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 172 / 780 页
This learning path introduces public health and biomedical science students to the intersection of biomedical science and global health. It covers major infectious disease burdens, vaccine development, diagnostics, antimicrobial resistance, maternal and child health, and health systems strengthening, emphasizing sustainable solutions for low-resource settings.
This advanced learning path covers the composition and function of the human microbiome, the technologies used to study it, its role in various diseases, and emerging therapeutic strategies. It is designed for medical and biology students with a foundational background in microbiology and bioinformatics.
This advanced learning path provides a systematic understanding of immunotherapies for cancer and autoimmune diseases, covering fundamental immunology and cancer biology, major therapeutic modalities, mechanisms of action, clinical applications, adverse events, resistance, and combination strategies. It is designed for medical and immunology students seeking a comprehensive grasp of the field.
This learning path guides medical and laboratory science students from foundational molecular biology through advanced diagnostic techniques, including PCR, sequencing, hybridization, mass spectrometry, CRISPR-based diagnostics, liquid biopsy, and point-of-care testing, culminating in quality assurance and regulatory considerations.
This advanced learning path guides medical and biomedical engineering students through the foundational principles and practical applications of tissue engineering and regenerative medicine. It covers essential biomaterials, cell sources, growth factors, bioreactors, and advanced fabrication techniques, culminating in clinical translation and regulatory considerations.
This learning path systematically introduces the principles of synthetic biology, from foundational molecular biology and genetic circuit design to advanced applications in therapeutics, including CRISPR-based tools, biosensors, metabolic engineering, and safety measures. It is designed for biomedical and molecular biology students with basic knowledge in molecular biology and genetics.
This advanced learning path guides medical and biomedical science students through the foundational concepts and practical applications of precision medicine. It covers genomics, pharmacogenomics, molecular profiling, targeted therapies, immunotherapies, clinical implementation, and the associated ethical, legal, and social implications, providing a comprehensive understanding of how to tailor medical treatment to individual patients.
This learning path equips biomedical and data science students with the knowledge and skills to apply machine learning techniques to biomedical data. It covers essential prerequisites in programming, biostatistics, and genomics, followed by core ML concepts, specialized biomedical applications, and best practices for interpretability and validation.
This learning path equips biomedical and computational biology students with the skills to model biological systems using mathematical and computational approaches. Starting with foundational mathematics and programming, it progresses through deterministic and stochastic modeling, network reconstruction, and simulation tools, culminating in computational drug discovery and molecular dynamics. The path emphasizes practical application and career readiness in computational biology.
This learning path provides a systematic understanding of the molecular and genetic basis of inborn errors of metabolism and common metabolic diseases. It covers essential biochemistry and genetics, specific metabolic disorders, diagnostic approaches, and therapeutic strategies, building from foundational concepts to clinical applications.