Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
列表数据实时取自 GET /api/v1/paths,仅包含存在已发布版本的 Path。
共 7800 条 Path · 第 231 / 780 页
This learning path provides graduate students and researchers with a structured understanding of stimuli-responsive biomaterials, focusing on temperature-, pH-, and enzyme-responsive systems and their applications in drug delivery. It covers fundamental concepts in polymer science and biomaterials, the design principles of responsive materials, and their biomedical applications, culminating in advanced topics and current challenges.
This learning path equips professional engineers with a practical understanding of intellectual property (IP) as applied to biomaterials and medical devices. It covers the fundamentals of patents, trade secrets, freedom-to-operate analysis, and patent prosecution, with a focus on real-world engineering decisions and risk management.
This learning path equips regulatory specialists and biomedical engineers with the knowledge to plan, conduct, and interpret clinical evaluations for medical devices. It covers regulatory frameworks, clinical trial design, data collection and analysis, safety reporting, and post-market surveillance, with a focus on biomaterials.
This learning path equips professional engineers with the knowledge to apply quality management systems (QMS) in biomaterials production, focusing on ISO 13485, QSR, risk management per ISO 14971, and auditing. It covers regulatory foundations, QMS principles, risk management, and practical application to biomaterials manufacturing.
This advanced learning path equips professional engineers with the knowledge to design and manufacture patient-specific implants using additive manufacturing (AM), focusing on Ti-6Al-4V and PEEK. It covers material science, design principles, osseointegration, and regulatory considerations, ensuring a comprehensive understanding for clinical application.
This advanced learning path equips professional engineers with the knowledge and skills to conduct systematic failure analysis of clinical implant failures. It covers fundamental biomaterials science, specific failure mechanisms (fracture, fretting, corrosion, wear), and the integration of histopathological and root cause analysis to determine implant failure causes.
This learning path guides undergraduate engineering students through the essential knowledge needed to understand packaging requirements for biomaterial devices. It covers packaging materials, sterility maintenance, shelf life testing, and package integrity, building from foundational biomaterials concepts to application-focused topics.
This advanced professional learning path equips engineers with the knowledge to select and integrate biomaterials within a regulated medical device design process. It covers fundamental biomaterials science, design controls, materials selection, risk management, and validation, culminating in a capstone project that applies all concepts.
This learning path equips undergraduate engineering students with the knowledge and skills to apply characterization techniques for quality control of biomaterials. It covers fundamental concepts, key methods in microscopy, spectroscopy, mechanical testing, and surface analysis, and integrates regulatory and GMP considerations. The path emphasizes practical application and career readiness in biomaterials quality control.
This learning path covers the principles and applications of common sterilization methods for biomedical devices, including steam, ethylene oxide, gamma radiation, and electron beam. It emphasizes the effects of these methods on biomaterials and the importance of selecting appropriate sterilization processes. The path is designed for undergraduate engineering students with a basic understanding of biomaterials.