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Published on: September 11, 2021
A systematic approach for introducing innovative product design in courses with engineering and nonengineering
1Department of Industrial Engineering, Texas Tech University, Lubbock, TX 77409, USA.
Summary
Biomedical product development teams can enhance innovation and collaboration in resource-constrained global settings. A revised course improved students' ability to work in distributed teams and create novel design solutions.
Area of Science:
- Biomedical Engineering
- Innovation Management
- Global Product Development
Background:
- The modern global economy demands increased innovation in biomedical product development under tight resource and time constraints.
- Distributed teams are common in global product development, necessitating effective collaboration strategies.
Purpose of the Study:
- To adapt an existing course to simulate a global, distributed team environment for biomedical product development.
- To assess the effectiveness of a systematic approach to innovation for diverse student teams.
Main Methods:
- Revised a course to include both on-campus and distance students in interdisciplinary teams.
- Incorporated engineers and students from other specialties within each team.
- Utilized interactive lectures and projects to teach a systematic innovation approach.
Main Results:
- Students reported the course as challenging and exciting.
- Demonstrated improved student ability to collaborate in distributed teams.
- Showcased enhanced student capacity for developing innovative design solutions.
Conclusions:
- A systematic approach to innovation can be effectively taught to interdisciplinary, distributed teams.
- The course successfully prepared students for the realities of global biomedical product development.
- Educational strategies can foster innovation and teamwork in simulated global economic conditions.
