心磁图
鱿鱼
磁强计
计算机科学
生物医学工程
噪音(视频)
生物磁学
医学物理学
核磁共振
材料科学
医学
物理
磁场
心脏病学
人工智能
生物
图像(数学)
量子力学
生态学
作者
I. D. Voitovych,M. A. Primin,Volodymyr Sosnytskyy
摘要
Supersensitive magnetometric systems based on low-temperature SQUIDs have been designed to conduct research in cardiology (magnetocardiography) and to examine distribution of magnetic nanoparticles in biologic objects. Such SQUID magnetometric systems are distinguished by their noise immunity enabling research in nonscreened rooms. High repeatability of research outcomes has been confirmed. The use of magnetocardiographic systems has permitted a new screening information technology to be developed to diagnose heart diseases at early stages. Magnetic imaging of heart’s action currents is an ideal way to test local electrical heterogeneity of myocardium. It is shown that magnetocardiography has a significant potential for both basic science of analysis of heart’s biosignals and clinical cardiologic practice. A SQUID magnetometric system measuring magnetic signals radiated by the organs of laboratory animals is described. Information technology for automatic recording and transforming magnetometric data has been developed; the measurement of signals over rats’ livers while injecting intravenously the nanoparticles of iron oxides and lead solutions are presented.
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