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骨折愈合过程中弯曲刚度的体内测量。

In vivo measurement of bending stiffness in fracture healing.

作者信息

Hente Reiner, Cordey Jacques, Perren Stephan M

机构信息

University of Regensburg, Trauma Centre Regensburg, Franz-Josef-Strauss-Allee 11, D-93042 Regensburg, Germany.

出版信息

Biomed Eng Online. 2003 Mar 28;2:8. doi: 10.1186/1475-925X-2-8.

Abstract

BACKGROUND

Measurement of the bending stiffness a healing fracture represents a valid variable in the assessment of fracture healing. However, currently available methods typically have high measurement errors, even for mild pin loosening. Furthermore, these methods cannot provide actual values of bending stiffness, which precludes comparisons among individual fractures. Thus, even today, little information is available with regards to the fracture healing pattern with respect to actual values of bending stiffness. Our goals were, therefore: to develop a measurement device that would allow accurate and sensitive measurement of bending stiffness, even in the presence of mild pin loosening; to describe the course of healing in individual fractures; and help to evaluate whether the individual pattern of bending stiffness can be predicted at an early stage of healing.

METHODS

A new measurement device has been developed to precisely measure the bending stiffness of the healing fracture by simulating four-point-bending. The system was calibrated on aluminum models and intact tibiae. The influence of pin loosening on measurement error was evaluated. The system was tested at weekly intervals in an animal experiment to determine the actual bending stiffness of the fracture. Transverse fractures were created in the right tibia of twelve sheep, and then stabilized with an external fixator. At ten weeks, bending stiffness of the tibiae were determined in a four-point-bending test device to validate the in-vivo-measurement data.

RESULTS

In-vivo bending stiffness can be measured accurately and sensitive, even in the early phase of callus healing. Up to a bending stiffness of 10 Nm/degree, measurement error was below 3.4% for one pin loose, and below 29.3% for four pins loose, respectively. Measurement of stiffness data over time revealed a significant logarithmic increase between the third and seventh weeks, whereby the logarithmic rate of change among sheep was similar, but started from different levels. Comparative measurements showed that early individual changes between the third and fourth weeks can be used as a predictor of bending stiffness at seven weeks (r = 0.928) and at ten weeks (r = 0.710).

CONCLUSION

Bending stiffness can be measured precisely, with less error in the case of pin loosening. Prediction of the future healing course of the individual fracture can be assessed by changes from the third to the fourth week, with differences in stiffness levels. Therefore, the initial status of the fracture seems to have a high impact on the individual healing course.

摘要

背景

测量愈合骨折的弯曲刚度是评估骨折愈合的一个有效变量。然而,目前可用的方法通常具有较高的测量误差,即使对于轻度的钢针松动也是如此。此外,这些方法无法提供弯曲刚度的实际值,这使得无法在个体骨折之间进行比较。因此,即使在今天,关于弯曲刚度实际值的骨折愈合模式的信息也很少。因此,我们的目标是:开发一种测量装置,即使在存在轻度钢针松动的情况下,也能准确、灵敏地测量弯曲刚度;描述个体骨折的愈合过程;并有助于评估在愈合早期是否可以预测个体的弯曲刚度模式。

方法

开发了一种新的测量装置,通过模拟四点弯曲来精确测量愈合骨折的弯曲刚度。该系统在铝模型和完整胫骨上进行了校准。评估了钢针松动对测量误差的影响。在动物实验中每周对该系统进行测试,以确定骨折的实际弯曲刚度。在12只绵羊的右胫骨上制造横向骨折,然后用外固定器固定。在10周时,在四点弯曲测试装置中测定胫骨的弯曲刚度,以验证体内测量数据。

结果

即使在骨痂愈合的早期阶段,也能准确、灵敏地测量体内弯曲刚度。对于一根钢针松动,弯曲刚度达到10 Nm/度时,测量误差分别低于3.4%;对于四根钢针松动,测量误差低于29.3%。随着时间的推移对刚度数据的测量显示,在第三周和第七周之间有显著的对数增加,绵羊之间的对数变化率相似,但起始水平不同。比较测量表明,第三周和第四周之间的早期个体变化可作为七周(r = 0.928)和十周(r = 0.710)时弯曲刚度的预测指标。

结论

可以精确测量弯曲刚度,在钢针松动的情况下误差较小。通过第三周和第四周的变化以及刚度水平的差异,可以评估个体骨折未来的愈合过程。因此,骨折的初始状态似乎对个体愈合过程有很大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4202/153498/68e1afcf1db9/1475-925X-2-8-1.jpg

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