自然语言处理辅助检测成人住院病人质子泵抑制剂的不当使用。

IF 1.6 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Yan Yan, Chao Ai, Jike Xie, Zhaoshuai Ji, Xuesi Zhou, Zhonghao Chen, Ji Wu
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引用次数: 0

摘要

目的:建立质子泵抑制剂临床应用监测系统(PPI-MS建立质子泵抑制剂临床应用监测系统(PPI-MS),加强对成年住院患者不适当使用 PPI 的检测和干预:方法:将自然语言处理技术应用于治疗性 PPI 应用的适应症识别和预防性 PPI 应用的入院记录识别评估。症状判断基于时态否定模型和正则表达式。临床 PPI 应用的循证规则被嵌入到 PPI-MS 的构建中。对2022年7月至2023年7月期间使用PPI的9421份病历进行了分析,以验证该系统的性能,并找出与临床PPI使用不当有关的常见问题:在9421例使用PPI的住院患者中,4736例(50.27%)用于预防,其余用于治疗。在预防用药中,2274 名患者(48.02%)被确认为接受了不适当的预防性 PPI。主要原因是在没有适应症的情况下进行了不适当的预防。此外,还发现了 258 例治疗性 PPI 使用不当的病例,主要涉及使用埃索美拉唑治疗消化性溃疡和卓-艾综合征。在人工参与的情况下,PPI 合理用药监测系统的效率是人工监测的 32 倍。在预防性 PPI 使用不当的病例中,45.29% 是由于缺乏适应症,28.34% 涉及给药途径不当,15.74% 与给药频率不当有关,10.62% 归因于药物选择不当。使用抗血小板和抗凝血药物的病例有 933 例,使用非甾体抗炎药物的病例有 708 例。PPI-MS系统的总体准确率为88.69%,召回率为99.33%,F1得分率为93.71%:通过自然语言处理技术建立 PPI 药物监测系统,在确保准确率和召回率的同时,提高了评估效率和同质性。这为及时发现与临床 PPI 使用相关的问题提供了一种新的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural language processing assisted detection of inappropriate proton pump inhibitor use in adult hospitalised patients.

Objectives: To establish a clinical application monitoring system for proton pump inhibitors (PPI-MS) and to enhance the detection and intervention of inappropriate PPI use in adult hospitalised patients.

Methods: Natural language processing technology was applied to indication recognition of therapeutic PPI applications and the assessment of admission record recognition for preventive PPI applications. Symptom judgement was based on the tense-negation model and regular expressions. Evidence-based rules for clinical PPI application were embedded for the construction of PPI-MS. A total of 9421 patient records using PPI from July 2022 to July 2023 were analysed to validate the performance of the system and to identify common issues related to inappropriate clinical PPI use.

Results: Out of 9421 hospitalised patients detected using PPI, 4736 (50.27%) were used for prophylaxis and the rest for therapeutic use. Among the prophylactic medications, 2274 patients (48.02%) were identified as receiving inappropriate prophylactic PPI. The main reasons were inappropriate prophylaxis without indication. Additionally, 258 cases of inappropriate therapeutic PPI use were identified, mainly involving the use of esomeprazole for peptic ulcers and Zollinger-Ellison syndrome. The efficiency of the PPI rational medication monitoring system, when coupled with human involvement, was 32 times that of manual monitoring. Among cases of inappropriate prophylactic PPI use, 45.29% were due to lack of indications, 28.34% involved inappropriate administration routes, 15.74% were related to inappropriate dosing frequencies and 10.62% were attributed to inappropriate drug selection. There were 933 cases related to the use of antiplatelet and anticoagulant drugs and 708 cases related to the use of non-steroidal anti-inflammatory drugs. The overall accuracy of the PPI-MS system was 88.69%, with a recall rate of 99.33%, and the F1 score was 93.71%.

Conclusions: Establishing a PPI medication monitoring system through natural language processing technology, while ensuring accuracy and recall rates, improves evaluation efficiency and homogeneity. This provides a new solution for timely detection of issues relating to clinical PPI usage.

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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
104
审稿时长
6-12 weeks
期刊介绍: European Journal of Hospital Pharmacy (EJHP) offers a high quality, peer-reviewed platform for the publication of practical and innovative research which aims to strengthen the profile and professional status of hospital pharmacists. EJHP is committed to being the leading journal on all aspects of hospital pharmacy, thereby advancing the science, practice and profession of hospital pharmacy. The journal aims to become a major source for education and inspiration to improve practice and the standard of patient care in hospitals and related institutions worldwide. EJHP is the only official journal of the European Association of Hospital Pharmacists.
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