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Development of blood demand prediction model using artificial intelligence based on national public big data

Boosting(机器学习) 大数据 梯度升压 计算机科学 预测建模 人工智能 均方误差 集合预报 集成学习 血液制品 机器学习 测距 决策树 统计 数据建模 支持向量机 均方预测误差 航程(航空) 数据挖掘 医学 医疗保健 开源 医疗保健系统 统计模型 平均绝对误差 输血 近似误差
作者
Hi Jeong Kwon,Sholhui Park,Young Hoon Park,Seung Min Baik,Dong Jin Park
出处
期刊:Digital health [SAGE Publishing]
卷期号:10 被引量:5
标识
DOI:10.1177/20552076231224245
摘要

Objective Modern healthcare systems face challenges related to the stable and sufficient blood supply of blood due to shortages. This study aimed to predict the monthly blood transfusion requirements in medical institutions using an artificial intelligence model based on national open big data related to transfusion. Methods Data regarding blood types and components in Korea from January 2010 to December 2021 were obtained from the Health Insurance Review and Assessment Service and Statistics Korea. The data were collected from a single medical institution. Using the obtained information, predictive models were developed, including eXtreme Gradient Boosting (XGBoost), Light Gradient Boosting Machine (LGBM), and category boosting (CatBoost). An ensemble model was created using these three models. Results The prediction performance of XGBoost, LGBM, and CatBoost demonstrated a mean absolute error ranging from 14.6657 for AB+ red blood cells (RBCs) to 84.0433 for A+ platelet concentrate (PC) and a root mean squared error ranging from 18.5374 for AB+ RBCs to 118.6245 for B+ PC. The error range was further improved by creating ensemble models, wherein the department requesting blood was the most influential parameter affecting transfusion prediction performance for different blood products and types. Except for the department, the features that affected the prediction performance varied for each product and blood type, including the number of RBC antibody screens, crossmatch, nationwide blood donations, and surgeries. Conclusion Based on blood-related open big data, the developed blood-demand prediction algorithm can efficiently provide medical facilities with an appropriate volume of blood ahead of time.
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