QS Rank:

25

University of Toronto

Ontario
,Canada

Program Name
MASc in Biomedical Engineering
Overview

The Master of Applied Science (MASc) in Biomedical Engineering at the University of Toronto is a premier program designed for students seeking a deep understanding of the interdisciplinary field that merges medicine and engineering. This program is ideal for those passionate about developing innovative solutions to healthcare challenges, ranging from medical device design to biomaterials and tissue engineering. Renowned for its strong emphasis on research and practical application, the MASc in Biomedical Engineering provides a rigorous academic experience that equips students with the necessary skills to excel in their careers.
The curriculum for this program is meticulously crafted, featuring a blend of core courses and specialized electives that cover critical areas within biomedical engineering. Students will delve into subjects such as biomechanics, biomedical instrumentation, and medical imaging, among others. Electives allow students to tailor their education to their interests, offering courses in areas like regenerative medicine and computational biology. Each course integrates theoretical knowledge with practical skills, ensuring that graduates are well-prepared to meet the demands of the industry.
Students will also benefit from hands-on experience in state-of-the-art laboratories equipped with cutting-edge technology. This practical exposure is crucial in fostering a deeper understanding of complex biomedical systems and procedures. The faculty comprises experts from various fields of biomedical engineering, who bring a wealth of experience and knowledge into the classroom. Their expertise in both academia and industry ensures that students receive a well-rounded education that emphasizes real-world applications.
Furthermore, the program offers numerous research opportunities that allow students to engage in groundbreaking projects. The University of Toronto is home to several research centers and institutes dedicated to biomedical innovation, providing students with access to resources and mentorship. Collaborative research projects often involve partnerships with hospitals and industries, fostering an environment where students can contribute to impactful advancements in healthcare.
In addition to the strong academic framework, the University of Toronto’s extensive industry connections and internship possibilities provide students with a competitive edge in the job market. The university’s location in Ontario, a hub for biomedical and healthcare industries, facilitates networking and job placement opportunities. Many students secure internships during their studies, which further enhances their employability upon graduation. These experiences not only build resumes but also allow students to apply their knowledge in real-world settings, paving the way for successful careers in biomedical engineering.
Graduates of the MASc in Biomedical Engineering often find themselves in high-demand roles across various sectors. Many secure positions in medical device companies, healthcare organizations, and research institutions. Career pathways may include roles such as biomedical engineer, research scientist, or quality assurance specialist. Alumni of the program have reported successful job placements in leading companies and institutions, underscoring the effectiveness of the program in preparing students for their future.
Notably, the program also emphasizes the importance of alumni success stories. Many former students have gone on to make significant contributions to the field, whether through innovative product designs or through impactful research that influences healthcare practices globally. Testimonials from graduates highlight the program's ability to foster creativity, critical thinking, and a strong work ethic, qualities that are essential in today’s competitive job market.
Among the unique features that distinguish the MASc in Biomedical Engineering at the University of Toronto is its commitment to interdisciplinary learning. The program encourages collaboration with other engineering disciplines, as well as fields such as computer science and medicine. This holistic approach equips students with a broad perspective and an enhanced ability to solve complex problems effectively. Additionally, the university’s emphasis on community involvement and global health initiatives provides students with opportunities to engage in meaningful projects that extend beyond the classroom.
To embark on this enriching academic journey, prospective students should be aware of the eligibility criteria for admission. A strong undergraduate degree in engineering or a related field is typically required. Furthermore, students must demonstrate proficiency in English through standardized tests, with a minimum score of 7.0 on the IELTS or 93 on the TOEFL. These requirements ensure that candidates are well-prepared to tackle the program's rigorous coursework.
In summary, the MASc in Biomedical Engineering at the University of Toronto is a transformative program that prepares students for the future of healthcare technology. With a comprehensive curriculum, expert faculty, substantial research opportunities, and strong industry connections, students are set on a path toward successful careers in a rapidly evolving field. Whether aspiring to innovate in medical devices or conduct groundbreaking research, students will find a supportive and dynamic environment that fosters their growth and development.
Why Study Biomedical Engineering at the University of Toronto
- A popular choice for international students with a diverse community encompassing over 27.9% international representation.
- Learn from leading faculty members who are pioneers in their fields and have a track record of research excellence.
- Access to high-end laboratories and research facilities that foster innovation and practical learning experiences.
- The university’s excellent placement programs and strong industry ties enhance employability after graduation.

Duration
36 Months
Ranking
#18
US World and News Report
#18
The World University Rankings
#25
QS World University Rankings
Class Profile
Diversity
Others:
3%Ontario:
45%Saskatchewan:
2%Manitoba:
5%British Columbia:
15%Alberta:
10%Quebec:
20%Eligibility Criteria
English Proficiency Tests
IELTS
7
TOEFL
93
FAQs
To apply for the Master of Applied Science (MASc) in Biomedical Engineering at the University of Toronto, prospective students must meet the following eligibility criteria:
- A strong undergraduate degree in engineering or a related field is typically required.
- Students must demonstrate proficiency in English through standardized tests, with a minimum score of 7.0 on the IELTS or 93 on the TOEFL.
These requirements ensure that candidates are adequately prepared for the program's rigorous coursework.
The curriculum of the MASc in Biomedical Engineering is meticulously crafted and features:
- A blend of core courses and specialized electives.
- Subjects that cover critical areas such as biomechanics, biomedical instrumentation, and medical imaging.
- Electives that allow students to tailor their education to interests, including areas like regenerative medicine and computational biology.
Each course integrates theoretical knowledge with practical skills, ensuring that graduates are well-equipped for industry demands.
The MASc in Biomedical Engineering employs a variety of teaching methods, including:
- Lectures and classroom discussions led by faculty who are experts in various fields of biomedical engineering.
- Hands-on experience in state-of-the-art laboratories equipped with cutting-edge technology.
- Collaborative projects and research opportunities that emphasize real-world applications.
This comprehensive approach fosters a deeper understanding of complex biomedical systems and procedures.
Several unique features distinguish the MASc in Biomedical Engineering at the University of Toronto, including:
- A strong commitment to interdisciplinary learning, encouraging collaboration with other engineering disciplines and fields such as computer science and medicine.
- Emphasis on community involvement and global health initiatives, allowing students to engage in meaningful projects beyond the classroom.
- Access to numerous research opportunities and partnerships with hospitals and industries, enhancing the educational experience.
These aspects create a holistic learning environment that prepares students for diverse challenges in the healthcare sector.
Graduates of the MASc in Biomedical Engineering often find themselves in high-demand roles across various sectors. Common career pathways include:
- Biomedical Engineer
- Research Scientist
- Quality Assurance Specialist
Many alumni secure positions in medical device companies, healthcare organizations, and research institutions. The program's strong industry connections and internship opportunities contribute significantly to graduates' employability.
The MASc in Biomedical Engineering provides numerous research opportunities that allow students to engage in groundbreaking projects. Notable features include:
- Access to several research centers and institutes dedicated to biomedical innovation.
- Collaborative research projects that often involve partnerships with hospitals and industries.
- Mentorship from faculty who are experienced in both academia and industry.
These factors create an environment conducive to impactful advancements in healthcare.
Key highlights of the MASc in Biomedical Engineering program include:
- A diverse community with over 27.9% international representation.
- Instruction from leading faculty members who are pioneers in their fields.
- Access to high-end laboratories and research facilities.
- Excellent placement programs and strong industry ties that enhance employability after graduation.
These highlights contribute to a rich academic experience and prepare students for success in their careers.
The University of Toronto offers extensive industry connections and resources that facilitate internship opportunities for students in the MASc in Biomedical Engineering program. Key support features include:
- Networking opportunities within Ontario, a hub for biomedical and healthcare industries.
- University resources dedicated to job placement assistance.
- Many students secure internships during their studies, which enhances their employability upon graduation.
These experiences not only build resumes but also allow students to apply their knowledge in real-world settings.
Ready to elevate your study abroad journey?
Book a call with us now and take the first step towards your global future!