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 58 / 780 页
This advanced learning path equips nanobiotechnology and oncology students with a systematic understanding of how nanoscale materials are applied to cancer diagnosis, imaging, targeted therapy, and theranostics. Beginning with foundational oncology and nanoscience concepts, the path progresses through the design, functionalization, and biomedical application of nanoparticles, culminating in integrated theranostic platforms and clinical translation considerations.
This advanced learning path equips nanobiotechnology and pharmacology students with the knowledge to understand how nanomaterials interact with biological systems from a pharmacological perspective. It covers the principles of ADME, pharmacokinetics, pharmacodynamics, and regulatory considerations specific to nanomedicines.
This learning path provides a systematic understanding of nanotoxicology, covering the fundamental properties of nanomaterials, their interactions with biological systems, mechanisms of toxicity, and methods for safety assessment and risk management. Designed for university students in nanobiotechnology and toxicology, it progresses from basic concepts to advanced applications.
This advanced path equips nanobiotechnology and virology students with the knowledge to understand and apply viral nanomaterials. It begins with essential virology and nanoscience concepts, then explores the use of virus particles as templates for functional materials and their applications in drug delivery and vaccine development.
This advanced learning path guides nanobiotechnology and biochemistry students through the principles and applications of protein-based nanomaterials. It covers protein biochemistry foundations, engineering strategies, self-assembly mechanisms, and the design of nanoreactors, culminating in a project that integrates these concepts.
This advanced learning path guides nanobiotechnology and chemistry students through the principles and applications of DNA-based nanomaterials. Starting with nucleic acid chemistry and structural DNA nanotechnology, it progresses through DNA origami, dynamic nanostructures, and DNA computing, culminating in therapeutic applications. The path emphasizes the interdisciplinary connections between chemistry, biology, and materials science.
This learning path introduces students to the nanoscale world of biology, covering the fundamental principles of molecular machines, DNA nanotechnology, and biological motors. It builds from cell biology and biophysics foundations to advanced applications in nanobiotechnology.
This learning path introduces the principles of nanomedicine, covering foundational nanoscience and biology, then exploring applications in therapeutics, diagnostics, imaging, and surgery. It is designed for university students in nanobiotechnology and medicine, providing a systematic understanding of how nanotechnology is used in medicine.
A systematic learning path covering the fundamental mechanisms, key nanomaterials, and practical applications of nanobiosensors. Designed for university students in nanobiotechnology and engineering, it progresses from basic sensor science to advanced integration challenges.
A systematic learning path for nanobiotechnology and medicine students to understand nanoscale diagnostics. It covers the principles of biosensors, the design and application of nanoparticles for detection, and advanced imaging techniques, with a focus on integrating these concepts for practical diagnostic applications.