The intervertebral disc (IVD) is the largest cartilaginous structure in human body that contributes to flexibility and load support in the spine. To accomplish these functions, the disc has a unique architecture consisting of a centrally-located nucleus pulposus (NP) surrounded superiorly and inferiorly by cartilage endplates and peripherally by the annulus fibrosus (AF). Because the disc is avascular and experiences mechanical loads, the cells in IVD tissues live in a complex physical environment. Knowledge of mechanical, chemical and electrical signals within the tissue is important for understanding mechanobiology of IVD [1]. The objective of this study was to develop a three-dimensional (3D), inhomogeneous finite element model (FEM) for human IVD for analyzing the physical environment and solute transport within the tissue under different mechanical loading conditions. A case of IVD under axial compression was simulated and reported.
Skip Nav Destination
ASME 2007 Summer Bioengineering Conference
June 20–24, 2007
Keystone, Colorado, USA
Conference Sponsors:
- Bioengineering Division
ISBN:
0-7918-4798-5
PROCEEDINGS PAPER
Multiphasic Mechano-Electrochemical Finite Element Model of Human Intervertebral Disc
Wei Yong Gu
Wei Yong Gu
University of Miami, Coral Gable, FL
Search for other works by this author on:
Hai Yao
Clemson University, Clemson, SC
Wei Yong Gu
University of Miami, Coral Gable, FL
Paper No:
SBC2007-176511, pp. 927-928; 2 pages
Published Online:
March 12, 2014
Citation
Yao, H, & Gu, WY. "Multiphasic Mechano-Electrochemical Finite Element Model of Human Intervertebral Disc." Proceedings of the ASME 2007 Summer Bioengineering Conference. ASME 2007 Summer Bioengineering Conference. Keystone, Colorado, USA. June 20–24, 2007. pp. 927-928. ASME. https://doi.org/10.1115/SBC2007-176511
Download citation file:
3
Views
0
Citations
Related Proceedings Papers
Related Articles
A Removable Precision Device for In-Vivo Mechanical Compression of Rat Tail Intervertebral Discs
J. Med. Devices (March,2007)
3D Finite Element Analysis of Nutrient Distributions and Cell Viability in the Intervertebral Disc: Effects of Deformation and Degeneration
J Biomech Eng (September,2011)
A Comparison of Uniaxial and Biaxial Mechanical Properties of the Annulus Fibrosus: A Porcine Model
J Biomech Eng (February,2011)
Related Chapters
Effects of Ultrasound Stimulation on Chondrocytes in Three-Dimensional Culture in Relation to the Production of Regenerative Cartilage Tissue
Biomedical Applications of Vibration and Acoustics in Therapy, Bioeffect and Modeling
Effects of Rotational Ellipsoidal Acetabular Cartilage Surface's Axis Length Ratio on the Contact Stress in the Hip
International Conference on Mechanical and Electrical Technology, 3rd, (ICMET-China 2011), Volumes 1–3
Compression of Bursty Signals Using Time Encoding Modulator
International Conference on Software Technology and Engineering, 3rd (ICSTE 2011)