
Human Body Course
Master the human body from the cellular level to complete organ systems in one comprehensive course. You'll build a rock-solid foundation in anatomy, physiology, and pathophysiology that applies directly to health, fitness, and clinical careers. This course covers everything from DNA to disease mechanisms, giving you the knowledge professionals rely on every day.
What you will learn:
You will learn how every major organ system is structured, how it functions, and how it connects to the rest of the body. The course covers cell biology, tissue classification, skeletal and muscular mechanics, neural signalling, cardiovascular and respiratory physiology, digestion, endocrine regulation, and immune defence. You will also explore genetics, developmental biology, exercise physiology, nutrition, and the basics of pathophysiology. Each topic builds directly on the last, so your understanding deepens with every chapter. By the end, you will be able to explain how the human body works as a fully integrated system.
How you study in practice Human Body Course
How you practise Human Body Course
For companies looking to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the specific needs of your company.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Human Body Organization
Foundations of Human Body Organization
Lesson 1 • Levels of Structural Organization
Introduces the six levels from chemical to organism, showing how complexity emerges at each tier. Anchors all subsequent anatomy study in a unified framework.
Lesson 2 • Homeostasis and Feedback Mechanisms
Explains how the body maintains stable internal conditions through negative and positive feedback loops. Establishes the physiological principle underlying every organ system.
Lesson 3 • Body Cavities and Membranes
Maps the dorsal and ventral cavities and their subdivisions, plus the serous membranes lining them. Provides spatial context for organ placement studied in later chapters.
Lesson 4 • Anatomical Terminology and Position
Defines standard anatomical position and the directional terms used to describe body locations. Ensures precise, unambiguous communication throughout the course.
Chapter 2HideHide detailsSee detailsCells: Structure and Function
Cells: Structure and Function
Lesson 1 • Cytoplasm and Organelles
Identifies each major organelle, its structure, and its specific metabolic role. Builds understanding of how organelles cooperate to sustain cell life.
Lesson 2 • Nucleus and Genetic Material
Covers nuclear envelope structure, chromatin organization, and the flow of genetic information. Provides the molecular basis for protein synthesis discussed next.
Lesson 3 • Cell Membrane and Transport
Describes the phospholipid bilayer structure and the mechanisms cells use to move substances across it. Connects membrane function to nutrient uptake and waste removal.
Lesson 4 • Cell Cycle and Division
Details interphase, mitosis, and cytokinesis, including checkpoints that regulate division. Establishes the cellular basis for growth, repair, and cancer risk.
Lesson 5 • Protein Synthesis
Traces transcription and translation from gene to functional protein. Links molecular events to cellular and tissue-level outcomes.
Chapter 3HideHide detailsSee detailsTissues: The Fabric of the Body
Tissues: The Fabric of the Body
Lesson 1 • Muscle Tissue Characteristics
Distinguishes skeletal, cardiac, and smooth muscle by structure and control mechanism. Directly precedes the dedicated muscular system chapter.
Lesson 2 • Nervous Tissue and Signaling
Identifies neurons and glial cells and describes how electrical signals are generated and transmitted. Lays the cellular groundwork for the nervous system chapter.
Lesson 3 • Tissue Repair and Regeneration
Explains the stages of wound healing and factors that determine regeneration versus scar formation. Connects tissue biology to clinical outcomes.
Lesson 4 • Connective Tissue Varieties
Surveys loose, dense, cartilage, bone, and blood as connective tissue subtypes defined by matrix composition. Prepares students for skeletal and cardiovascular chapters.
Lesson 5 • Epithelial Tissue Types and Functions
Classifies epithelium by cell shape and layer number, linking each type to its protective or secretory role. Forms the basis for understanding skin and gland structure.
Chapter 4HideHide detailsSee detailsSkeletal and Muscular Systems
Skeletal and Muscular Systems
Lesson 1 • Joints: Classification and Movement
Classifies joints by structure and function, detailing synovial joint anatomy and movement types. Connects joint design to range of motion and injury vulnerability.
Lesson 2 • Major Muscle Groups and Actions
Identifies prime movers, antagonists, and synergists for key body movements using lever system principles. Prepares students for applied movement analysis.
Lesson 3 • Skeletal Muscle Microanatomy
Traces the hierarchy from muscle belly to sarcomere, explaining the sliding filament mechanism. Provides the molecular basis for all contraction events.
Lesson 4 • Bone Structure and Classification
Describes compact and spongy bone histology, periosteum, and bone cell types. Establishes the structural basis for skeletal strength and remodelling.
Lesson 5 • Axial and Appendicular Skeleton
Maps the 206 bones of the adult skeleton into axial and appendicular divisions with key landmarks. Provides spatial reference for muscle attachment and organ protection.
Lesson 6 • Muscle Contraction and Energy
Explains twitch, summation, and tetanus, plus the three ATP-generating pathways used during exercise. Links contraction mechanics to fatigue and recovery.
Chapter 5HideHide detailsSee detailsNervous System: Structure and Function
Nervous System: Structure and Function
Lesson 1 • Autonomic Nervous System
Contrasts sympathetic and parasympathetic divisions in anatomy, neurotransmitters, and target organ effects. Explains autonomic control of visceral homeostasis.
Lesson 2 • Central Nervous System Organization
Surveys brain regions and spinal cord structure, linking each area to specific functions. Provides the anatomical map for understanding neurological conditions.
Lesson 3 • Peripheral Nervous System and Reflexes
Classifies cranial and spinal nerves and explains reflex arc components and clinical significance. Extends CNS knowledge to peripheral pathways.
Lesson 4 • Synaptic Transmission and Neurotransmitters
Explains chemical synapse events and the major excitatory and inhibitory neurotransmitters. Connects molecular signalling to behaviour and pharmacology.
Lesson 5 • Neuron Physiology and Action Potentials
Details resting membrane potential, depolarization, repolarization, and propagation along axons. Builds on tissue-level neuron anatomy introduced in Chapter 3.
Chapter 6HideHide detailsSee detailsCardiovascular and Respiratory Systems
Cardiovascular and Respiratory Systems
Lesson 1 • Pulmonary Ventilation and Gas Exchange
Explains the mechanics of breathing, lung volumes, and alveolar gas exchange by diffusion. Connects respiratory anatomy to oxygen delivery and CO2 removal.
Lesson 2 • Blood Vessels and Circulation
Compares artery, vein, and capillary wall structure and explains pulmonary versus systemic circuits. Connects vessel design to pressure, flow, and exchange.
Lesson 3 • Respiratory Tract Anatomy
Maps the upper and lower respiratory tracts from nasal cavity to alveoli, noting structural adaptations. Provides the anatomical context for gas exchange mechanics.
Lesson 4 • Blood Pressure and Flow Regulation
Explains determinants of blood pressure and the neural, hormonal, and local mechanisms that regulate it. Links cardiovascular physiology to homeostatic control.
Lesson 5 • Heart Anatomy and Cardiac Cycle
Describes heart chambers, valves, and the conduction system, then maps the cardiac cycle phases. Establishes the pump mechanics underlying circulation.
Chapter 7HideHide detailsSee detailsDigestive, Urinary, and Endocrine Systems
Digestive, Urinary, and Endocrine Systems
Lesson 1 • Kidney Structure and Urine Formation
Maps nephron anatomy and the three processes of filtration, reabsorption, and secretion. Explains how the kidney regulates blood composition.
Lesson 2 • Digestion and Nutrient Absorption
Details enzymatic breakdown of carbohydrates, proteins, and lipids and their absorption mechanisms. Links digestive chemistry to nutrient delivery to cells.
Lesson 3 • Digestive Tract Structure and Motility
Describes the four-layer wall plan of the GI tract and the motility patterns that move food. Establishes the structural basis for digestion and absorption.
Lesson 4 • Endocrine Glands and Hormone Actions
Identifies major endocrine glands, their hormones, and target-cell mechanisms of action. Shows how hormonal signalling coordinates metabolism, growth, and stress response.
Lesson 5 • Fluid, Electrolyte, and Acid-Base Balance
Explains how the kidneys, lungs, and buffers maintain pH and fluid compartment volumes. Connects urinary and respiratory physiology to whole-body homeostasis.
Chapter 8HideHide detailsSee detailsImmune, Reproductive, and Integumentary Systems
Immune, Reproductive, and Integumentary Systems
Lesson 1 • Male Reproductive Anatomy and Physiology
Identifies male reproductive organs, spermatogenesis, and hormonal regulation of male function. Provides the anatomical and physiological basis for reproductive health.
Lesson 2 • Innate Immune Defenses
Covers physical barriers, phagocytes, natural killer cells, and the inflammatory response as first-line defenses. Establishes the non-specific foundation before adaptive immunity.
Lesson 3 • Female Reproductive Anatomy and Physiology
Maps female reproductive organs, oogenesis, and the menstrual cycle with its hormonal drivers. Completes the reproductive system picture alongside the male section.
Lesson 4 • Adaptive Immunity and Lymphatic System
Explains antigen presentation, B-cell antibody production, and T-cell cytotoxic responses. Connects lymphatic anatomy to immune surveillance and fluid balance.
Lesson 5 • Integumentary System Structure and Functions
Describes skin layers, accessory structures, and the five major functions of the integumentary system. Closes the organ system survey by linking surface anatomy to protection and sensation.
Your valid completion certificate
This course is for you:
Pre-med students: building the biological foundation for medical school.
Personal trainers: deepening their understanding of movement and physiology.
Nursing applicants: preparing for the rigor of a health sciences program.
Curious adults: wanting to understand what happens inside their own bodies.
Career changers: transitioning into healthcare, fitness, or wellness fields.
Biology teachers: refreshing and expanding their human body content knowledge.
What our students say
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