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 192 / 780 页
This advanced learning path explores how the kidneys regulate long-term blood pressure and body fluid volume through integrated mechanisms including pressure-natriuresis, the renin-angiotensin-aldosterone system, ADH, sympathetic innervation, and natriuretic peptides. It covers the pathophysiological basis of salt-sensitive hypertension and the renal mechanisms targeted by antihypertensive therapies. Designed for medical and physiology students with a foundation in renal and cardiovascular physiology.
This advanced learning path equips medical and endocrinology students with a mechanistic understanding of how hormones coordinate metabolism and growth. It covers the major hormonal axes—insulin/glucagon, GH/IGF-1, thyroid, and cortisol—and integrates them into whole-body physiology, emphasizing feedback regulation and clinical relevance.
This advanced learning path guides medical and nutrition students through the intricate neural and hormonal mechanisms governing gastrointestinal function. It begins with foundational concepts in GI anatomy and neurophysiology, progresses through the enteric nervous system and autonomic innervation, and culminates in the integrated regulation of motility, secretion, and the phases of digestion, emphasizing feedback mechanisms.
A comprehensive learning path for medical and nursing students covering the physiological mechanisms that regulate body water and electrolyte balance. It progresses from foundational concepts of body fluid compartments and basic renal physiology through the detailed hormonal and renal regulatory systems, culminating in the pathophysiology of electrolyte disorders.
This advanced learning path for medical and respiratory therapy students explores the neural and chemical mechanisms controlling ventilation, including central and peripheral chemoreceptors, respiratory rhythm generation, reflexes, and responses to hypoxia, hypercapnia, and exercise. It emphasizes integration with the cardiovascular system and requires foundational knowledge in respiratory physiology and neurophysiology.
This path guides medical and physiology students through the integrated mechanisms that regulate cardiovascular function under various conditions. It starts with foundational vascular and autonomic physiology, then progresses to reflexes and their integration, and finally applies this knowledge to physiological challenges and pathological states, including pharmacological interventions.
This learning path guides physiology graduate students through the application of statistical methods to analyze physiological data and interpret research findings. It covers descriptive statistics, hypothesis testing, t-tests, ANOVA, correlation and regression, repeated measures, statistical power, and common pitfalls, with a focus on practical application in physiological research.
This learning path guides biomedical engineering and computational biology students through the application of mathematical models to describe and predict physiological functions. It covers essential calculus and differential equations foundations, core physiological principles, compartmental modeling, and specific models for cardiovascular, respiratory, and renal systems, culminating in parameter estimation and sensitivity analysis.
This learning path guides medical and nursing students through the physiological mechanisms of body temperature regulation, from heat production and loss to the hypothalamic control center, and then explores the pathophysiology of fever, distinguishing it from hyperthermia and covering acclimatization.
This learning path guides kinesiology and sports science students through the physiological responses to acute exercise and the adaptations from chronic training. It begins with foundational cardiovascular and respiratory physiology, progresses through acute responses during exercise, and culminates in chronic training adaptations such as bradycardia and increased stroke volume.