Medical and biological physics

Aringozhina Zarina Erzhanovna

The instructor profile

Description: In this discipline, the basics of biological physics are studied. Mathematical processing of biomedical data. Fundamentals of medical physics. Fundamentals of biomechanics, bioacoustics and geodynamics. Mechanical properties of biological tissues. Studying the physical and dynamic properties of biomembranes and modeling the processes of substance transfer through membrane structures. It also includes material necessary for studying the principles of medical equipment design.

Amount of credits: 6

Пререквизиты:

  • Physical Methods of Research

Course Workload:

Types of classes hours
Lectures 30
Practical works
Laboratory works 30
SAWTG (Student Autonomous Work under Teacher Guidance) 30
SAW (Student autonomous work) 90
Form of final control Exam
Final assessment method

Component: Component by selection

Cycle: Base disciplines

Goal
  • The field of professional activity in which the results of mastering the discipline can be applied is the protection of citizens ' health. The object of professional activity of graduates who have mastered the discipline program is a set of tools and technologies aimed at creating conditions for preserving the health of citizens.The purpose of mastering the discipline is to provide a deep knowledge of the features of the emergence of physical laws in biological systems, an understanding of the construction and operation of medical AP-equipment. Achieving this goal is aimed at solving the following tasks of professional activity
Objective
  • Пәнді игерудің міндеттері: адам ағзасының қызмет ету негізінде жатқан маңызды процестердің физикалық және биофизикалық механизмдерінің молекулалық деңгейінде оқыту; адам ағзасына физикалық факторлардың әсер етуінің бастапқы әсерлерін зерттеу; ағзада өтетін процестерді түсіндіру үшін физикалық заңдарды қолдану; медицинадағы диагностика мен терапияның заманауи физикалық әдістері мен ғылыми зерттеулер туралы түсінік алу.
Learning outcome: knowledge and understanding
  • -biophysical mechanisms of the effect of physical factors on the body; -physical foundations of the functioning of medical equipment; -safety rules in the physical laboratory when working with devices.
Learning outcome: applying knowledge and understanding
  • - be able to set the problem, purpose and task of the study, taking into account specific physical conditions; - be able to correctly interpret the information received in order to make optimal decisions in these conditions;
Learning outcome: formation of judgments
  • - understanding the depth and complexity of physical and biological laws in medicine, the generality and interrelation of phenomena in the micro and macrocosm; - willingness to work effectively independently as a member of a team on interdisciplinary topics, to be a leader in a team; - understanding the need for independent learning and professional development throughout the entire period of professional activity.
Learning outcome: communicative abilities
  • develop the communication skills necessary for teamwork.
Learning outcome: learning skills or learning abilities
  • - The ability to provide professional knowledge in the field of medical and Biological Physics; - readiness to apply the ideas and methods of medical and Biological Physics in other areas of human activity.
Key reading
  • 1. Ремизов А.Н. Сборник задач по медицинской и биологической физике [Текст] : учеб-ное пособие для студентов высших учебных заведений, обучающихся по медицин-ским специальностям : [гриф] МО РФ / А. Н. Ремизов, А. Г. Максина. - 4-е изд., сте-реотип. - М. : Дрофа, 2010. 2. Физика и биофизика [Текст] : учебник для медицинских вузов : [гриф] УМО / В. Ф. Антонов [и др.] ; под ред. В. Ф. Антонова. - М. : ГЭОТАР-Медиа, 2008. 3. Ратыни А.И. Основы биофизики. Ч. 1: учебное пособие/ А. И. Ратыни, Г. Ф. Габдулса-дыкова.- Иваново, 2013. 4. Ратыни А.И. Основы молекулярной биофизики. Элементы термодинамики биологиче-ских систем [Электронный ресурс] : электронное учебное пособие для студентов ме-дицинских вузов : [гриф] / А. И. Ратыни, Г. Ф. Габдулсадыкова. - Электрон. дан. - Иваново : [б. и.], 2013. - 1 эл. опт. диск (CD-ROM). 5. Ратыни А.И. Биологические мембраны [Электронный ресурс] : электронное учебное пособие для студентов медицинских вузов : [гриф] / А. И. Ратыни, Г. Ф. Габдулсады-кова. - Электрон. дан. - Иваново : [б. и.], 2013. - 1 эл. опт. диск (CD-ROM). ЭБС: 6. Антонов В. Ф. Физика и биофизика : учебник / В. Ф. Антонов, Е. К. Козлова, А. М. Черныш. - 2-е изд., испр. и доп. - М. : ГЭОТАР-Медиа, 2014. http://www.studmedlib.ru 9. Перечень ресурсов информационно-телекоммуникационной сети Интернет: 1. Е.В. Греков. Математика. Учебник для студентов фармацевтических и медицинских вузов. – М., ГЭОТАР-Медиа, 2015. Доступ: http://www.studmedlib.ru 2. В.Н. Федорова, Е.В. Фаустов. Медицинская и биологическая физика. Курс лекций с за- дачами: учебное пособие. – М., ГЭОТАР-Медиа, 2010. Доступ: http://www.studmedlib.ru 3. В.Ф. Антонов, Е.К. Козлова, А.М. Черныш. Физика и биофизика. Учебник для студен- тов медицинских вузов. М., ГЭОТАР-Медиа, 2014. Доступ: http://www.studmedlib.ru, http://6years.net/?do=static&page=Biofizika. 4. А.Н. Ремизов. Медицинская и биологическая физика: учебник. М., ГЭОТАР-Медиа, 2012. Доступ: http://www.studmedlib.ru 5. А.Н. Ремизов, А.Г. Максина. Медицинская и биологическая физика: сборник задач. – М., ГЭОТАР-Медиа, 2012. Доступ: http://www.studmedlib.ru