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非各向同性两层风险聚类的空间扫描统计量。

A spatial scan statistic for nonisotropic two-level risk cluster.

机构信息

State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, China.

出版信息

Stat Med. 2012 Jan 30;31(2):177-87. doi: 10.1002/sim.4341. Epub 2011 Aug 18.

Abstract

Spatial scan statistic methods are commonly used for geographical disease surveillance and cluster detection. The standard spatial scan statistic does not model any variability in the underlying risks of subregions belonging to a detected cluster. For a multilevel risk cluster, the isotonic spatial scan statistic could model a centralized high-risk kernel in the cluster. Because variations in disease risks are anisotropic owing to different social, economical, or transport factors, the real high-risk kernel will not necessarily take the central place in a whole cluster area. We propose a spatial scan statistic for a nonisotropic two-level risk cluster, which could be used to detect a whole cluster and a noncentralized high-risk kernel within the cluster simultaneously. The performance of the three methods was evaluated through an intensive simulation study. Our proposed nonisotropic two-level method showed better power and geographical precision with two-level risk cluster scenarios, especially for a noncentralized high-risk kernel. Our proposed method is illustrated using the hand-foot-mouth disease data in Pingdu City, Shandong, China in May 2009, compared with two other methods. In this practical study, the nonisotropic two-level method is the only way to precisely detect a high-risk area in a detected whole cluster.

摘要

空间扫描统计方法常用于地理疾病监测和集群检测。标准的空间扫描统计方法不会对属于检测到的集群的子区域的潜在风险的任何可变性进行建模。对于多层次风险集群,等渗空间扫描统计可以对集群中的集中高危核进行建模。由于疾病风险的变化因社会、经济或交通因素的不同而具有各向异性,因此实际的高危核不一定会占据整个集群区域的中心位置。我们提出了一种用于非各向同性两级风险集群的空间扫描统计方法,该方法可用于同时检测整个集群和集群内的非集中高危核。通过密集的模拟研究评估了这三种方法的性能。我们提出的非各向同性两级方法在两级风险集群场景下表现出更好的功效和地理精度,尤其是对于非集中高危核。我们使用 2009 年 5 月中国山东省平度市的手足口病数据说明了我们提出的方法,并与另外两种方法进行了比较。在这个实际研究中,非各向同性两级方法是唯一能够精确检测到检测到的整个集群中的高风险区域的方法。

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