Suppr超能文献

医院获得性军团菌病。冷却塔作为传染源的流行病学证明。

Nosocomial Legionnaires' disease. Epidemiologic demonstration of cooling towers as a source.

作者信息

Garbe P L, Davis B J, Weisfeld J S, Markowitz L, Miner P, Garrity F, Barbaree J M, Reingold A L

出版信息

JAMA. 1985 Jul 26;254(4):521-4. doi: 10.1001/jama.254.4.521.

Abstract

Investigation of a recent outbreak of nosocomial legionnaires' disease--initially thought to be due to the documented presence of Legionella pneumophila in the hospital potable water--showed that aerosols from one or more cooling towers were the actual source of infection. From June 27 to Aug 25, 1983, nosocomial legionnaires' disease developed in 15 persons at a hospital in Rhode Island. Twelve (80%) of 15 case-patients occupied rooms in building 1, unit B, compared with eight (28%) of 29 control patients (odds ratio = 10.8; 95% confidence interval = 1.4 to 85.6). Subsequent investigation demonstrated that water in a cooling tower located 100 ft upwind of unit B was heavily contaminated with L pneumophila, serogroup 1, subgroup 1, 2, 4, 5. The same strain was isolated from nine of the patients and from the make-up water for the tower. Active surveillance during the ten months following decontamination of the cooling tower identified no additional cases of nosocomial legionnaires' disease, although the hospital potable water had not been treated. While recommendations have been made for controlling nosocomial legionnaires' disease by heating or hyperchlorination of hospital potable water, this outbreak demonstrates the importance of an adequate epidemiologic-environmental investigation in choosing the appropriate control strategy.

摘要

对近期一起医院内军团病暴发的调查——最初认为是由于医院饮用水中记录到嗜肺军团菌的存在——显示来自一个或多个冷却塔的气溶胶才是实际感染源。1983年6月27日至8月25日,罗德岛一家医院有15人患上医院内军团病。15例患者中有12例(80%)住在1号楼B单元,而29名对照患者中有8例(28%)住在该单元(比值比=10.8;95%置信区间=1.4至85.6)。后续调查表明,位于B单元上风100英尺处的一个冷却塔中的水被嗜肺军团菌血清1型、1、2、4、5亚群严重污染。从9名患者以及冷却塔的补充水中分离出了相同菌株。在冷却塔去污后的十个月内进行的主动监测未发现医院内军团病的其他病例,尽管医院饮用水未进行处理。虽然已有人建议通过对医院饮用水进行加热或过度氯化来控制医院内军团病,但此次暴发表明在选择适当的控制策略时进行充分的流行病学-环境调查的重要性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验