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 186 / 780 页
This advanced learning path equips pain management and neurology students with the pathophysiological principles underlying chronic pain. It covers the classification of pain, clinical differentiation of neuropathic versus nociceptive pain, and evidence-based, pathophysiology-guided pharmacological and interventional strategies, including mechanisms of treatment failure and the concept of chronic pain as a disease.
This learning path bridges the gap between foundational neurophysiology/pathology and the clinical reasoning used in diagnosing and managing major neurological diseases. It emphasizes how pathophysiological mechanisms manifest in clinical presentation, neuroimaging findings, and therapeutic strategies, with a focus on stroke, neurodegenerative diseases, epilepsy, multiple sclerosis, and neuroinfections.
This learning path provides a comprehensive understanding of the pathophysiological mechanisms underlying leukemias, lymphomas, and plasma cell disorders. It covers normal hematopoiesis, genetic and molecular basis of these diseases, and targeted therapeutic mechanisms. Designed for medical and hematology students aiming for a career in oncology or hematology.
A structured learning path for medical students and residents to apply pathophysiological principles in diagnosing and managing major liver diseases. It covers hepatic structure and function, injury mechanisms, and clinical correlations for viral hepatitis, cirrhosis, portal hypertension, hepatic failure, and hepatocellular carcinoma, culminating in pathophysiologically rational management strategies.
This advanced learning path equips medical students and residents with the ability to apply pathophysiological principles to the diagnosis and management of renal diseases. It covers normal renal physiology, then systematically explores acute kidney injury, chronic kidney disease, glomerular and tubulointerstitial diseases, correlating each with clinical presentation, laboratory findings, and pathophysiology-based treatments.
This path bridges foundational endocrine physiology with clinical application, enabling learners to diagnose and manage major endocrine disorders by understanding underlying pathophysiological mechanisms. It covers hormonal regulation, major gland disorders, and therapeutic rationale, emphasizing the correlation between pathophysiology and clinical findings.
This advanced learning path guides medical students and residents through the pathophysiological principles underlying major cardiovascular diseases, correlating molecular and hemodynamic mechanisms with clinical presentation, diagnostic findings, and therapeutic strategies. It emphasizes how understanding pathophysiology informs diagnosis and management in ischemic heart disease, heart failure, arrhythmias, valvular disease, and cardiomyopathies.
This learning path explores the pathophysiological mechanisms underlying acute and chronic hypoxia, with a focus on high-altitude environments. It begins with foundational respiratory physiology and oxygen sensing, progresses through cellular responses including the HIF pathway, and culminates in the clinical syndromes of acute mountain sickness, high-altitude cerebral and pulmonary edema, and chronic mountain sickness.
This learning path guides medical and emergency medicine students through the pathophysiological mechanisms of heat stroke, hypothermia, and frostbite. Beginning with foundational thermoregulation and hemodynamic concepts, it progresses to specific mechanisms of thermal injury and rewarming complications, emphasizing the underlying physiology and clinical relevance.
This learning path explores how environmental exposures—particulates, gases, allergens, and tobacco smoke—disrupt respiratory structure and function, leading to diseases such as pneumoconiosis, hypersensitivity pneumonitis, occupational asthma, and lung cancer. It begins with foundational respiratory pathophysiology and progresses through specific exposure-disease mechanisms, emphasizing dose-response, host factors, and prevention. Designed for public health and medical students, the path integrates basic science with clinical and public health perspectives.