosthesis
,”
Int. Orthop.
,
13
(
3
), pp.
173
176
.10.1007/BF00268042
34.
Knowles
,
F. L.
,
1954
, “
Apparatus for Treatment of the Spinal Column
,” U.S. Patent No. 2,677,369.
35.
Patil
,
A. A.
,
1982
, “
Artificial Intervertebral Disc
,” U.S. Patent No. 4,309,777.
36.
Buttner-Janz
,
K.
,
Keller
,
A.
, and
Lemaire
,
J.–P.
,
1995
, “
Intervertebral Disc Endoprosthesis
,” U.S. Patent No. 5,401,269.
37.
Steffee
,
A. D.
,
1991
, “
Artificial Disc
,” U.S. Patent No. 5,071,437.
38.
Zippel
,
H.
, 1991, “
Charite Modulus—Concept, Experience, and Results
,” The Artificial Disc,
Springer-Verlag
,
Berlin
.
39.
Steffee
,
A. D.
,
1992
, “
The Steffee Artificial Disc
,”
Clinical Efficacy and Outcome in the Diagnosis and Treatment of Low Back Pain
,
Raven Press, Ltd.
,
New York
.
40.
Thomas
,
J.
,
Lowman
,
A.
, and
Marcolongo
,
M.
,
2003
, “
Novel Associated Hydrogels for Nucleus Pulposus Replacement,
J. Biomed. Mater. Res., Part A
,
67
(
4
), pp.
1329
1337
.10.1002/jbm.a.10119
41.
Allen
,
M. J.
,
Schoonmaker
,
J. E.
,
Bauer
,
T. W.
,
Williams
,
P. F.
,
Higham
,
P. A.
, and
Yuan
,
H. A.
,
2004
, “
Preclinical Evaluation of a Poly (Vinyl Alcohol) Hydrogel Implant as a Replacement for the Nucleus Pulposus
,”
Spine
,
29
(
5
), pp.
515
523
.10.1097/01.BRS.0000113871.67305.38
42.
Thomas
,
J.
,
Gomes
,
K.
,
Lowman
,
A.
, and
Marcolongo
,
M.
,
2004
, “
The Effect of Dehydration History on PVA/PVP Hydrogels for Nucleus Pulposus Replacement,
J. Biomed. Mater. Res., Part B
,
69
(
2
), pp.
135
140
.10.1002/jbm.b.20023
43.
Joshii
,
A.
,
Fussell
,
G.
,
Thomas
,
J.
,
Hsuan
,
A.
,
Lowman
,
A.
,
Karduna
,
A.
,
Vresilovic
,
E.
, and
Marcolongo
,
M.
,
2006
, “
Functional Compressive Mechanics of a PVA/PVP Nucleus Pulposus Replacement
,”
Biomaterials
,
27
(
2
), pp.
176
184
.10.1016/j.biomaterials.2005.06.003
44.
Spenciner
,
D.
,
Greene
,
D.
,
Paiva
,
J.
,
Palumbo
,
M.
, and
Crisco
,
J.
,
2006
, “
The Multidirectional Bending Properties of the Human Lumbar Intervertebral Disc
,”
Spine J.
,
6
(
3
), pp.
248
257
.10.1016/j.spinee.2005.08.020
45.
Spenciner
,
D. B.
,
Paira
,
J.
, and
Crisco
,
J.
,
2003
, “
Testing of Human Cadaveric Functional Spinal Units to the ASTM Draft Standard,
Standard Test Methods for Static and Dynamic Characterization of Spinal Artificial Discs
,”
ASTM Special Technical Publication
,
1431
, pp.
114
126
.
46.
Espinoza Orías
,
A. A.
,
Malhotra
,
N. R.
, and
Elliott
,
D. M.
,
2009
, “
Rat Disc Torsional Mechanics: Effect of Lumbar and Caudal Levels and Axial Compression Load
,”
Spine J.
,
9
(
3
), pp.
204
209
.10.1016/j.spinee.2008.01.014
47.
Chuang
,
S.-Y.
,
Odono
,
R. M.
, and
Hedman
,
T. P.
,
2007
, “
Effects of Exogenous Crosslinking on in Vitro Tensile and Compressive Moduli of Lumbar Intervertebral Discs
,”
Clin. Biomech.
,
22
(
1
), pp.
14
20
.10.1016/j.clinbiomech.2006.08.001
48.
Wilke
,
H. J.
,
Neef
,
P.
,
Caimi
,
M.
,
Hoogland
,
T.
, and
Claes
,
L. E.
,
1999
, “
New in Vivo Measurements of Pressures in the Intervertebral Disc in Daily Life
,”
Spine
,
24
(
8
), pp.
755
762
.10.1097/00007632-199904150-00005
49.
Brinckmann
,
P.
, and
Grootenboer
,
H.
,
1991
, “
Change of Disc Height, Radial Disc Bulge, and Intradiscal Pressure From Discectomy. An in Vitro Investigation on Human Lumbar Discs
,”
Spine
,
16
(
6
), pp.
641
646
.10.1097/00007632-199106000-00008
50.
Goel
, V
.
,
Nishiyama
,
K.
,
Weinstein
,
J.
, and
Liu
,
Y.
,
1986
, “
Mechanical Properties of Lumbar Spinal Motion Segments as Affected by Partial Disc Removal
,”
Spine
,
11
(
10
), pp.
1008
1012
.10.1097/00007632-198612000-00007
51.
Markolf
,
K.
, and
Morris
,
J.
,
1974
, “
The Structural Components of the Intervertebral Disc. A Study of Their Contributions to the Ability of the Disc to Withstand Compressive Forces,
The J. Bone Jt. Surg., Am.
Vol.,
56
(
4
), pp.
675
687
.
52.
Andersson
,
G. B.
, and
Schultz
,
A. B.
,
1979
, “
Effects of Fluid Injection on Mechanical Properties of Intervertebral Discs
,”
J. Biomech.
,
12
(
6
), pp.
453
458
.10.1016/0021-9290(79)90030-7
53.
Ranu
,
H. S.
,
1993
, “
Multipoint Determination of Pressure-Volume Curves in Human Intervertebral Discs
,”
Ann. Rheum. Dis.
,
52
(
2
), pp.
142
146
.10.1136/ard.52.2.142
54.
Zhao
,
F.
,
Pollintine
,
P.
,
Hole
,
B. D.
,
Dolan
,
P.
, and
Adams
,
M. A.
,
2005
, “
Discogenic Origins of Spinal Instability
,”
Spine
,
30
(
23
), pp.
2621
2630
.10.1097/01.brs.0000188203.71182.c0
55.
Langrana
,
N.
,
Edwards
,
W.
, and
Sharma
,
M.
,
1996
, “
Biomechanical Analyses of Loads on the Lumbar Spine
,”
The Lumbar Spine
,
W.B. Saunders Company
,
Washington, DC
.
56.
Goel
,
V.
,
Goyal
,
S.
,
Clark
,
C.
,
Nishiyama
,
K.
, and
Nye
,
T.
,
1985
, “
Kinematics of the Whole Lumbar Spine: Effect of Discectomy
,”
Spine
,
10
(
6
), pp.
543
554
.10.1097/00007632-198507000-00008
You do not currently have access to this content.