Costello Tracy Jennifer, Swartz Michael David, Sabripour Mahyar, Gu Xiangjun, Sharma Rishika, Etzel Carol Jean
Department of Epidemiology, The University of Texas MD Anderson Cancer Center, Houston 77030, USA.
BMC Genet. 2003 Dec 31;4 Suppl 1(Suppl 1):S66. doi: 10.1186/1471-2156-4-S1-S66.
Our goal was to identify subgroups of sib pairs from the Framingham Heart Study data set that provided higher evidence of linkage to particular candidate regions for cardiovascular disease traits. The focus of this method is not to claim identification of significant linkage to a particular locus but to show that tree models can be used to identify subgroups for use in selected sib-pair sampling schemes.
We report results using a novel recursive partitioning procedure to identify subgroups of sib pairs with increased evidence of linkage to systolic blood pressure and other cardiovascular disease-related quantitative traits, using the Framingham Heart Study data set provided by the Genetic Analysis Workshop 13. This procedure uses a splitting rule based on Haseman-Elston regression that recursively partitions sib-pair data into homogeneous subgroups.
Using this procedure, we identified a subgroup definition for use as a selected sib-pair sampling scheme. Using the characteristics that define the subgroup with higher evidence for linkage, we have identified an area of focus for further study.
我们的目标是从弗雷明汉心脏研究数据集中识别出同胞对的亚组,这些亚组为心血管疾病性状与特定候选区域的连锁提供了更高的证据。该方法的重点不是声称识别出与特定基因座的显著连锁,而是表明树模型可用于识别亚组,以用于选定的同胞对抽样方案。
我们报告了使用一种新颖的递归划分程序的结果,该程序使用遗传分析研讨会13提供的弗雷明汉心脏研究数据集,识别出与收缩压及其他心血管疾病相关数量性状连锁证据增加的同胞对亚组。该程序使用基于哈斯曼-埃尔斯顿回归的分裂规则,将同胞对数据递归划分为同质亚组。
使用该程序,我们确定了一个亚组定义,用作选定的同胞对抽样方案。利用定义具有更高连锁证据的亚组的特征,我们确定了一个进一步研究的重点领域。