PROFESSIONAL MOTIVATION OF STUDENTS AS A FACTOR FOR INTEGRATING FUNDAMENTAL AND CLINICAL DISCIPLINES IN HIGHER MEDICAL EDUCATION

O. Z. Melnikova, O. Ivanchenko, K.I. Lurie, G.R. Michaelian
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Abstract

This article addresses the pressing issue of medical education: the integration of fundamental and clinical disciplines. Given the rapid pace of scientific and technological advancements, the professionalism of modern doctors largely relies on their natural and scientific training, which begins in the early stages of medical university education. Medical and biological physics play an important role in this training, but integrating them into medical education is challenging due to the complexity of the discipline's content, which students must grasp at the outset of their education, and the lack of understanding among first-year students about the connections between physics, mathematics, and medicine. The article discusses various approaches to teaching medical and biological physics, focusing on creating professional motivation among students to master fundamental sciences. It highlights the example of designing an X-ray computed tomography (CT) scanner as a means of motivating students to excel in their studies. The importance of leveraging students' prior knowledge from school textbooks on physics, biology, and chemistry to solve tasks fundamental to clinical practice is emphasized. Using the practical lesson topic “Physical foundations of X-ray diagnostics and X-ray therapy” as an example, the article demonstrates the need to focus on the properties of X-ray radiation relevant to medical applications, such as rheography, fluorography, and CT scans. Professional motivation is further enhanced through activities like participating in a biophysics scientific circle and visiting university clinics and training centers, where students can witness the practical application of their theoretical knowledge. The article underscores the importance of integrating fundamental and clinical disciplines while adhering to pedagogical principles such as scientific rigor, continuity, and consistency.
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学生的专业动机是高等医学教育中基础学科与临床学科相结合的一个因素
本文探讨了医学教育的迫切问题:基础学科与临床学科的结合。随着科学技术的飞速发展,现代医生的职业素养在很大程度上依赖于他们的自然和科学训练,而这种训练始于医科大学教育的早期阶段。医学物理和生物物理在这种训练中发挥着重要作用,但由于学科内容复杂,学生必须在入学之初就掌握,而且一年级学生对物理、数学和医学之间的联系缺乏了解,因此将它们融入医学教育具有挑战性。文章讨论了医学和生物物理学的各种教学方法,重点是激发学生掌握基础科学的专业动力。文章以设计 X 射线计算机断层扫描(CT)扫描仪为例,强调了激励学生在学习中取得优异成绩的方法。强调了利用学生从学校物理、生物和化学教科书中获得的已有知识来解决临床实践中基本任务的重要性。文章以 "X 射线诊断和 X 射线治疗的物理基础 "这一实践课主题为例,说明有必要关注与流变学、荧光成像和 CT 扫描等医学应用相关的 X 射线辐射特性。通过参加生物物理科学圈、参观大学诊所和培训中心等活动,学生可以亲眼目睹理论知识的实际应用,从而进一步提高专业积极性。文章强调了在坚持科学严谨性、连续性和一致性等教学原则的同时,将基础学科与临床学科相结合的重要性。
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