计算机断层扫描显示的男性第一肋骨和肩胛骨冠突光学密度随年龄和胸廓形状的变化

К. V. Ladygin, I. N. Yashina, S. Klochkova, А. I. Ladygina, F. D. Yashin
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The chest shape determines age-related changes in the optical density of bone tissue. In individuals with intermediate and transverse chest shapes, a decrease in the optical density of bone tissue at the base of scapula coracoid process begins to appear at the age of 30–50 years. These changes are most pronounced for the base of coracoid process, regardless of the chest shape, at the age of over 50 years. A decrease in the optical density of the first rib tubercle manifests over the age of 50 years in individuals with intermediate and transverse chest shape. In individuals with a gracile chest shape, the optical density of the bone structure is more stable. The tubercle of the first rib, along with the base of coracoid process, can serve as a prognostic area in the diagnosis of systemic osteoporosis in individuals with transverse and intermediate chest shape. Conclusion. 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引用次数: 0

摘要

本研究的目的是评估无骨质疏松症症状的不同年龄男性肩胛骨第一肋骨和肩胛骨基部冠状突骨组织光学密度的动态变化,这取决于胸廓形状。材料和方法该研究对 191 名年龄在 20 岁至 70 岁之间的男性胸部进行了断层扫描。使用 RadiAnt 程序对断层扫描进行轴向测量。扫描测量了第一肋骨结节、第一肋骨远端骨质部分和肩胛骨冠状突基部的光密度。所有测量均按年龄和胸型随机抽取男性进行。骨测量结果经统计学方法处理。结果胸型决定了骨组织光学密度与年龄有关的变化。中等胸型和横胸型的人在 30-50 岁时,肩胛骨冠突基部骨组织的光学密度开始下降。无论胸型如何,肩胛骨冠突基部的这些变化在 50 岁以上时最为明显。中等胸型和横向胸型的人在 50 岁以后,第一肋骨结节的光密度会下降。而在婀娜胸型的人中,骨结构的光学密度较为稳定。第一肋骨结节和冠状突基底可作为诊断横型和中间型胸廓者全身性骨质疏松症的预后区域。结论根据 SCT 层析成像,对不同胸型的人的第一肋骨和肩胛骨骨组织光学密度变化指标进行确定性分析,客观上有助于预测和随后验证骨质疏松症的表现。我们已经确定了骨组织密度变化的依赖性以及所研究的第一肋骨和肩胛突参数之间的相关结构,这表明存在明显的体型变异,在制定修复治疗方案和预测不同年龄人群骨科疾病的进程时必须考虑到这一点。
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Changes in the Optical Density of the First Rib and the Coracoid Process of Scapula in Men Depending on Age and Chest Shape According to Computed Tomography
The purpose of the study was to evaluate the dynamics of changes in the optical density of bone tissue of the first rib and the base coracoid process of scapula in men of different ages without signs of osteoporosis depending on chest shape. Material and methods. The study was performed on tomograms of the chest of 191 men aged from 20 to 70 years. Measurements on tomograms were carried out in the axial plane using the RadiAnt program. The scans measured the optical density of the first rib tubercle, the distal bony part of the first rib, and the base of scapula coracoid process. All measurements were taken in men randomized by age and chest shape. The results of osteometry were processed by statistical methods. Results. The chest shape determines age-related changes in the optical density of bone tissue. In individuals with intermediate and transverse chest shapes, a decrease in the optical density of bone tissue at the base of scapula coracoid process begins to appear at the age of 30–50 years. These changes are most pronounced for the base of coracoid process, regardless of the chest shape, at the age of over 50 years. A decrease in the optical density of the first rib tubercle manifests over the age of 50 years in individuals with intermediate and transverse chest shape. In individuals with a gracile chest shape, the optical density of the bone structure is more stable. The tubercle of the first rib, along with the base of coracoid process, can serve as a prognostic area in the diagnosis of systemic osteoporosis in individuals with transverse and intermediate chest shape. Conclusion. A deterministic approach to the described indicators of changes in the optical density of bone tissue of the first rib and scapula in individuals with different chest shapes, according to SCT tomograms, objectively helps to predict and subsequently verify the manifestations of osteoporosis. The dependences we have identified on changes in bone tissue density and in the structure of correlations between the studied parameters of the first rib and the coracoid process indicate pronounced somatotypic variability, which must be taken into account when developing restorative treatment and predicting the course of orthopedic diseases in people of different age.
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