SubjectsSubjects(version: 945)
Course, academic year 2019/2020
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Biophysics and Biostatistics - FG10001
Title: Biophysics and Biostatistics
Guaranteed by: Department of Medical Biophysics (15-170)
Faculty: Faculty of Medicine in Hradec Králové
Actual: from 2018 to 2022
Semester: winter
Points: 0
E-Credits: 10
Examination process: winter s.:
Hours per week, examination: winter s.:41/69, C+Ex [HS]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
Key competences:  
State of the course: taught
Language: English
Teaching methods: full-time
Teaching methods: full-time
Level:  
Note: deregister from the exam date if a requisite was not fulfilled
Guarantor: doc. Ing. Josef Hanuš, CSc.
Incompatibility : FV10001
Interchangeability : FA0101032, FV10001
Is incompatible with: FV10001
Is interchangeable with: FV10001
In complex pre-requisite: FG10024, FG10025, FG10026, FG10027, FG10028, FG10029, FG10030, FG10033, FG10035, FG10037, FG10074, FG10076, FG10077, FG10078, FG10079, FG10080, FG10084, FG50022
Examination dates   Schedule   
Annotation -
Last update: Kateřina Kubečková (21.09.2020)
Biophysics: biophysics of circulation, senses, ionizing and non-ionizing radiation, ultrasound, CT, MRI, word processing, spreadsheet Biostatistics: probability, descriptive statistics, experimental and theoretical distributions, hypothesis testing, regression and correlation
Requirements to the exam
Last update: Kateřina Kubečková (21.09.2020)

Credit:

Full attendance on practical classes, protocols from Lab 1 - Lab 5, selfstudy presentation, at least pass grade from written tests.

Examination:

Written and oral after credit

Syllabus
Last update: Kateřina Kubečková (21.09.2020)

Lectures

  1. Introduction to biophysics (Hanus 3)
  2. Descriptive statistics (Selke Krulichova 2)
  3. Probability (Hanus 2)
  4. Dispersions, concentration (Masin 3)
  5. Membrane potential, AP (Hanus 2)
  6. Electrocardiography, electrocardiogram (Hanus 1)
  7. Osmosis, Starling hypothesis (Kopecek 1)
  8. Cardiac cycle (Hanus 2)
  9. Heart work (Kopecek 1)
  10. Rheology (Hanus 2)
  11. Stimulus and response (Hanus 1)
  12. Physical acoustics (Zahora 2)
  13. Physiological acoustics (Zahora 1)
  14. Eye as an optical instrument (Masin 2)
  15. Photoreceptors (Masin 1)
  16. Light and electron microscopy (Hanus 1)
  17. Special optical imaging methods (Zahora 2)
  18. Ionizing radiation (Stransky 1)
  19. Interaction and biological effect of ionizing radiation (Stransky 2)
  20. Radiation protection, dosimetry (Hanus 1)
  21. Radiography, fluoroscopy (Hanus 2)
  22. Computed tomography (Hanus 1)
  23. Ultrasound (Hanus 2)
  24. Magnetic resonace imaging (Hanus 1)
  25. Lasers (Hanus 2)
  26. New materials and methods (Hanus 1)

 Practical courses & seminars

Lecturers

  • Assoc. Prof. Josef Hanus, M.Sc., Ph.D.
  • Prof. Pravoslav Stransky, M.D., Ph.D.
  • Ales Bezrouk, MS, Ph.D.
  • Martin Kopecek, M.Sc.
  • Vladimir Masin, M.D., Ph.D.
  • Iva Selke Krulichova, MS, Ph.D.
  • Jiri Zahora, MS, Ph.D.

 Practical courses

  1. Introduction to biophysics
  2. Descriptive statistics
  3. Probability
  4. Hypothesis testing
  5. Correlation and regression
  6. Information systems
  7. Lab 1
  8. Excel statistics 1
  9. Lab 2
  10. Excel statistics 2
  11. Lab 3
  12. Internet, PowePoint
  13. Seminar to test 1
  14. Lab 4
  15. TEST I - Statistics
  16. Lab 5
  17. Seminar 1 to test 2
  18. Seminar 2 to test 2
  19. Protocols
  20. TEST II - Biophysics
  21. Selfstudy presentation I
  22. Selfstudy presentation II
  23. Credit
Literature
Last update: Kateřina Kubečková (21.09.2020)

Compulsory literature

  1. I. Hrazdira, V. Mornstein, A. Bourek Biophysical Principles of Medical Technology. Lekarska fakulta MU Brno, 2000. ISBN 80-210-2414-3
  2. C. R. Duncan, R. G. Knapp, M. C. Miller Introductory Biostatistics for the Health Sciences. Delmar Publishers 12/1989. ISBN 0827342306
  3. Hanus et al. E-learning course of Biostatistics http://educ.lfhk.cuni.cz

 Recommend literature

  1. Russell K. Hobbie, Bradley J. Roth Intermediate Physics for Medicine and Biology, Springer 2007, ISBN 978-0-387-30942-2
 
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