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哈佛大學(xué)-生物工程
Bioengineering(本科)專業(yè)概況
COVID - 19 update: We will begin transitioning to virtual instruction for graduate and undergraduate classes. Our goal is to have this transition complete by Monday, March 23, which is the first day of scheduled classes following Spring Recess.
Bioengineering lies at the intersection of the physical and life sciences, incorporating principles from physics and chemistry to understand the operation of living systems. As in other engineering fields, the approach is highly quantitative: mathematical analysis and modeling are used to capture the function of systems from subcellular to organism scales. An education in Bio/Biomedical Engineering, and engineering more broadly, enables students to translate abstract hypotheses and scientific knowledge into working systems (e.g., prosthetic devices, imaging systems, and biopharmaceuticals).
Harvard is committed to broadly educating engineers who will become leaders in the developing field of Bio/Biomedical Engineering. The objectives of these (AB & SB) concentrations include providing students a solid foundation in engineering and its application to the life sciences, within the setting of a liberal arts education. The concentrations are flexibly structured for a diversity of educational and professional objectives. Our degrees in Biomedical Engineering or Engineering Sciences (Track in Bioengineering) enables the acquisition of a broad range of skills and attitudes drawn from the humanities, social sciences and sciences, in addition to engineering, which enhance engineering knowledge and which will contribute to future leadership and technical success.
Bioengineering lies at the intersection of the physical and life sciences, incorporating principles from physics, math and chemistry to understand the functioning of living systems. The overarching intellectual goal of biomedical engineering is to apply quantitative engineering analysis to understand the operation of living systems and design novel systems to satisfy unmet needs in clinical medicine. Biomedical engineering distinguishes itself from the other life sciences disciplines by using scientific knowledge to create new biomaterials and devices.
Students interested in Bioengineering can pursue the following concentrations:
The aims of the concentrations are similar, but the AB in BME concentration prepares people better for careers in a wet lab or attending medical school, and gives students a better understanding of the life sciences. The AB in BME requires 14-16 courses, while the SB in Engineering Sciences requires 20 courses. The SB in Engineering Sciences on the Bioengineering track is a more traditional engineering degree with 2-4 biology related classes to supplement. The SB degree is best suited for students who wish to pursue careers in the medical device industry, go on to graduate school in the sciences/engineering, or pursue other engineering careers. An AB degree, particularly in BME, is a good choice for students whose goal is to attend medical school and become a practicing physician. Both AB and SB students have attended some of the top medical schools, graduate schools, and MD-PhD programs in the nation.
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