欧洲大学医学和生物物理学及医学信息学教学

A. Chalyi, O. Lyubchyk, K. Chalyi, Olena Chaika, Inna Kryvenko, N. Gritsenko, A. Kryshtopa, Oleksii Sysoiev
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引用次数: 1

摘要

本文综述了欧洲7个国家10所大学«医学与生物物理学»和«医学信息学»基础医学学科教学中存在的一些问题。比较了博格莫雷茨国立医科大学和其他欧洲医科大学在«医学»专业的这些自然学科的教学组织(特别是课堂课时)。调查发现,在欧洲9所大学(医学院)中,有8所大学的绝大多数用于必修物理学科的教学时间(有些大学的教学时间是Bogomolets国立医科大学的2-3倍)都要多。Bogomolets国立医科大学2021-2022学年工作课程中批准的“医学信息学和科学研究基础”学科不是必修学科,而是一年级学生可以选择的可变学科,其先验概率为0.5。强调了教学«医学和生物物理学»和«医学信息学»作为医疗工业和医学教育的组成部分的重要性。正是这些科学技术和学科方向(连同生物医学工程)为创造用于诊断和治疗的精密和高科技医疗设备提供了可靠的基础,从x射线和心脏造影设备,到目前用于微创干预的达芬奇手术机器人系统,以及使用正电子发射断层扫描和磁共振成像相结合的医学成像系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TEACHING OF MEDICAL AND BIOLOGICAL PHYSICS AND MEDICAL INFORMATICS IN EUROPEAN UNIVERSITIES
This review article discusses some of the problems associated with teaching fundamental medical disciplines «Medical and Biological Physics» and «Medical Informatics» in 10 universities from 7 European countries. A comparison is made of the organization of teaching these natural disciplines (in particular, the volume of classroom hours) at the Bogomolets National Medical University and other European medical universities for the specialty «Medicine». It was found that in the absolute majority of 8 out of 9 European universities (medical faculties) more classroom hours are allocated for the study of obligatory physical disciplines (for some universities 2–3 times more) than at the Bogomolets National Medical University. The discipline «Medical Informatics and Foundations of Scientific Research» is approved in the working curriculum of the Bogomolets National Medical University for the 2021-2022 academic year not as obligatory, but as a variable discipline which students of the 1st year of study can choose with a prior probability that is equal to 0.5. The importance of teaching the disciplines «Medical and biological physics» and «Medical informatics» as an integral part of the medical industry and medical education is emphasized. It is these directions of science and technology as well as academic disciplines (together with biomedical engineering) that provided a reliable basis to create precision and high-tech medical equipment for diagnostics and treatment, ranging from X-ray and cardiography devices and ending at the moment with the Da Vinci surgical robotic system for minimally invasive interventions, as well as medical imaging system using combined positron emission tomography and magnetic resonance imaging.
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