[1]胡嘉靖,刘思佳.我国卫生资源配置效率提升路径研究 ——基于模糊集定性比较分析[J].卫生经济研究,2022,39(8):56-58,63.
 HU Jiajing,LIU Sijia.Research on the Path of Improving the Efficiency of Health Resource Allocation in China——Qualitative Comparative Analysis Based on Fuzzy Sets[J].Journal Press of Health Economics Research,2022,39(8):56-58,63.
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我国卫生资源配置效率提升路径研究
——基于模糊集定性比较分析
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卫生经济研究[ISSN:1004-7778/CN:33-1056/F]

卷:
39
期数:
2022年8期
页码:
56-58,63
栏目:
卫生资源
出版日期:
2022-07-27

文章信息/Info

Title:
Research on the Path of Improving the Efficiency of Health Resource Allocation in China
——Qualitative Comparative Analysis Based on Fuzzy Sets
作者:
胡嘉靖1刘思佳1
1.内蒙古医科大学卫生管理学院,内蒙古 呼和浩特 010110
Author(s):
HU Jiajing LIU Sijia
College of Health Management, Inner Mongolia Medical University, Hohhot Inner Mongolia 010110, China
关键词:
卫生资源配置效率提升路径模糊集定性比较分析
Keywords:
medical resource allocation efficiency promotion pathway the fuzzy set qualitative comparative analysis method
分类号:
R19
文献标志码:
A
摘要:
目的:研究提升我国卫生资源配置效率的路径。方法:利用数据包络分析(DEA)的BCC模型,分析我国31个省(区、市)的卫生资源配置效率,并使用模糊集定性比较分析方法(fsQCA)分析高效率的路径组态。结果:2019年我国31个省(区、市)中,17个达到DEA有效,平均效率值为0.939,达到高效率卫生资源配置的路径有4条——市场驱动型、政府驱动型、经济发达地区合理配置型(2条)。结论:我国省域卫生资源配置效率整体状况较好,但存在部分地区效率低下的状况,可根据当地实际情况,借鉴合适的高效率路径进行改善。
Abstract:
Objective To explore the path to improve the efficiency of health resource allocation in China. Methods The BCC model of data envelopment analysis (DEA) was used to analyze the allocation efficiency of health resources in 31 provinces (autonomous regions and municipalities) in China, and the fuzzy set qualitative comparative analysis method (fsQCA) was adopted to analyze the efficient path configuration. Results In 2019, among the 31 provinces (autonomous regions and municipalities), 17 reached the effective DEA, and the average efficiency value was 0.939. There were 4 paths to achieve high-efficiency health resource allocation, such as market-driven, government-driven, and reasonable configuration type in economically developed regions (2 paths). Conclusion The overall situation of health resource allocation efficiency in China is good, but there is a low efficiency in some areas, which can be improved according to the actual local conditions and by referring to appropriate high-efficiency paths.

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更新日期/Last Update: 2022-07-27