Masters in Accounting (M.Acc.)
The Master's in Accounting program at Saint Louis University is an intensive, one-y...
St. Louis, Missouri
INTAKE: Jan & Aug
The Bachelor of Science (B.S.) in Biomedical Engineering at Saint Louis University (SLU) provides students with a comprehensive foundation in both engineering principles and biological sciences. This interdisciplinary program aims to equip students with the skills needed to design and improve medical devices, systems, and technologies. Graduates of this program are prepared to tackle complex problems in the healthcare field by integrating engineering techniques with biological research.
STEM-Designated: The B.S. in Biomedical Engineering at SLU is designated as a STEM (Science, Technology, Engineering, and Mathematics) program. This designation reflects the program’s focus on technical and scientific education, which is essential for careers in engineering and applied sciences. The STEM designation also supports international students' ability to apply for Optional Practical Training (OPT) extensions, providing additional time to gain practical experience in the U.S. after graduation.
ABET-Accredited: Saint Louis University’s B.S. in Biomedical Engineering program is accredited by the Accreditation Board for Engineering and Technology (ABET). This accreditation ensures that the program meets high standards of quality and rigor in engineering education. ABET accreditation is a mark of excellence and provides assurance to students and employers that the program adheres to industry-recognized criteria for engineering education.
Curriculum: The curriculum for the B.S. in Biomedical Engineering at SLU is designed to blend core engineering principles with specialized biomedical coursework. Students complete foundational courses in mathematics, physics, and chemistry, followed by advanced classes in areas such as biomaterials, biomechanics, and medical imaging. The program also includes practical lab work and project-based courses that allow students to apply theoretical knowledge to real-world problems. Elective courses and specializations offer students the opportunity to tailor their education to their specific interests within the field of biomedical engineering.
Research Focus: SLU’s Biomedical Engineering program emphasizes research and innovation, encouraging students to engage in cutting-edge research projects. The program focuses on areas such as tissue engineering, regenerative medicine, and the development of medical devices. Students have opportunities to work with faculty members on research projects, contributing to advancements in biomedical technology and healthcare solutions. The research component is integral to the program, providing students with hands-on experience and preparing them for careers in research and development.
Industry Engagement: The B.S. in Biomedical Engineering program at SLU includes robust industry engagement components, including internships, co-op programs, and collaborations with healthcare and technology companies. These experiences allow students to gain practical, real-world experience and build professional networks. The program often partners with local hospitals, research institutions, and industry leaders to provide students with exposure to current practices and emerging trends in biomedical engineering.
Global Perspective: Saint Louis University’s Biomedical Engineering program incorporates a global perspective through its curriculum and research initiatives. Students are encouraged to understand and address global health challenges and to consider the international impact of biomedical innovations. The program offers opportunities for international study, research collaborations, and engagement with global health organizations, preparing students to work in diverse and international settings.
St. Louis, Missouri
IELTS 6.5
USD 55220
Undergraduate Entry Requirements
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 70% or above in their previous academic qualifications.
English Language Proficiency:
Saint Louis University (SLU) in the United States offers a range of scholarships and financial aid opportunities to support international students in their pursuit of higher education. These scholarships are designed to recognize academic excellence, promote diversity, and assist students in managing the costs of their education.
Merit-Based Scholarships: SLU offers merit-based scholarships to international students based on their academic achievements, typically in the form of tuition reductions. These scholarships may vary in amount and eligibility criteria, but they are generally awarded to students with outstanding academic records.
International Student Scholarships: SLU specifically offers scholarships for international students to promote diversity and foster a global campus community. These scholarships may consider factors beyond academics, such as leadership, community involvement, or extracurricular achievements.
Departmental Scholarships: Some academic departments within SLU may offer scholarships to international students pursuing specific majors or fields of study. These scholarships can be a valuable resource for students with strong academic interests in particular disciplines.
Government and External Scholarships: International students may explore scholarships offered by their home governments, international organizations, or external agencies that support higher education. SLU's financial aid office can provide guidance on external scholarship opportunities.
Need-Based Financial Aid: SLU is committed to assisting students with financial need. International students can explore need-based financial aid options and work with the university's financial aid office to determine eligibility.
Study Abroad Scholarships: SLU encourages international experiences, and there are scholarships available for students participating in study abroad programs. These scholarships can help offset the costs of studying in another country.
Global Scholarship Exchange Programs: SLU collaborates with partner universities worldwide, enabling students to participate in exchange programs. These programs often include scholarship opportunities that facilitate international academic experiences.
It's important for international students to research and apply for scholarships early in the application process, as deadlines and eligibility criteria may vary.
Graduates of the B.S. in Biomedical Engineering program from Saint Louis University (SLU) have diverse and rewarding career options available to them. The interdisciplinary nature of the program, which combines engineering principles with biological sciences, prepares students for roles in various sectors of the healthcare and technology industries.
Medical Device Engineer: Biomedical engineering graduates often work as medical device engineers, designing, developing, and testing new medical devices and technologies. These professionals focus on improving existing devices or creating innovative solutions to address medical challenges.
Biomedical Researcher: With a solid foundation in both engineering and biology, graduates can pursue careers in biomedical research. They may work in research labs or academic institutions, contributing to advancements in areas such as tissue engineering, regenerative medicine, and medical imaging.
Clinical Engineer: Clinical engineers work in healthcare settings, ensuring that medical equipment and technologies are safely and effectively integrated into patient care. They may be involved in the maintenance, calibration, and troubleshooting of medical devices, as well as working with healthcare professionals to optimize equipment usage.
Biomaterials Specialist: Specialists in biomaterials focus on developing and improving materials used in medical applications, such as implants, prosthetics, and drug delivery systems. They work to ensure that these materials are safe, effective, and compatible with the human body.
Regulatory Affairs Specialist: Graduates may also pursue careers in regulatory affairs, where they help ensure that medical devices and technologies comply with government regulations and industry standards. This role involves preparing documentation, navigating regulatory processes, and liaising with regulatory agencies.
Systems Engineer: Biomedical engineering graduates can work as systems engineers, focusing on the integration of complex systems in medical technology. They design and manage systems that combine hardware and software components to meet specific healthcare needs.
Product Manager: In this role, graduates oversee the development and marketing of medical products. They work with cross-functional teams, including engineers, designers, and marketers, to bring new products to market and ensure they meet customer and regulatory requirements.
Healthcare Consultant: Biomedical engineering graduates can work as consultants, advising healthcare organizations on the implementation and optimization of medical technologies. They provide expertise on the selection and use of equipment, as well as strategies for improving patient outcomes and operational efficiency.
Academic or Industrial Researcher: For those interested in continuing their education, graduates may pursue advanced degrees (e.g., M.S. or Ph.D.) and engage in academic or industrial research. This path allows them to contribute to cutting-edge research and development in biomedical engineering.
Entrepreneur: With their technical expertise and innovative mindset, some graduates may choose to start their own companies or startups focused on developing new biomedical technologies or solutions.