冠心病心血管药物护理模拟中基于生物医学药物负载的图像测试

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Guifang Song , Huili Chang , Nv Mu
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引用次数: 0

摘要

冠心病是一种常见的心血管疾病,其治疗效果受药物在体内分布和吸收的影响。生物医学载药图像检测技术可对药物在体内的分布和吸收情况进行定量评估。本研究旨在探索生物医学载药图像检测技术在冠心病心血管药物模拟护理中的应用,为优化药物治疗方案和个体化治疗提供参考。该研究收集了冠心病患者的临床资料和用药方案。然后,利用生物医学药物负荷图像检查技术,选择合适的药物负荷标记物,对患者进行影像学检查。然后采用定量分析方法处理图像数据,定量评估药物在心血管系统中的分布和吸收情况。通过生物医学成像技术,成功获得了冠心病患者药物分布和吸收的定量数据。这些数据揭示了药物在心血管系统中的动态变化,有助于医生优化药物治疗,提高治疗效果,实现个性化治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Image testing based on biomedical drug loading in cardiovascular drug care simulation for coronary heart disease

Coronary heart disease is a common cardiovascular disease, and its therapeutic effect is affected by the distribution and absorption of drugs in the body. Biomedical drug-carrying image testing technology can provide a quantitative assessment of drug distribution and absorption in the body. This study aims to explore the application of biomedical drug-carrying image testing technology in the simulation of cardiovascular drug care in coronary heart disease, so as to provide reference for the optimization of drug treatment plan and individualized treatment. The study collected clinical data and medication regiments of patients with coronary heart disease. Then, the imaging examination of patients was carried out by selecting appropriate drug loading markers using the biomedical drug loading image examination technology. Then quantitative analysis was used to process the image data to quantitatively evaluate the distribution and absorption of drugs in the cardiovascular system. The quantitative data of drug distribution and absorption in patients with coronary heart disease have been obtained successfully by means of biomedical imaging. These data reveal the dynamic changes of drugs in the cardiovascular system, and help doctors optimize drug therapy, improve treatment effectiveness, and achieve personalized treatment.

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来源期刊
Medical Engineering & Physics
Medical Engineering & Physics 工程技术-工程:生物医学
CiteScore
4.30
自引率
4.50%
发文量
172
审稿时长
3.0 months
期刊介绍: Medical Engineering & Physics provides a forum for the publication of the latest developments in biomedical engineering, and reflects the essential multidisciplinary nature of the subject. The journal publishes in-depth critical reviews, scientific papers and technical notes. Our focus encompasses the application of the basic principles of physics and engineering to the development of medical devices and technology, with the ultimate aim of producing improvements in the quality of health care.Topics covered include biomechanics, biomaterials, mechanobiology, rehabilitation engineering, biomedical signal processing and medical device development. Medical Engineering & Physics aims to keep both engineers and clinicians abreast of the latest applications of technology to health care.
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