[手术绝经期激素动态及生化参数与骨转换相关性的统计分析]。

Y Satoh, Y Soeda, S Dokou
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引用次数: 2

摘要

对52例手术绝经妇女的激素动态和骨转换之间的关系进行了统计研究。采用Spearman秩检验,对包括激素和骨代谢参数在内的19个实验室项目的平均值进行分析。建立线性回归模型。基于Pearson相关矩阵对主成分进行分析。由Varimax旋转得到的因子加载形成矩阵,并评估其统计显著性。1. 通过对人工绝经(双侧和单侧)和卵巢切除术(OVX)方法(双侧或单侧)水平分别分析的数据进行检查,确定了显著相关性。对于双侧OVX患者,1-25-(OH)2D与E2或ASD、25-(OH)D与E2、E3、黄体酮或ASD、CT与黄体酮、ASD或睾酮、S.A1-P与FSH或LH、s.a a与LH呈正相关(0.01 < P, 0.05 < P)。PTH与E2或E3、CT与E2、E3与s.a酸- p或U.Ca/CRN、S.Ca与FSH呈弱正相关。S.A1-P与E2或孕酮呈负相关(0.01 < P, 0.05 < P), S.Ca与睾酮呈负相关(0.05 < P)。与ASD呈较弱负相关的对为S.A1-P。对于单侧OVX患者,显示正相关的对是1-25-(OH)2D与E2、ASD或睾酮,25-(OH)D与E2、E3、黄体酮或ASD, CT与黄体酮、ASD或睾酮,以及PTH与ASD。PTH与E2或E3呈正相关,CT与E2呈正相关。ca与睾酮呈负相关。与ASD呈较弱负相关的对为S.A1-P。两组之间存在着微小但显著的差异。然而,性类固醇中的雌激素和雄激素,以及骨参数中的s1 - p、s1 - ca、CT、PTH、1-25-(OH)2D和25-(OH)D,都以不同的速率在早期或晚期发生变化,但与OVX诱导的高骨周转率(尤其是双侧)相关。2. 在人工绝经水平上分析的数据确定了所有参数之间的显著相关性。(摘要删节为400字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Statistic analysis for the association of hormone dynamics and biochemical parameters with bone turnover in surgically induced menopause].

The association between hormone dynamics and bone turnover was statistically examined in 52 women with surgically induced menopause. The mean values of 19 laboratory items which included hormones as well as parameters of bone metabolism were obtained and analyzed by Spearman's rank test. Linear regression models were established. Based on Pearson's correlation matrices, the principal components were analyzed. Matrices were formed from factor loading derived from Varimax's rotation, and their statistical significance was evaluated. 1. Significant correlations were determined from both the examination of the data analyzed separately at the levels of artificial menopause (bilateral and unilateral) and oophorectomy (OVX) method (bilateral or unilateral). For the patients who had bilateral OVX, the pairs showing a positive correlation (0.01 < P, 0.05 < P) were 1-25-(OH)2D with E2 or ASD, 25-(OH)D with E2, E3, Progesterone, or ASD, CT with Progesterone, ASD, or Testosterone, S.A1-P with FSH or LH, and S.Ca with LH. The pairs showing a weaker positive correlation were PTH with E2 or E3, CT with E2, E3 with S.Acid-P or U.Ca/CRN, and S.Ca with FSH. The pairs showing a negative correlation (0.01 < P, 0.05 < P) were S.A1-P with E2 or Progesterone, and S.Ca with Testosterone. The pairs showing a weaker negative correlation were S.A1-P with ASD. For the patients who had unilateral OVX, the pairs showing a positive correlation were 1-25-(OH)2D with E2, ASD, or Testosterone, 25-(OH)D with E2, E3, Progesterone, or ASD, CT with Progesterone, ASD, or Testosterone, and PTH with ASD. The pairs showing a weaker positive correlation were PTH with E2 or E3, and CT with E2. The pairs showing a negative correlation were S.Ca with Testosterone. The pairs showing a weaker negative correlation were S.A1-P with ASD. There was a small but significant difference between the two groups. However, Estrogen and Androgen in sex steroids, and S.A1-P, S.Ca, CT, PTH, 1-25-(OH)2D, and 25-(OH)D in bone parameters, all changed early or late at different rates but participated concomitantly with the high bone turn-over induced by OVX, particularly in bilateral. 2. Significant correlations among all parameters were determined for data analyzed at the level of artificial menopause.(ABSTRACT TRUNCATED AT 400 WORDS)

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