Preparing your Path…
Preparing your Path…
Path Catalog
Data is pulled live from GET /api/v1/paths, and only Paths with a published version are listed.
7801 Paths · page 292 / 781
This path equips innovators and entrepreneurs with the essential skills to transform biomedical engineering ideas into viable startups. It covers regulatory strategy, intellectual property, funding, business models, and medical device design, emphasizing the unique challenges of the healthcare sector.
This learning path equips quality professionals with the knowledge and skills to design, implement, and maintain a quality management system (QMS) for medical devices, aligned with ISO 13485 and FDA Quality System Regulation (QSR). It covers regulatory foundations, core QMS processes, CAPA, audits, and practical implementation strategies.
This learning path equips product engineers with the knowledge to design medical devices from concept through market release. It covers regulatory frameworks, design controls, risk management, prototyping, testing, validation, and quality systems, culminating in a capstone project that integrates these elements.
This learning path provides a comprehensive understanding of point-of-care (POC) diagnostic technologies, focusing on lateral flow assays, microfluidics, and portable devices. It covers the underlying biosensor principles, instrumentation, and engineering design considerations, preparing learners for careers in biomedical device development.
This learning path equips learners with the knowledge to design low-cost, sustainable biomedical technologies for global health. It covers foundational biomedical engineering principles, global health challenges, and design for affordability and sustainability, culminating in a capstone project.
This learning path provides a structured understanding of medical device regulations and compliance, focusing on FDA regulations, ISO standards, and quality systems. It is designed for university students and professionals in biomedical engineering seeking a career in regulatory affairs. The path covers the regulatory landscape, quality management systems, risk management, and practical application through case studies.
This learning path guides senior or graduate students through the fundamental physics of light-tissue interactions, progressing to advanced optical imaging, spectroscopy, and photodynamic therapy. It emphasizes the prerequisite knowledge needed to understand how light is used in biomedical diagnostics and therapeutics, culminating in a capstone project that integrates these concepts.
This advanced learning path provides a comprehensive understanding of regenerative medicine, covering foundational principles, key therapeutic strategies including cell, gene, and tissue engineering, and the biological underpinnings necessary for clinical translation. Designed for senior or graduate students in biomedical engineering, the path emphasizes the integration of stem cell biology, biomaterials, and gene editing to restore tissue function.
This path equips senior biomedical engineering students with the knowledge and skills to manage medical devices within healthcare settings. It covers foundational medical device technology, safety standards, regulatory frameworks, and the integration of healthcare IT, culminating in a comprehensive approach to device lifecycle management.
This advanced learning path equips senior and graduate students with the knowledge to design assistive technologies for rehabilitation. It integrates biomechanics, neural engineering, and human-centered design principles, guiding learners from foundational concepts to a capstone project.