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 185 / 780 页
This learning path introduces high school biology students to the principles of drug distribution, covering key concepts such as blood flow, protein binding, tissue permeability, and barriers. It builds on basic pharmacokinetics and physiology knowledge to explain how drugs move from blood to tissues and factors affecting their distribution.
A beginner-friendly learning path for high school biology students to understand how drugs enter the body and the factors that influence their absorption. Starting with basic chemistry and cell biology, the path covers routes of administration, drug transport across membranes, and key pharmacokinetic concepts like bioavailability and first-pass metabolism.
This path introduces the fundamental concepts of pharmacology, covering its definition, historical development, drug nomenclature, sources, basic principles of drug action, and drug classifications. It is designed for beginners with basic biology and chemistry knowledge, providing a structured approach to systematic learning.
This learning path provides a structured approach to understanding how environmental and occupational toxins cause disease. It begins with foundational concepts in cellular pathophysiology and toxicology, then explores specific toxin classes and their mechanisms, and concludes with dose-response relationships and susceptibility factors. Designed for public health and medical students, the path emphasizes mechanisms of toxicity across different exposure scenarios.
This advanced learning path guides medical and biology students through the core pathophysiological mechanisms of aging, from fundamental cellular processes to the systemic consequences that drive age-related diseases. It integrates the hallmarks of aging, inflammaging, and SASP to build a cohesive understanding of how aging predisposes to disease.
This learning path guides medical and sleep medicine students through the pathophysiological mechanisms underlying major sleep disorders, starting with foundational sleep physiology and neuroanatomy. It covers obstructive sleep apnea, central sleep apnea, insomnia, narcolepsy, restless legs syndrome, and circadian rhythm disorders, emphasizing the underlying neural and systemic mechanisms and their clinical implications.
This learning path provides a systematic understanding of the mechanisms underlying cancer-induced wasting syndrome (cachexia). It covers systemic inflammation, tumor-derived factors, skeletal muscle and adipose tissue wasting, anorexia, and the impact of chemotherapy, building on foundational oncology and metabolic concepts.
This learning path provides an integrative understanding of the bidirectional communication between the gut microbiome, enteric nervous system, and the brain. It covers foundational gastrointestinal and neurophysiology, the role of the microbiome and its metabolites, mechanisms of barrier dysfunction and immune activation, and clinical implications in disorders such as IBS, depression, autism, and neurodegeneration.
This advanced learning path equips medical and obstetric students with a deep mechanistic understanding of major pregnancy complications, including preeclampsia, eclampsia, HELLP syndrome, gestational diabetes, preterm labor, and fetal growth restriction. It builds on foundational reproductive physiology and cardiovascular pathophysiology to explore placental, vascular, metabolic, and inflammatory mechanisms, culminating in a clinical integration of these concepts.
This advanced learning path equips medical and rheumatology students with a deep understanding of the pathophysiological mechanisms underlying major rheumatic diseases, including rheumatoid arthritis, osteoarthritis, spondyloarthritis, crystal arthropathies, and systemic lupus erythematosus. Beginning with foundational immunopathology and inflammation, the path progresses through disease-specific mechanisms to the rationale for targeted therapies, emphasizing the interplay between immune dysregulation, tissue damage, and clinical manifestations.