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.
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May 2014
Research-Article
Nucleus Implantation: The Biomechanics of Augmentation Versus Replacement With Varying Degrees of Nucleotomy
Marco Cannella,
Marco Cannella
Department of Material Science and Engineering,
Philadelphia, PA 19104
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
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Jessica L. Isaacs,
Jessica L. Isaacs
Mem. ASME
Department of Mechanical Engineering
and Mechanics,
Philadelphia, PA 19104
Department of Mechanical Engineering
and Mechanics,
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
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Shanee Allen,
Shanee Allen
Department of Material Science and Engineering,
Philadelphia, PA 19104
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
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Argjenta Orana,
Argjenta Orana
Department of Material Science and Engineering,
Philadelphia, PA 19104
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
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Edward Vresilovic,
Edward Vresilovic
Department of Orthopedic Surgery,
Milton S. Hershey Medical Center,
Hershey, PA 17033
Milton S. Hershey Medical Center,
Penn State University
,500 University Dr.
,Hershey, PA 17033
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Michele Marcolongo
Michele Marcolongo
1
Department of Material Science and Engineering,
Philadelphia, PA 19104
e-mail: marcolms@drexel.edu
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
e-mail: marcolms@drexel.edu
1Corresponding author.
Search for other works by this author on:
Marco Cannella
Department of Material Science and Engineering,
Philadelphia, PA 19104
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
Jessica L. Isaacs
Mem. ASME
Department of Mechanical Engineering
and Mechanics,
Philadelphia, PA 19104
Department of Mechanical Engineering
and Mechanics,
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
Shanee Allen
Department of Material Science and Engineering,
Philadelphia, PA 19104
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
Argjenta Orana
Department of Material Science and Engineering,
Philadelphia, PA 19104
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
Edward Vresilovic
Department of Orthopedic Surgery,
Milton S. Hershey Medical Center,
Hershey, PA 17033
Milton S. Hershey Medical Center,
Penn State University
,500 University Dr.
,Hershey, PA 17033
Michele Marcolongo
Department of Material Science and Engineering,
Philadelphia, PA 19104
e-mail: marcolms@drexel.edu
Drexel University
,3141 Chestnut Street
,Philadelphia, PA 19104
e-mail: marcolms@drexel.edu
1Corresponding author.
Contributed by the Bioengineering Division of ASME for publication in the Journal of Biomechanical Engineering. Manuscript received May 2, 2013; final manuscript received January 24, 2014; accepted manuscript posted March 6, 2014; published online April 10, 2014. Assoc. Editor: James C. Iatridis.
J Biomech Eng. May 2014, 136(5): 051001 (9 pages)
Published Online: April 10, 2014
Article history
Received:
May 2, 2013
Revision Received:
January 24, 2014
Accepted:
March 6, 2014
Citation
Cannella, M., Isaacs, J. L., Allen, S., Orana, A., Vresilovic, E., and Marcolongo, M. (April 10, 2014). "Nucleus Implantation: The Biomechanics of Augmentation Versus Replacement With Varying Degrees of Nucleotomy." ASME. J Biomech Eng. May 2014; 136(5): 051001. https://doi.org/10.1115/1.4027056
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