Adatok
A Tantárgybejelentőben megadott hivatalos adatok az alábbi tanévre: 2026-2027
Tantárgyfelelős
-
Ujfalusi Zoltán
assistant professor,
Department of Biophysics
Óraszámok/félév
előadás: 0 óra
gyakorlat: 14 óra
szeminárium: 0 óra
összesen: 14 óra
Tárgyadatok
- Kód: OBA-106-G
- 1 kredit
- Biotechnology MSc
- Basic modul
- autumn semester
OBA-106-E parallel
Kurzus létszámkorlát
min. 1 fő – max. 999 fő
Tematika
The Biophysics curse aims to introduce students to the methods and applications, that are routinely used in both medical and pharmaceutical biotechnology. The principles of the state-of-the-art approaches and instrumentations are covered by the topics. The course presents diverse spectroscopic techniques (absorption, fluorescence, infrared, Raman, EPR, NMR), imaging approaches (light and fluorescence microscopy, EM, super-resolution fluorescence microscopy, MRI, CT), radioactive applications, calorimetry, and fast kinetics techniques. The lectures discuss in detail the physical bases and principles of each approach and the field of applications. The practices are dedicated to expand the students' knowledge and routine with the use of different techniques. The practices lay special emphasis on presenting not only the routine applications but advanced uses of each technique. The limitations, as well as the artifacts that can be caused by improper experimental planning, are highlighted.
Előadások
Gyakorlatok
- 1.
Confocal microscopy, STED (Nano-Bio-Imaging Core Facility)
- Jánosi Tibor Zoltán, Makkai Géza - 2.
Confocal microscopy, STED (Nano-Bio-Imaging Core Facility)
- Jánosi Tibor Zoltán, Makkai Géza - 3.
STED, Confocal microscopy (Nano-Bio-Imaging Core Facility)
- Makkai Géza, Jánosi Tibor Zoltán - 4.
STED, Confocal microscopy (Nano-Bio-Imaging Core Facility)
- Makkai Géza, Jánosi Tibor Zoltán - 5.
SIM, STORM (Nano-Bio-Imaging Core Facility)
- Huberné Barkó Szilvia, Jánosi Tibor Zoltán, Makkai Géza - 6.
SIM, STORM (Nano-Bio-Imaging Core Facility)
- Huberné Barkó Szilvia, Jánosi Tibor Zoltán, Makkai Géza - 7.
Absorption photometry, fluorescence spectroscopy – protein research (Dept. of Biophysics)
- Ujfalusi Zoltán - 8.
Absorption photometry, fluorescence spectroscopy – protein research (Dept. of Biophysics)
- Ujfalusi Zoltán - 9.
Infrared and Raman spectroscopy (Dept. of Biophysics)
- Telek Elek - 10.
Infrared and Raman spectroscopy (Dept. of Biophysics)
- Telek Elek - 11.
Electron microscopy (Central Electron Microscope Lab.)
- Agócs-Laboda Ágnes - 12.
Electron microscopy (Central Electron Microscope Lab.)
- Agócs-Laboda Ágnes - 13.
MRI (Dept. of Biophysics)
- Bukovics Péter - 14.
MRI (Dept. of Biophysics)
- Bukovics Péter
Szemináriumok
A tananyag elsajátításához szükséges segédanyagok
Kötelező irodalom
Saját oktatási anyag
All handouts and other related materials can be found in the Microsoft Teams group of the course.
Jegyzet
Ajánlott irodalom
A félév elfogadásának feltételei
There are no additional conditions.
Félévközi ellenőrzések
One written test is scheduled during the semester covering the topics/calculations/etc discussed during the practices. The expected date: 13th week. The practical grade is obtained based on the result of the test.
Grading policy:
< 60% fail (1)
60 – 69% satisfactory (2)
70 – 79% average (3)
80 – 89% good (4)
> 90% excellent (5)
To pass, at least 60% has to be reached at the test.
Two retake tests will be scheduled at the end of the semester/in the exam period. The schedule will be provided during the semester.
Távolmaradás pótlásának lehetőségei
The schedule for making up the missed practices will be provided during the semester.
Vizsgakérdések
Topics of the exam questions:
Electromagnetic waves
Quantum numbers, NMR, MRI
Energy levels of atoms and molecules
Protein Structure. Introduction to protein engineering.
UV-VIS absorption spectroscopy
Fluorescence spectroscopy
Infrared and Raman spectroscopy
Flow cytometry
Light and fluorescence microscopy
Modern microscopic methods (STORM, STED, SIM, confocal, 2-photon)
Image analysis
Gamma camera, computed tomography (CT), single-photon emission computed tomography (SPECT), positron emission tomography (PET)
Radioactivity, the interaction of radioactive radiations with matter
Biological effects of radioactive radiations, dosimetry
X-ray crystallography, SAXS, EM
Thermodynamics: laws and thermodynamic potentials
Calorimetry: differential scanning calorimetry (DSC), isothermal titration calorimetry (ITC)
Analytical separation techniques: sedimentation, electrophoresis
Analytical separation techniques: chromatographic techniques
LASER
Vizsgáztatók
Gyakorlatok, szemináriumok oktatói
- Agócs-Laboda Ágnes
- Bukovics Péter
- Huberné Barkó Szilvia
- Jánosi Tibor Zoltán
- Lukács András Szilárd
- Makkai Géza
- Telek Elek
- Ujfalusi Zoltán