国际学生入学条件
Those with an Honours B.Sc. in other science disciplines will be considered for admission if they have received a good grounding in physics. The minimum requirement for admission to the M.Sc. program in Radiation Sciences Radiation Biology is an Honours B.Sc. in Biology or Life Sciences or a related discipline, with at least a B+ average in the final year. Applicants who are accepted typically have an average of A- or higher. Since instruction is in English, foreign students whose first language is not English must take the TOEFL and achieve a score of at least 580 (written version), 237 (computer version) or 92 (iBt).
IELTS (Academic): minimum overall score is 6.5, with at least 5.5 in each section.
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雅思考试总分
6.5
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雅思考试指南
- 雅思总分:6.5
- 托福网考总分:92
- 托福笔试总分:580
- 其他语言考试:PTE Academic: minimum score of 63
CRICOS代码:
申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
健康物理学是跨学科的
Health Physics is interdisciplinary, bridging the fields of medicine, biology, engineering and physical science. It provides scientific method and knowledge of Radiation Protection to the Health Care and Nuclear industries and regulatory bodies. The program consists of a course- and project-based MSc. Research is conducted with faculty using McMaster radiation facilities or at industrial partners facilities. Some students are presently working in the Health Physics field in industry and pursue the program part-time.<br><br>Areas of Research<br>Brachytherapy radioisotopes, interface dosimetry, imaging dose distributions, neutron micro-dosimetry,<br>Nuclear and atomic techniques used for analysis of both trace toxic elements and major components of human body composition,<br>Development of novel radiopharmaceuticals and medical use of radioisotopes in diagnosis and therapy,<br>Novel methods of imaging bone architecture and joint structure non-invasively,<br>Magnetic Resonance Imaging,<br>DNA damage and DNA repair processes in carcinogenesis,<br>Adaptive response, genomic instability and bystander effect in radiation risk assessment of human and non-human biota,<br>Laser and light propagation in tissue for photodynamic therapy and tissue characterization,<br>Skeletal muscle function and the mechanisms of repair/regeneration,<br>Radiation ccident dosimetry,<br>Advanced methods of optimization for intensity modulated radiation therapy (IMRT) and gel dosimetry.
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