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 42 / 780 页
This learning path equips synthetic biology and computational students with the skills to use computational design tools for engineering biological systems. It covers programming fundamentals, bioinformatics data handling, modeling and simulation, and design tools like Cello and SBOL, culminating in a capstone project.
This learning path equips synthetic biology and biology students with the knowledge and skills to design, execute, and analyze high-throughput screening (HTS) assays. It covers assay fundamentals, automation, data analysis, and application to biological discovery, emphasizing practical career skills.
A comprehensive learning path for synthetic biology students to master the design, assembly, validation, and testing of genetic circuits. It covers foundational molecular biology, DNA assembly techniques, computational modeling, and experimental characterization.
This learning path equips synthetic biology students with essential laboratory skills, covering safety, DNA assembly, transformation, and characterization. It progresses from core molecular biology techniques to hands-on assembly methods and analytical validation, preparing learners for real-world synthetic biology projects.
This advanced learning path equips students in synthetic biology and energy with the knowledge to understand and design biological systems for energy applications. It covers the core principles of biofuel production, microbial fuel cells for bioelectricity, and biological carbon capture, integrating metabolic engineering and systems biology.
This advanced learning path guides synthetic biology and materials science students through the design, engineering, and application of bio-based synthetic materials. It covers polymer chemistry fundamentals, bio-based polymer production, self-assembly principles, and the integration of biological and materials engineering for real-world applications.
This advanced learning path equips students with the knowledge to understand and design biological systems for environmental applications, including bioremediation, biosensors, biofuels, and sustainability. It bridges synthetic biology and environmental science, covering foundational concepts, design principles, and practical applications.
A comprehensive learning path for university students in synthetic biology and agriculture, covering the foundational molecular and plant biology, advanced genetic engineering tools, and applications in engineered crops, microbial agriculture, and nutrition. The path progresses from basic principles to system-level design and real-world applications, emphasizing responsible innovation.
This advanced learning path guides students through the interdisciplinary field of synthetic immunology, covering fundamental immunology, synthetic biology tools, and their application in designing engineered immune cells and vaccines. It integrates knowledge from immunology, molecular biology, and bioengineering to enable learners to understand and design synthetic immune systems.
This learning path guides students through the foundational concepts and practical skills needed to design gene networks. It covers molecular biology basics, mathematical modeling, network motifs, dynamics, and design principles, culminating in a capstone design project.