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作 者:冉凌霄 王东敏 许珂[2] 王聪[2] 曹华[3] 寸薇 蒋艳[4] RAN Lingxiao;WANG Dongmin;XU Ke;WANG Cong;CAO Hua;CUN Wei;JIANG Yan
机构地区:[1]四川大学华西护理学院,成都市610041 [2]四川大学华西医院循证护理研究室 [3]四川大学华西医院神经外科 [4]四川大学华西医院护理部
出 处:《中华护理杂志》2025年第8期1012-1018,共7页Chinese Journal of Nursing
基 金:四川省自然科学基金项目(青年基金项目)(2024NSFSC1508);四川大学华西医院“1点3点5工程”人工智能项目(ZYAI24055)。
摘 要:目的对国内外基于人体三维模型的有限元分析(finite element analysis,FEA)在压力性损伤(pressure ulcer,PU)预防中应用的原始研究进行范围审查,旨在提供改善PU预防策略的新方向。方法系统检索PubMed、Embase、CINAHL、Web of Science、Cochrane Library、中国生物医学文献数据库、中国知网、万方数据库、维普医学数据库、Engineering Village Compendex等数据库,检索时限为建库至2024年7月29日。以澳大利亚乔安娜布里格斯研究所的范围综述指南为方法学框架,对结果进行分析和规范化报告。结果纳入30篇文献。基于人体三维模型的FEA一般方法为建立几何模型、网格划分、定义材料属性、施加载荷和边界条件、方程求解。根据纳入研究的主要内容,基于人体三维模型的FEA在PU预防中的应用涉及风险人群识别(n=9)、体位管理(n=9)、预防性敷料(n=10)、支撑面(n=7)4个范畴。结论基于人体三维模型的FEA为PU生物力学机制研究创造了条件,为临床预防措施的补充和优化提供了科学依据。未来研究应一方面加强临床实践与仿真技术的结合,另一方面需不断优化仿真技术和干预方案。Objective A scoping review of domestically and internationally published studies on finite element analysis(FEA)based on three-dimensional(3D)human body model in preventing pressure ulcer(PU)was conducted,aiming to provide new directions for improving the prevention strategies of pressure ulcer.Methods We conducted a systematic search in both Chinese and English medical databases,including PubMed,Embase,CINAHL,Web of Science,Cochrane Library,Sinomed,CNKI,Wanfang and VIP,and engineering database(Engineering Village Compen-dex).The search period was from the inception of each database to July 29,2024.The information was extracted,and the results were analyzed and standardized for reporting.Results A total of 30 studies were included.The general methods of FEA based on 3D human body model include establishing geometric model,meshing,defining material properties,loading and setting boundary conditions,and solving equations.According to the contents of studies,they could be categorized into 4 distinct application domains,including identification of risk groups(n=9),position management(n=9),preventive dressings(n=10)and supportive surfaces(n=7).Conclusion FEA based on 3D human body model provides a foundation to PU biomechanical mechanism research and a scientific basis to the supplement and optimization of clinical prevention.Future studies should integrate clinical problems with simulations and further optimize simulations techniques and protocols.
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