4.6 Article

TEMPTING system: A hybrid method of rule and machine learning for temporal relation extraction in patient discharge summaries

期刊

JOURNAL OF BIOMEDICAL INFORMATICS
卷 46, 期 -, 页码 S54-S62

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jbi.2013.09.007

关键词

Temporal relation extraction; Natural language processing; Text mining; Hybrid method; Maximum entropy

资金

  1. Informatics for Integrating Biology and the Bedside (i2b2)
  2. NIH/National Library of Medicine (NLM) [2U54LM008748]
  3. National Heart, Lung and Blood Institute (NHLBI)
  4. NIH NLM [1R13LM01141101]
  5. Ministry of Economic Affairs of the Republic of China
  6. National Science Council of Taiwan [NSC 101-2319-B-010-002, NSC 102-2319-B-010-002, NSC-102-2218-E-038-001]
  7. Taipei Medical University [TMU101-AE1-B55]

向作者/读者索取更多资源

Patient discharge summaries provide detailed medical information about individuals who have been hospitalized. To make a precise and legitimate assessment of the abundant data, a proper time layout of the sequence of relevant events should be compiled and used to drive a patient-specific timeline, which could further assist medical personnel in making clinical decisions. The process of identifying the chronological order of entities is called temporal relation extraction. In this paper, we propose a hybrid method to identify appropriate temporal links between a pair of entities. The method combines two approaches: one is rule-based and the other is based on the maximum entropy model. We develop an integration algorithm to fuse the results of the two approaches. All rules and the integration algorithm are formally stated so that one can easily reproduce the system and results. To optimize the system's configuration, we used the 2012 i2b2 challenge TLINK track dataset and applied threefold cross validation to the training set. Then, we evaluated its performance on the training and test datasets. The experiment results show that the proposed TEMPTING (TEMPoral relaTion extractING) system (ranked seventh) achieved an F-score of 0.563, which was at least 30% better than that of the baseline system, which randomly selects TLINK candidates from all pairs and assigns the TLINK types. The TEMPTING system using the hybrid method also outperformed the stage-based TEMPTING system. Its F-scores were 3.51% and 0.97% better than those of the stage-based system on the training set and test set, respectively. (C) 2013 Elsevier Inc. All rights reserved.

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