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Genetic architecture of hand quantitative ultrasound measures: a population-based study in a Sardinian genetic isolate.

机译:手工定量超声测量的遗传结构:撒丁岛遗传分离物中基于人群的研究。

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It is now recognized that quantitative ultrasound (QUS) measures may predict osteoporotic fracture risk independently of bone mineral density. Although many studies have examined genetic and environmental components of bone mineral density and calcaneal QUS measures, few of them were addressed to phalangeal QUS phenotypes, and none to graphic trace parameters. This study aims to evaluate the relative contribution of genetics in the expression of phalangeal QUS traits in the adult healthy population of a Sardinian genetic isolate. Our sample includes 6056 men and women aged 30-103 years, from 43 extended pedigrees recruited in 10 villages of Ogliastra region in occasion of a large epidemiologic survey. Amplitude-dependent speed of sound (AD-SoS), fast wave amplitude (FWA), signal dynamic (SDy), bone transmission time (BTT) and ultrasound bone profile index (UBPI) were obtained from the non-dominant hand using the IGEA DBM Sonic Bone Profiler. These phenotypes were first regressed on age, anthropometric and bioimpedance measures, serum calcium, phosphorus and alkaline phosphatase, alcohol and caffeine consumption, smoking status, exercise and also months since menopause and estrogens use in women. Adjusted QUS parameters were then analyzed by univariate and bivariate variance component models to obtain heritability estimates and genetic and environmental correlations. QUS parameters were correlated to age, anthropometric and bioimpedance measures, serum phosphorus, alkaline phosphatase and to reproductive history and menopause in women. All phenotypes demonstrated substantial heritabilities ranging from 0.29+/-0.03 for SDy to 0.55+/-0.03 for FWA. Proportion of variance due to all covariates ranged from 36% for SDy to 59% for BTT. Many significant genetic and environmental correlations were found between the different QUS measures. In this study, genetic factors appear to play a relevant role in determining hand QUS measures even when taking into account various important environmental factors. Furthermore, the modest genetic correlations may imply the existence of partially unique sets of genes affecting different QUS traits, thus suggesting that QUS parameters measure different properties of bone tissue.
机译:现在已经认识到,定量超声(QUS)测量可以独立于骨矿物质密度预测骨质疏松性骨折的风险。尽管许多研究已经检查了骨矿物质密度和跟骨QUS量度的遗传和环境成分,但很少涉及指骨QUS表型,而没有涉及图形痕量参数。这项研究旨在评估撒丁岛成年隔离群的成年健康人群中遗传因素在指骨QUS性状表达中的相对贡献。在大规模的流行病学调查中,我们从Ogliastra地区10个村庄招募的43个扩展谱系中包括6056名年龄在30-103岁之间的男性和女性。使用IGEA从非优势手获得与振幅有关的声音速度(AD-SoS),快波振幅(FWA),信号动态(SDy),骨骼传输时间(BTT)和超声骨骼轮廓指数(UBPI) DBM Sonic Bone Profiler。这些表型首先根据年龄,人体测量学和生物阻抗测量,血清钙,磷和碱性磷酸酶,酒精和咖啡因的摄入量,吸烟状况,运动以及女性绝经和使用雌激素后数月进行回归。然后,通过单变量和双变量方差分量模型对调整后的QUS参数进行分析,以获得遗传力估计值以及遗传和环境相关性。 QUS参数与年龄,人体测量学和生物阻抗测量,血清磷,碱性磷酸酶以及妇女的生殖史和更年期相关。所有表型均显示出显着的遗传力,范围从SDy的0.29 +/- 0.03到FWA的0.55 +/- 0.03。由所有协变量引起的方差比例范围从SDy的36%到BTT的59%不等。在不同的QUS措施之间发现了许多重要的遗传和环境相关性。在这项研究中,即使考虑到各种重要的环境因素,遗传因素在决定手部QUS措施方面也似乎起着相关的作用。此外,适度的遗传相关性可能暗示存在影响不同QUS性状的基因的部分唯一集合,因此表明QUS参数可测量骨组织的不同特性。

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