Animal Genetics and Breeding Unit, University of New England, Armidale New South Wales 2351, Australia.
J Anim Sci. 2013 Jun;91(6):2583-6. doi: 10.2527/jas.2012-6056. Epub 2013 Mar 18.
A computing strategy to update the inverse of the genomic relationship matrix when new genotypes become available is described. It is shown that re-using results of previous computations can result in substantial reductions in computing time required. For instance, when the number of individuals increased by about 1% for matrices larger than 15,000, the time required for updating was less than 7% of that used for direct inversion from scratch.
描述了一种在获得新基因型时更新基因组关系矩阵逆矩阵的计算策略。结果表明,重用先前计算的结果可以显著减少所需的计算时间。例如,当矩阵大于 15000 时,个体数量增加约 1%时,更新所需的时间不到从头直接反转所需时间的 7%。