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Biomedical engineering degrees are becoming more and more popular although the field of biomedical engineering - and all that it entails - may still be a little unfamiliar to the average Joe.

One of the first questions asked by students who are contemplating enrolling for a biomedical engineering degree is what type of careers would be available to them once they had graduated. Biomedical engineering degree programs usually include courses in such diverse subjects as linear control systems, the integration of medical imaging systems and neural computation using artificial neural networks, and it may well be hard for students to see how subjects like that would fit into everyday life. There are, however, several career paths that would require a grounding in biomedical engineering, and, for those who veer more towards the medical mainstream, biomedical engineering can also be taken as a pre-med major.

Available careers in biomedical engineering would include positions like medical imaging technicians, biomedical service engineers and technical support specialists. Although exact duties will differ from job to job, students with a degree in biomedical engineering can expect to occupy their professional time doing things like inspecting, servicing and repairing medical imaging machinery, marketing and selling x-ray and related equipment and installing and calibrating medical machinery like ultrasound, anesthesia, laser, mammo and sterilization equipment. Further responsibilities of the working biomedical engineer - especially at the managerial level - could include overseeing a staff of technicians who would be responsible for the upkeep of all x-ray, imaging and related equipment in a clinic or hospital.

Although most hirers in the biomedical engineering field will want a candidate who holds a graduate - or at least an undergraduate - degree in biomedical engineering, some will be satisfied with a candidate who holds a certificate. Generally speaking, higher level biomedical engineering jobs will go to those with higher qualifications although companies who are looking for ground-level trainees will be satisfied with students with ground-level qualifications as they usually provide on the job training.

Biomedical engineering is an interesting and rewarding field that has great potential for growth as every day sees diagnostics, surgery and rehabilitation become more dependent on machinery.

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Q: How To Use A Biomedical Engineering Degree?
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Where can I get a biomedical engineering degree?

My suggestion would be MIT. That is a great school for engineering.


What is the difference between msc in biomedical instrumentation and engineering degree in biomedical engineering?

Msc in biomedical instrumentation : the right choice of instruments required for the design of the medical devices from the wide range of electronics & instrumentation family. The maintenance & troubleshoot of the equipments preventive & breakdown biomedical engineering has given an existence to biomedical instrumentation as one of its specialization. Since biomedical engineering is on a wider platform & is at medical to technology interface like human touch


How to chart a course to a biomedical engineering degree?

Among the many factors students should consider before committing to a program of study in biomedical engineering are an academic institution’s level of support for research and development, the prestige of the school’s partnership with a university hospital, and the importance of obtaining a graduate degree for securing employment in the biomedical engineering industry. Biomedical engineering, once considered primarily an inter-disciplinary specialization, is now widely recognized as a scientific discipline in its own right. Biomedical engineering combines the design skills and practical application of mechanics of an engineering discipline with the medical, anatomical, and diagnostic knowledge of a health care discipline. Biomedical engineering requires extensive education and training in two core areas: biology and engineering. Because biomedical engineering is a relatively new field of study, there is a strong emphasis on research and development within the biomedical engineering field and its sub-fields, such as bio-compatible prosthetic technologies, biomedical micro-technologies, bio-mechatronics, bio-mechanics, bionics, rehabilitation engineering, medical imaging, and bio-pharmaceuticals. Each sub-field of biomedical engineering is research-intensive; thus, an academic program in biomedical engineering should include a strong emphasis on research and development. The prestige of an academic institution’s biomedical engineering program is often tied directly to the quality of its research and development programs as well as to the amount of funding for these programs. Closely connected with research and development is the ranking of the hospital or medical school that an academic institution is partnered with. Biomedical engineering is a science-intensive discipline and the ranking and reputation of the academic institution may affect employment opportunities for biomedical engineers. Undergraduate and graduate degrees in biomedical engineering, sometimes called bio-engineering, are offered by a growing number of institutions of higher education. Most, though not all, biomedical engineering degrees are accredited by the Accreditation Board for Engineering and Technology (ABET). Unlike some engineering degrees, such as electrical engineering, which often do not require postgraduate education for entry-level jobs, many entry-level positions in biomedical engineering require engineers to hold a graduate degree. In fact, many schools will require that students majoring in biomedical engineering commit to a long-term course of study that will lead to graduate degree, such as a master’s or doctoral degree.


What is the educational requirement for a biomedical engineer?

Most engineers in this specialty need a sound background in another engineering specialty, such as mechanical or electronics engineering, in addition to specialized biomedical training. Some specialties within biomedical engineering include biomaterials, biomechanics, medical imaging, rehabilitation engineering, and orthopedic engineering. Viper1 Anwser- At least an Associate degree in biomedical or electrical engineering is a prerequisite for a Biomedical Technician program. Biomedical engineer install, calibrate, and troubleshoot a wide range of sophisticated medical devices such as patient monitors, electrosurgical kits, and laser equipment etc.


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To meet the qualifications for having a job on biomedical engineering, you have to first finish high school. Then, get the proper degree for biomedical scientist on college.


Which Major League Baseball player has a biomedical engineering degree?

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