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Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Bioengineering for Medical Devices
( 25 Modules )

Module #1
Introduction to Bioengineering for Medical Devices
Overview of the field, importance, and applications of bioengineering in medical devices
Module #2
Biological Principles for Medical Devices
Review of human physiology, cellular biology, and biomechanics relevant to medical device design
Module #3
Materials Science for Medical Devices
Overview of materials properties, selection, and processing for medical device applications
Module #4
Biomaterials and Biocompatibility
Introduction to biomaterials, biocompatibility, and host-biomaterial interactions
Module #5
Medical Device Classification and Regulations
Overview of FDA regulations, device classification, and approval processes
Module #6
Design Controls and Risk Management
Introduction to design controls, risk management, and failure modes and effects analysis (FMEA)
Module #7
Biomechanics and Mechanobiology
Applications of biomechanics and mechanobiology in medical device design and development
Module #8
Cardiovascular Devices
Design and development of cardiovascular devices, including stents, valves, and vascular grafts
Module #9
Neurological Devices
Design and development of neurological devices, including implants, prosthetics, and brain-computer interfaces
Module #10
Orthopedic and Musculoskeletal Devices
Design and development of orthopedic and musculoskeletal devices, including joint replacements and fracture fixation
Module #11
Biomaterials for Tissue Engineering
Applications of biomaterials in tissue engineering and regenerative medicine
Module #12
Nanotechnology and Microfabrication
Applications of nanotechnology and microfabrication in medical device development
Module #13
Medical Imaging and Diagnostic Devices
Design and development of medical imaging and diagnostic devices, including MRI, CT, and ultrasound
Module #14
Sensors and Actuators for Medical Devices
Introduction to sensors and actuators used in medical devices, including biosensors and microelectromechanical systems (MEMS)
Module #15
Medical Device Sterilization and Packaging
Introduction to sterilization methods, packaging, and labeling for medical devices
Module #16
Clinical Trials and FDA Submission
Overview of clinical trials, FDA submission, and post-market surveillance for medical devices
Module #17
Intellectual Property and Patent Law
Introduction to intellectual property, patent law, and IP protection for medical devices
Module #18
Regulatory Affairs and Quality Systems
Overview of regulatory affairs, quality systems, and ISO 13485 for medical devices
Module #19
Medical Device Entrepreneurship and Business Development
Introduction to entrepreneurship, business development, and commercialization of medical devices
Module #20
Global Healthcare Systems and Medical Device Markets
Overview of global healthcare systems, medical device markets, and market access strategies
Module #21
Medical Device Safety and Risk Management
Introduction to medical device safety, risk management, and recall procedures
Module #22
Human Factors and Usability Engineering
Introduction to human factors, usability engineering, and user-centered design for medical devices
Module #23
Computational Modeling and Simulation
Applications of computational modeling and simulation in medical device design and development
Module #24
Ethics and Societal Impacts of Medical Devices
Discussion of ethical considerations and societal impacts of medical device development and use
Module #25
Course Wrap-Up & Conclusion
Planning next steps in Bioengineering for Medical Devices career


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