Chen Bo, Huang Haiying, Zhou Qiang, Peng Shan, Jia Hongyu, Ji Tianxing
Department of Laboratory Medicine, the Second Affiliated Hospital of Guangzhou Medical University, Guangzhou 510260, Guangdong, China, Corresponding author: Huang Haiying, Email:
Zhonghua Wei Zhong Bing Ji Jiu Yi Xue. 2014 Nov;26(11):832-5. doi: 10.3760/cma.j.issn.2095-4352.2014.11.013.
To develop a blood gas, acid-base imbalance analysis computer software to diagnose systematically, rapidly, accurately and automatically determine acid-base imbalance type, and evaluate the clinical application.
Using VBA programming language, a computer aided diagnostic software for the judgment of acid-base balance was developed. The clinical data of 220 patients admitted to the Second Affiliated Hospital of Guangzhou Medical University were retrospectively analyzed. The arterial blood gas [pH value, HCO(3)(-), arterial partial pressure of carbon dioxide (PaCO₂)] and electrolytes included data (Na⁺ and Cl⁻) were collected. Data were entered into the software for acid-base imbalances judgment. At the same time the data generation was calculated manually by H-H compensation formula for determining the type of acid-base imbalance. The consistency of judgment results from software and manual calculation was evaluated, and the judgment time of two methods was compared.
The clinical diagnosis of the types of acid-base imbalance for the 220 patients: 65 cases were normal, 90 cases with simple type, mixed type in 41 cases, and triplex type in 24 cases. The accuracy of the judgment results of the normal and triplex types from computer software compared with which were calculated manually was 100%, the accuracy of the simple type judgment was 98.9% and 78.0% for the mixed type, and the total accuracy was 95.5%. The Kappa value of judgment result from software and manual judgment was 0.935, P=0.000. It was demonstrated that the consistency was very good. The time for software to determine acid-base imbalances was significantly shorter than the manual judgment (seconds:18.14 ± 3.80 vs. 43.79 ± 23.86, t=7.466, P=0.000), so the method of software was much faster than the manual method.
Software judgment can replace manual judgment with the characteristics of rapid, accurate and convenient, can improve work efficiency and quality of clinical doctors and has great clinical application promotion value.
开发一款血气、酸碱失衡分析计算机软件,以系统、快速、准确且自动地判定酸碱失衡类型,并评估其临床应用价值。
运用VBA编程语言,开发一款用于判断酸碱平衡的计算机辅助诊断软件。回顾性分析广州医科大学附属第二医院收治的220例患者的临床资料。收集动脉血气[pH值、HCO₃⁻、动脉血二氧化碳分压(PaCO₂)]及电解质(Na⁺和Cl⁻)数据。将数据录入软件进行酸碱失衡判断。同时通过H-H代偿公式手动计算数据以确定酸碱失衡类型。评估软件判断结果与手动计算结果的一致性,并比较两种方法的判断时间。
220例患者酸碱失衡类型的临床诊断结果为:65例正常,90例单纯型,41例混合型,24例三重酸碱失衡型。计算机软件判断正常及三重酸碱失衡型结果与手动计算结果相比准确率为100%,单纯型判断准确率为98.9%,混合型为78.0%,总准确率为95.5%。软件判断结果与手动判断的Kappa值为0.935,P = 0.000。表明一致性非常好。软件判定酸碱失衡的时间显著短于手动判断(秒:18.14 ± 3.80 vs. 43.79 ± 23.86,t = 7.466,P = 0.000),所以软件方法比手动方法快得多。
软件判断具有快速、准确、便捷的特点,可取代人工判断,能提高临床医生的工作效率和质量,具有极大的临床应用推广价值。