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Reliability of tibial measurement with mechanical response tissue analysis.

机译:胫骨测量与机械反应组织分析的可靠性。

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摘要

Mechanical response tissue analysis (MRTA) provides a noninvasive means of estimating the cross-sectional bending stiffness (EI) of long bones, and thus can serve as a predictor of bone strength. Estimates of bone bending stiffness are derived from the point impedance response of a long bone to low frequency (70--500Hz) stimulation according to beam vibration theory. MRTA has demonstrated the ability to reliably estimate human ulnar bending stiffness with between-test coefficients of variation of 5%, and in vivo measurements of monkey tibiae have been validated with ex vivo 3-point mechanical bending tests. Human tibial MRTA measurement has achieved between-trial coefficients of variation of only 12%, so a new physical MRTA configuration and improved computer algorithms have been developed in an attempt to improve upon this level of reliability. The new configuration removes the rigid proximal and distal tibial restraints and models the tissue behavior with a 12-parameter algorithm that accounts for free vibration at the ankle and knee joints. Initial testing with only the hardware changes and application of the 7-parameter model of tissue behavior used in earlier systems yielded unacceptable variation. Subsequent reliability testing with application of 6-, 9-, and 12-parameter models demonstrated modest improvements, prompting the development of the more robust 12-parameter model used in the present study. Evaluation of 110 college-age females (age 20.2 +/- 1.8 yr, height 163.3 +/- 5.9 cm, weight 60.7 +/- 9.3 kg, BMI 22.8 +/- 3.1 kg·m-2) with the current MRTA system has demonstrated an improvement in within-trial reliability for unsupported tibial El measurement with a coefficient of variation of 11.2%. These results demonstrate the ability of the system to measure tibial response characteristics when both proximal and distal ends are free of rigid support. Long-term measurement reliability is still problematic with a coefficient of variation of 36.5% for a set of 4 measurements spanning 21 months.
机译:机械响应组织分析(MRTA)提供了一种估算长骨横截面弯曲刚度(EI)的非侵入性手段,因此可以用作骨强度的预测指标。根据梁振动理论,从长骨对低频(70--500Hz)刺激的点阻抗响应中得出骨弯曲刚度的估算值。 MRTA展示了能够可靠地估计人尺骨弯曲刚度的能力,且测试之间的变异系数为5%,并且猴子胫骨的体内测量已通过离体三点机械弯曲测试得到了验证。人体胫骨MRTA的测量已经达到了12%的试验间变异系数,因此,人们开发了一种新的物理MRTA配置和改进的计算机算法,试图提高这种可靠性。新的配置消除了刚性的近端和远端胫骨约束,并通过12参数算法模拟了组织行为,该算法考虑了踝关节和膝关节的自由振动。仅使用硬件更改进行的初始测试以及在较早系统中使用的组织行为的7参数模型的应用均产生了不可接受的变化。随后的使用6、9和12参数模型的可靠性测试证明了适度的改进,从而促进了本研究中使用的更健壮的12参数模型的发展。使用当前的MRTA系统评估110名大学生女性(年龄20.2 +/- 1.8岁,身高163.3 +/- 5.9厘米,体重60.7 +/- 9.3千克,体重指数22.8 +/- 3.1千克·m-2),具有结果表明,对于不支持的胫骨El测量,试验内可靠性得到了改善,变异系数为11.2%。这些结果证明了当近端和远端都没有刚性支撑时,系统测量胫骨反应特征的能力。长期测量的可靠性仍然存在问题,一组21个月的4次测量的变异系数为36.5%。

著录项

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Biomedical.;Health Sciences Rehabilitation and Therapy.;Health Sciences Medicine and Surgery.;Health Sciences Nutrition.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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