Preparing your Path…
Preparing your Path…
Path Catalog
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This learning path equips imaging engineers with the knowledge to design, calibrate, and assure the quality of diagnostic imaging systems. It covers the core physics and engineering principles, system architecture, calibration methods, and quality assurance protocols essential for professional practice.
This advanced professional learning path equips product engineers with the knowledge to design wearable health monitoring devices. It covers sensor technologies, power management, wireless connectivity, and data analytics, emphasizing practical application and system integration.
This advanced graduate-level path equips learners with the engineering principles behind stem cell culture, differentiation, and bioprocessing, with a focus on tissue engineering applications. It covers stem cell biology fundamentals, bioprocess engineering, and the design of engineered microenvironments.
This advanced professional learning path equips clinical researchers with the knowledge to design, conduct, and evaluate clinical trials. It covers foundational biostatistics, trial design, ethical and regulatory frameworks, and practical implementation, ensuring rigorous and compliant research.
This learning path equips safety engineers with the knowledge and skills to apply risk management principles to biomedical devices, focusing on ISO 14971, FMEA, and practical mitigation strategies. It progresses from foundational concepts to advanced application, ensuring learners can integrate risk management into device design and lifecycle.
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.