2016-2017 Academic Catalog 
    
    Mar 28, 2024  
2016-2017 Academic Catalog [ARCHIVED CATALOG]

Biomedical Engineering, BSBE


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Program Description:

Department of Biomedical, Industrial and Human Factors Engineering offers an undergraduate program in biomedical engineering leading to the Bachelor of Science in Biomedical Engineering. The biomedical engineering  program is accredited by the Engineering Accreditation Commission of ABET, www.abet.org. Biomedical engineering is concerned with solving and understanding problems in biology and medicine  by using principles, methods, and approaches drawn from engineering science and technology. Biomedical engineering students work in modern teaching laboratories structured around computer-based engineering workstations and receive intensive academic training in engineering design and analysis principles as well as life science concepts. The senior design course integrates learning in previous engineering courses to solve  actual biomedical engineering problems that help prepare students for employment or graduate study. The curriculum provides a solid foundation of courses in physical, life, and engineering sciences, as well as  mathematics. Courses in biomedical engineering advance and apply the engineering science to medical devices and living systems.

Wright State’s BME program will produce biomedical engineers who will:

  • Objective 1: Be employed in industry/government or enrolled in graduate school.
  • Objective 2: Continue their education and broaden their knowledge in their chosen field.
  • Objective 3: Contribute as members of multi-disciplinary teams.

Current efforts in biomedical engineering at Wright State University include developing medical and surgical instrumentation, designing rehabilitative assistive and intelligent prosthetic/orthotic devices, medical imaging  (including computed tomography and ultrasound), biomimetics, orthopedic implants, and biomedical microdevices. Many of these areas require interfacing complex systems with computer data acquisition and subsequent modeling and analysis with modern engineering software.

Two separate curricula are available. Curriculum A is the traditional ABET accredited degree program. Curriculum B, in addition to being ABET accredited, prepares students to apply for medical school or other  medical/health science graduate programs. Students who transfer between curricula must complete the final curriculum in total. Students who plan to complete departmental honors should meet with his/her academic  advisor prior to the third quarter of the junior year.

Biomedical engineers are employed in industry, hospitals, research facilities, government laboratories, and universities in areas such as artificial organs, biomechanics, drug delivery systems, automated patient  monitoring, artificial joints, prosthetics, and medical imaging technologies. Graduates may also pursue graduate studies in engineering or life sciences.

Program Learning Outcomes:

  • An ability to apply knowledge of mathematics, science and engineering
  • An ability to design and conduct experiments and to analyze and interpret data
  • An ability to design a system, component, or process to meet desired needs within realistic constraints
  • An ability to function on multi-disciplinary teams
  • An ability to identify, formulate, and solve engineering problems
  • An understanding of professional and ethical responsibility
  • An ability to communicate effectively
  • The broad education necessary to understand the impact of engineering and scientific solutions in a global and societal context
  • A recognition of the need for, and an ability to engage in life-long learning
  • A knowledge of contemporary issues
  • The skill to use modern engineering tools and techniques

For additional information:

Program Requirements:


I. Wright State Core: 44 Hours


Mathematics: 4 Hours


Global Traditions: 6 hours


Arts/Humanities: 3 Hours


Social Science: 6 hours


Natural Science: 10 Hours


Additional Core Courses: 9 Hours


Senior Design: 6 Hours


III. CECS Courses


V. Electives: 9 Hours


  • 3 from an approved list

Total: 120 Hours


Graduation Planning Strategy


The Graduation Planning Strategy (GPS) has been created to illustrate one option to complete degree requirements within a particular time frame. Students are encouraged to meet with their academic advisor to adjust this plan based on credit already earned, individual needs or curricular changes that may not be reflected in this year’s catalog.

Concentration



Pre-Medicine


Program Description:

Department of Biomedical, Industrial and Human Factors Engineering offers an undergraduate program in biomedical engineering leading to the Bachelor of Science in Biomedical Engineering. The biomedical engineering program is accredited by the Engineering Accreditation Commission of ABET, www.abet.org. Biomedical engineering is concerned with solving and understanding problems in biology and medicine by using principles, methods, and approaches drawn from engineering science and technology. Biomedical  engineering students work in modern teaching laboratories structured around computer-based engineering workstations and receive intensive academic training in engineering design and analysis principles as well as life science concepts. The senior design course integrates  learning in previous engineering courses to solve actual biomedical engineering problems that help prepare students for employment or graduate study. The curriculum provides a solid foundation of courses in physical, life, and engineering sciences, as well as mathematics.  Courses in biomedical engineering advance and apply the engineering science to medical devices and living systems.

Wright State’s BME program will produce biomedical engineers who will:

  • Objective 1: Be employed in industry/government or enrolled in graduate school.
  • Objective 2: Continue their education and broaden their knowledge in their chosen field.
  • Objective 3: Contribute as members of multi-disciplinary teams.

Current efforts in biomedical engineering at Wright State University include developing medical and surgical instrumentation, designing rehabilitative assistive and intelligent prosthetic/orthotic devices, medical imaging (including computed tomography and ultrasound), biomimetics, orthopedic implants, and biomedical microdevices. Many of these areas require interfacing complex systems with computer data acquisition and subsequent modeling and analysis with modern engineering software.

Two separate curricula are available. Curriculum A is the traditional ABET accredited degree program. Curriculum B, in addition to being ABET accredited, prepares students to apply for medical school or other medical/health science graduate programs. Students who transfer between curricula must complete the final curriculum in total. Students who plan to complete departmental honors should meet with his/her academic advisor prior to the third quarter of the junior year.

Biomedical engineers are employed in industry, hospitals, research facilities, government laboratories, and universities in areas such as artificial organs, biomechanics, drug delivery systems, automated patient monitoring, artificial joints, prosthetics, and medical imaging technologies. Graduates may also pursue graduate studies in engineering or life sciences.

Faculty:

Professors Cao, Goswami, Hangartner (Chair), He, Phillips, Rowley (Emeritus)

Associate Professor Reynolds

Assistant Professor Kashou

Senior Lecturer Kender

Instructor Tritschler

Program Requirements:


I. Wright State Core: 44 Hours


Mathematics: 4 Hours


Global Traditions: 6 Hours


Arts/Humanities: 3 Hours


Social Science: 6 Hours


Natural Science: 10 Hours


Additional Core Courses: 9 Hours


Senior Design: 6 Hours


III. CECS Courses


V. Electives


Total: 125 Hours


Graduation Planning Strategy


The Graduation Planning Strategy (GPS) has been created to illustrate one option to complete degree requirements within a particular time frame. Students are encouraged to meet with their academic advisor to adjust this plan based on credit already earned, individual needs or curricular changes that may not be reflected in this year’s catalog.

 

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