Master of Science in Biomedical Engineering Postgraduate Programme By Wake Forest University |TopUniversities
Main Subject Area

Anatomy and PhysiologyMain Subject Area

Programme overview

Main Subject

Anatomy and Physiology

Study Level

Masters

Biomedical engineering is one of the most rapidly expanding disciplines in today's academic world. The continually growing demand for quality health care and for solutions to medical problems drives the current move to merge academic, clinical, and research disciplines in an effort to produce major breakthroughs in human medicine for the benefit of present and future generations. Biomedical engineers develop artificial tissues and organs used for transplantation. They design prosthetic devices and create computerized systems that can be applied to solving complex medical problems as well as shedding light on less spectacular but equally important issues, such as determining what causes older people to fall, and how falls can be prevented. They develop technologies which use mathematics and computers to simulate physiologic systems, functions, and malfunctions. Biomedical engineers apply their knowledge to everything from developing better drug-delivery systems to computer-assisted micro-surgery on unborn babies to creating wireless devices for cardiac and cancer diagnosis.

Programme overview

Main Subject

Anatomy and Physiology

Study Level

Masters

Biomedical engineering is one of the most rapidly expanding disciplines in today's academic world. The continually growing demand for quality health care and for solutions to medical problems drives the current move to merge academic, clinical, and research disciplines in an effort to produce major breakthroughs in human medicine for the benefit of present and future generations. Biomedical engineers develop artificial tissues and organs used for transplantation. They design prosthetic devices and create computerized systems that can be applied to solving complex medical problems as well as shedding light on less spectacular but equally important issues, such as determining what causes older people to fall, and how falls can be prevented. They develop technologies which use mathematics and computers to simulate physiologic systems, functions, and malfunctions. Biomedical engineers apply their knowledge to everything from developing better drug-delivery systems to computer-assisted micro-surgery on unborn babies to creating wireless devices for cardiac and cancer diagnosis.

Admission Requirements

6+

Scholarships

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