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家兔颅骨生长测量的变异性

Variability of measurements of cranial growth in the rabbit.

作者信息

Alberius P, Malmberg M, Persson S, Selvik G

机构信息

Department of Plastic Surgery, Sahlgrenska Hospital, Göteborg, Sweden.

出版信息

Am J Anat. 1990 Aug;188(4):393-400. doi: 10.1002/aja.1001880407.

Abstract

This study concerns techniques used in experimental cranial growth research: roentgen cephalometry, roentgen stereophotogrammetry, and gross measurements (osteometry). A comparison of the precision of these methods has not been found in the literature. Computation of technical errors is fundamental to the sound evaluation of registered findings, and such a presentation must be obligatory in all biometric reports. We compared the measurement error of roentgen cephalometric and osteometric data with that obtained by roentgen stereophotogrammetry (RSA). RSA demonstrates a superior replicability, and this technique gives possibilities for kinematic and volumetric determinations simultaneously with distance evaluation. Roentgen cephalometry has the advantage of enabling distance and angular measurements between any well-defined skeletal points or lines. This technique, preferably after implantation of bone markers, is a reliable alternative, but optimal results necessitates calculations of the magnification factor for each bone segment involved. Direct osteometry does not contribute additional information, but problems of image magnification are omitted. Preferably, one individual should perform all measurements regardless of the method used. Growth rates and values calculated by one technique cannot be directly transformed to some other approach. In all probability, assessments of distance changes would gain substantially by using one technical approach consistently throughout actual age intervals. The least variable measurements of sutural growth are made for sutures growing primarily in one plane and with substantial growth rates. One must realize that differences among studies may be due to the limitations of, in particular, the cephalometric and osteometric techniques.

摘要

本研究涉及实验性颅骨生长研究中使用的技术

X线头影测量法、X线立体摄影测量法和大体测量法(骨测量法)。文献中尚未发现对这些方法精度的比较。技术误差的计算对于对记录结果进行合理评估至关重要,并且这种呈现方式在所有生物统计学报告中都必须是强制性的。我们将X线头影测量和骨测量数据的测量误差与通过X线立体摄影测量法(RSA)获得的误差进行了比较。RSA显示出更高的可重复性,并且该技术在进行距离评估的同时还能进行运动学和体积测定。X线头影测量法的优点是能够在任何明确界定的骨骼点或线之间进行距离和角度测量。该技术,最好是在植入骨标记物之后,是一种可靠的替代方法,但要获得最佳结果需要计算每个相关骨段的放大倍数。直接骨测量法不会提供额外信息,但省略了图像放大的问题。最好由同一个人进行所有测量,无论使用何种方法。一种技术计算出的生长速率和数值不能直接转换为其他方法。很有可能,在整个实际年龄区间始终使用一种技术方法,距离变化的评估将有很大收获。对主要在一个平面内生长且生长速率可观的缝线进行缝合生长的测量时,其变异性最小。必须认识到,不同研究之间的差异可能尤其归因于头影测量和骨测量技术的局限性。

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