MSc Construction Project Management
The MSc Construction Project Management program at Birmingham City University is a high...
City South
INTAKE: January
The MSc in Medical Engineering applications for Healthcare is a dynamic and forward-thinking program that bridges the gap between engineering and healthcare. It equips students with a deep understanding of both fields, enabling them to develop innovative solutions and technologies to address healthcare challenges.
Foundations of Medical Engineering: The program begins with a comprehensive exploration of the fundamentals of medical engineering, including the principles of biology, physics, and engineering that underpin the development of medical devices and technologies.
Biomechanics: Students delve into the mechanics of the human body, studying how forces and structures interact within biological systems. This knowledge is crucial for designing devices such as prosthetics and orthopedic implants.
Medical Imaging: The program covers various medical imaging modalities, including X-ray, MRI, and ultrasound, enabling students to understand the principles behind these technologies and their applications in diagnosis and treatment.
Biomaterials: Students learn about the materials used in medical devices, exploring their properties, biocompatibility, and applications in areas such as tissue engineering and implant design.
Medical Device Design: This aspect of the program focuses on the design and development of medical devices, from concept to prototype. Students gain hands-on experience in designing solutions to address specific healthcare challenges.
Regulatory Affairs: Understanding the regulatory landscape is essential in the medical engineering field. Students learn about the regulations and standards governing medical devices and the processes for obtaining approvals.
Clinical Engineering: The program covers the role of clinical engineers in healthcare settings, emphasizing the importance of maintaining and managing medical equipment to ensure patient safety.
Rehabilitation Engineering: Students explore the design of assistive technologies and devices that enhance the quality of life for individuals with disabilities.
Medical Robotics: The use of robotics in healthcare is a growing field. Students gain insights into the development and application of medical robots for surgery, diagnostics, and patient care.
Research Skills: Research is a fundamental component of the program, and students acquire the skills needed to conduct research in medical engineering, contributing to advancements in the field.
Interdisciplinary Projects: Collaborative projects allow students to work with professionals from diverse backgrounds, fostering innovation and creativity.
City South
IELTS 6.5
£ 16870
Postgraduate Entry Requirements:
Students must provide:
Work experience: Some postgraduate courses may require relevant work experience in the field.
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.
These scholarships provide opportunities for talented students to pursue their studies at Birmingham City University
It is important to note that scholarship availability, eligibility criteria, and application deadlines may vary from year to year.
Graduates of the MSc in Medical Engineering applications for Healthcare program from Birmingham City University are well-prepared to embark on promising careers in various sectors at the intersection of engineering and healthcare. This program opens up a wide range of career opportunities.
Medical Device Engineer: Graduates can work as engineers specializing in the design, development, and maintenance of medical devices.
Biomechanical Engineer: Those interested in biomechanics can pursue roles focused on designing and improving prosthetics, orthopedic implants, and other biomechanical solutions.
Clinical Engineer: Clinical engineers are responsible for managing and maintaining medical equipment in healthcare institutions.
Regulatory Affairs Specialist: Professionals in this role ensure that medical devices comply with regulatory standards and guide the approval process.
Rehabilitation Engineer: Graduates can work on the development of assistive technologies to improve the lives of individuals with disabilities.
Researcher: For those inclined towards research, opportunities exist in academia, research institutions, and industry, where they can contribute to cutting-edge advancements in medical engineering.
Medical Robotics Engineer: The field of medical robotics offers exciting opportunities in the development of robotic systems for healthcare applications.
Consultant: Graduates can provide consulting services to healthcare institutions and companies in the medical engineering sector.
Entrepreneur: Some may choose to start their ventures, innovating and commercializing medical technologies.