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ELECTROMECHANICAL PROPERTIES OF INTERVERTEBRAL DISC

ELECTROMECHANICAL PROPERTIES OF INTERVERTEBRAL DISC
椎间盘的机电特性
批准号:
6598678
负责人:
Weiyong Gu
金额:
$3.98万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-06-01 至 2003-05-31

项目摘要

项目成果

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中文摘要
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英文摘要
Low-back pain is a major socio-economic concern in this country. Although the exact cause for low back pain is unclear, the degenerative changes of the intervertebral disc (IVD), a crucial component of the human spine, have been implicated as a possible primary etiologic factor. The long-term objectives of this project are: (1) to better understand the biomechanics of the IVD, (2) to delineate the biomechanical etiology of disc failure, (3) to elucidate the pathophysiology of low-back pain, and (4) to develop new, minimally invasive diagnostic tools for disc degeneration. The purpose of this pilot research is to develop new techniques and experimental protocols for the investigation of relations of material properties to tissue composition and structure. The specific aims are to (1) investigate effects of proteoglycan (PG) content and collagen matrix density on tissue hydration, (2) investigate electrical properties of normal and PG-extracted IVD tissues, and (3) investigate dynamic compressive behavior of normal and PG-extracted IVD tissues. Three experimental studies will be developed and performed in this project. They are: (1) measurements of water content and true density of solid matrix, (2) measurement of electrical conductivity, and (3) dynamic compression testing of normal and PG-extracted animal IVD tissues. The experimental data will also be analyzed using a mechano-electrochemical theory to elucidate the relations of material properties to tissue composition and structure. These studies will help to understand the mechanism for regulating tissue hydration, the effect of disc degeneration on material properties and biomechanical behavior, and the biomechanical etiology of disc failure in human IVDs. The results will be useful for the future development of theoretical modeling as well as minimally invasive diagnostic tools for disc degeneration.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
Electrical conductivity of lumbar anulus fibrosis: effects of porosity and fixed charge density.
腰椎纤维环纤维化的电导率:孔隙率和固定电荷密度的影响。
DOI: 10.1097/00007632-200211010-00014
发表时间: 2002
期刊: Spine
影响因子: 3
作者: [Gu,WeiYong, Justiz,Marc-Antoine, Yao,Hai]
通讯作者: Yao,Hai
Convection and diffusion in charged hydrated soft tissues: a mixture theory approach.
带电水合软组织中的对流和扩散:混合理论方法。
DOI: 10.1007/s10237-006-0040-3
发表时间: 2007
期刊: Biomechanics and modeling in mechanobiology
影响因子: 3.5
作者: [Yao,H, Gu,WY]
通讯作者: Gu,WY
Physical signals and solute transport in human intervertebral disc during compressive stress relaxation: 3D finite element analysis.
压缩应力松弛过程中人体椎间盘的物理信号和溶质传输:3D 有限元分析。
DOI: --
发表时间: 2006
期刊: Biorheology
影响因子: 1.1
作者: [Yao,Hai, Gu,WeiYong]
通讯作者: Gu,WeiYong
Effects of swelling pressure and hydraulic permeability on dynamic compressive behavior of lumbar annulus fibrosus.
膨胀压力和水渗透率对腰椎纤维环动态压缩行为的影响。
DOI: 10.1114/1.1523920
发表时间: 2002
期刊: Annals of biomedical engineering
影响因子: 3.8
作者: [Yao,Hai, Justiz,Marc-Antoine, Flagler,Daniel, Gu,WeiYong]
通讯作者: Gu,WeiYong
7
    Novel Quantitative Technology for Tissue Engineering
    Novel Quantitative Technology for Tissue Engineering
    Biophysical Modeling of Solute Transport in Human IVD
    Biophysical Modeling of Solute Transport in Human IVD
    海外基金