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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

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