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人类胎儿股骨干初级骨化中心的定量解剖学

Quantitative anatomy of the primary ossification center of the femoral shaft in human fetuses.

作者信息

Baumgart Mariusz, Wiśniewski Marcin, Grzonkowska Magdalena, Badura Mateusz, Małkowski Bogdan, Szpinda Michał

机构信息

Department of Normal Anatomy, The Ludwik Rydygier Collegium Medicum in Bydgoszcz, The Nicolaus Copernicus University in Toruń, Łukasiewicza 1 Street, 85-821, Bydgoszcz, Poland.

Department of Positron Emission Tomography and Molecular Imaging, The Ludwik Rydygier Collegium Medicum in Bydgoszcz, The Nicolaus Copernicus University in Toruń, Łukasiewicza 1 Street, 85-821, Bydgoszcz, Poland.

出版信息

Surg Radiol Anat. 2017 Nov;39(11):1235-1242. doi: 10.1007/s00276-017-1861-8. Epub 2017 Apr 25.

Abstract

PURPOSE

Early clinical distinction of congenital defects in the femur is extremely important, as it determines the prognosis of the development of the lower limb. This study was performed to quantitatively examine the primary center of ossification in the femoral shaft with respect to its linear, planar, and volumetric parameters.

MATERIALS AND METHODS

Using methods of CT, digital-image analysis, and statistics, the size of the primary ossification center of the femoral shaft in 47 spontaneously aborted human fetuses aged 17-30 weeks was studied.

RESULTS

With no sex and laterality differences, the best fit growth dynamics for femoral shaft ossification center was modelled by the following functions: y = 5.717 + 0.040 × (age) ± 2.905 (R  = 0.86) for its length, y = -3.579 + 0.368 × age ± 0.529 (R  = 0.88) for its proximal transverse diameter, y = -1.105 + 0.187 × age ± 0.309 (R  = 0.84) for its middle transverse diameter, y = -2.321 + 0.323 × age ± 0.558 (R  = 0.83) for its distal transverse diameter, y = -50.306 + 0.308 × (age) ± 18.289 (R  = 0.90) for its projection surface area, and y = -91.458 + 0.390 × (age) ± 92.146 (R  = 0.88) for its volume.

CONCLUSIONS

The size of the femoral shaft ossification center displays neither sex nor laterality differences. The ossification center in the femoral shaft follows quadratic functions with respect to its length and projection surface area, linear functions with respect to its proximal, middle, and distal transverse diameters, and a cubic function with respect to its volume. The obtained morphometric data of the femoral shaft ossification center are considered normative for respective prenatal weeks and may be of relevance in both the estimation of fetal ages and the ultrasound diagnostics of congenital defects.

摘要

目的

早期临床鉴别股骨先天性缺陷极为重要,因为它决定下肢发育的预后。本研究旨在定量检测股骨干骨化中心的线性、平面和体积参数。

材料与方法

采用CT、数字图像分析和统计学方法,研究了47例17 - 30周自然流产人胎儿股骨干初级骨化中心的大小。

结果

股骨干骨化中心的生长动力学在性别和左右侧别上无差异,其最佳拟合函数如下:长度:y = 5.717 + 0.040×(年龄)±2.905(R = 0.86);近端横径:y = -3.579 + 0.368×年龄±0.529(R = 0.88);中间横径:y = -1.105 + 0.187×年龄±0.309(R = 0.84);远端横径:y = -2.321 + 0.323×年龄±0.558(R = 0.83);投影表面积:y = -50.306 + 0.308×(年龄)±18.289(R = 0.90);体积:y = -91.458 + 0.390×(年龄)±92.146(R = 0.88)。

结论

股骨干骨化中心大小在性别和左右侧别上均无差异。股骨干骨化中心在长度和投影表面积方面遵循二次函数,在近端、中间和远端横径方面遵循线性函数,在体积方面遵循三次函数。所获得的股骨干骨化中心形态计量学数据被认为是各孕周的正常值,可能在估计胎儿年龄和先天性缺陷的超声诊断中具有相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/474d/5644710/88d7245d2cd6/276_2017_1861_Fig1_HTML.jpg

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