Nuclear Medicine Procedures, Radionuclide Therapy and Radiation Protection in Nuclear Medicine II (5 cr)
Code: 7R00DV28-3006
General information
- Enrolment period
- 22.11.2023 - 14.01.2024
- Registration for the implementation has ended.
- Timing
- 02.01.2024 - 31.05.2024
- Implementation has ended.
- Credits
- 5 cr
- Mode of delivery
- Contact learning
- Unit
- Radiography and Radiotherapy
- Campus
- TAMK Main Campus
- Teaching languages
- Finnish
- Degree programmes
- Degree Programme in Radiography and Radiotherapy
- Teachers
- Tiina Säilä
- Tiina Saarimäki
- Aino Pohja
- Marja Jaronen
- Person in charge
- Kirsi Mansikkamäki
- Course
- 7R00DV28
Objectives (course unit)
Student
-knows the European Union legislation, national radiation legislation and directives given by authorities related to safe medical use of ionizing radiation related to Nuclear Medicine
-knows how patients can be examined and treated by using radiopharmaceuticals
-knows the principles of working safely in Nuclear Medicine Procedures
-knows the principles of the most important clinical fysiology examinations related to radiographers work
-knows the principles of bone density measurements
-is able to prepare radiopharmaceuticals
-master the calculation of activities related to prepare and administer of radiopharmaceuticals
-knows the basics of the Hot Laboratory (Clean Room) working
Content (course unit)
-Principles of working in Nuclear Medicine procedures
-Principles of Nuclear Medicine Procedures and Radionuclide Therapy
-Principles of PET-CT procedures
-Principles of most important clinical physiology examinations related to radiographers' work
-Principles of bone density measurements
-Radiation Protection and Radiation Safety in Nuclear Medicine Procedures
-the European Union legislation, national radiation legislation and directives given by authorities related to safe medical use of ionizing radiation
-Radiopharmacy and use of the radiopharmaceuticals
-working in the Hot Laboratory (Clean Room)
Prerequisites (course unit)
-adequate knowledge in human anatomy and physiology
-adequate knowledge in radiation physics and radiation safety
Assessment criteria, satisfactory (1-2) (course unit)
-is able to describe the European Union legislation, national radiation legislation and directives given by authorities related to safe medical use of ionizing radiation related to Nuclear Medicine
-is able to name the methods by which patients can be examined and treated by using radiopharmaceuticals
-is able to describe the principles of working safely in Nuclear medicine procedures
-is able to describe the principles of bone density measurements
-is able to describe the principles of the most important clinical physiology examinations related to nuclear medicine procedures
-is able to calculate the activities related to prepare and administer of radiopharmaceuticals
-is able to prepare radiopharmaceuticals in the learning environment
-is able to work safely in the learning environment
-is able to describe the principles of Hot laboratory (cleanroom) work
Assessment criteria, good (3-4) (course unit)
-is able to explain the European Union legislation, national radiation legislation and directives given by authorities related to safe medical use of ionizing radiation related to Nuclear Medicine
-is able to explain the methods by which patients can be examined and treated by using radiopharmaceuticals
-is able to explain the principles of working safely in Nuclear medicine procedures
-is able to explain the principles of bone density measurements
-know the principles of the most important clinical physiology examinations related to nuclear medicine procedures
-is able to prepare radiopharmaceuticals in the learning environment
-is able to calculate the activities related to prepare and administer of radiopharmaceuticals and can apply his/her skills to different situations
-is able to work and apply theory in the learning environment
-is able to explain the principles of Hot laboratory (cleanroom) work
Assessment criteria, excellent (5) (course unit)
-knows the European Union legislation, national radiation legislation and directives given by authorities related to safe medical use of ionizing radiation related to Nuclear Medicine so that he/she can explain their contents to patients, patient's family members and other staff if needed
-is able to reasonably explain the methods by which patients can be examined and treated by using radiopharmaceuticals
-is able to reasonably explain the principles of working safely in Nuclear medicine procedures
-is able to reasonably explain the principles of bone density measurements
-is able to reasonably explain the principles of the most important clinical physiology examinations related to nuclear medicine procedures
-is able to prepare radiopharmaceuticals in the learning environment
-is able to calculate the activities related to prepare and administer of radiopharmaceuticals and can apply his/her skills to different situations versatilely
-is able to work in the learning environment and justify his/her actions with theory
-is able to reasonably explain the principles of Hot laboratory (cleanroom) work
Exam schedules
Isotooppilaskut (HYV/HYL) suoritetaan työpajojen yhteydessä keväällä 2024
Isotooppitutkimukset ja säteilysuojelu isotooppitutkimuksissa koe (sisältää kysymyksen kliinisen fysiologian osuudesta): aika tarkentuu jakson alussa
Uusintakokeet sovitaan opintojakson alussa.
Assessment methods and criteria
Tentit erikseen
isotooppitutkimukset ja lääkesädehoidot (sisältää kysymyksen kliinisen fysiologian osuudesta),
säteilysuojelu isotooppitutkimuksissa (jokaisesta kysymyksestä 50 % oikein)
isotooppilaskut (100 % oikein)
Assessment scale
0-5
Teaching methods
Luento-opetusta (80 % läsnäolovaatimus), työpajaharjoituksia (100 % läsnäolovaatimus), TAYS laboraatiokerta (100 % läsnäolovaatimus). Moodle-kurssi luuntiheysmittauksesta itsenäisenä työnä.
Learning materials
Annetaan kunkin osan ensimmäisellä luentokerralla
Student workload
1 op vastaa 27h opiskelijan työtä, 1 op on keskimäärin 10 h kontaktiopetusta, loput itsenäistä työtä.
Isotooppitutkimusten työpajoissa on 100 % läsnäolovaatimus
TAYSin laboraatiossa on 100 % läsnäolovaatimus
Isotooppitutkimusten ja säteilysuojelun (sis. kl.fysiologia) teoriatunneilla on 80 % läsnäolovaatimus.
Completion alternatives
Mikäli opiskelija on sairauden tai muun pakottavan syyn vuoksi pois teoriatunneilta (80 % läsnäolovaatimus), voi opiskelija osoittaa perehtyneisyytensä tunnilla käsiteltyyn asiaan kirjoittamalla tiivistelmän lähdeviitteineen kyseisellä kerralla käsitellyistä asioita perustuen uusimpaan kliinisen fysiologian ja isotooppilääketieteen kirjaan: Anssi Sovijärvi, Jaakko Hartiala, Juhani Knuuti, Tomi Laitinen, Pekka Malmberg (toim.): Kliinisen fysiologian ja isotooppilääketieteen perusteet, 1. painos 2018, ja/tai tieteellisiin artikkeleihin.
Yksi poissaolotunti / yksi tekstisivu (A4 paperi, riviväli 1.15, fontti 12, reunukset 2 cm kaikilla sivuilla) + lähdeluettelo.
Korvaava tehtävä on palautettava ennen opintojakson koetta.
Muita vaihtoehtoisia suoritustapoja ei ole.
Practical training and working life cooperation
Isotooppitutkimukset ja lääkesädehoidot -osuuteen kuuluu laboraatiokerta TAYS:n isotooppilaboratoriossa.
Further information
Opintojakso koostuu useasta toteutusosasta: Säteilysuojelu isotooppitutkimuksissa, Isotooppitutkimukset ja lääkesädehoidot (sisältää luuntiheydenmittauksen), Kliininen fysiologia