AnatomyVista
INTERACTIVE ANATOMY

Full Body Atlas3D

2,234 modeled pieces · BodyParts3D
Systems0
0 pieces visible
ADULT HUMAN · MALE
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AssembledEvery piece
Preparing the anatomy0% · Loading 2,234 pieces
Medical Atlas Provenance & Clinical Curriculum

Full-Body 3D Anatomy Atlas Curriculum & Clinical Guide

AnatomyVista 3D Human Anatomy Atlas is built upon the landmark BodyParts3D 4.0 anatomical dataset developed by RIKEN and the University of Tokyo, strictly harmonized with the Foundational Model of Anatomy (FMA) standard. Covering 15 primary anatomical systems, 2,234 individual geometric meshes, and 3,432 standardized anatomical concepts, it delivers an open-access, GPU-accelerated spatial anatomy laboratory directly in modern web browsers.

2,234
Individual 3D Meshes

High-fidelity anatomical meshes from auditory ossicles to retroperitoneal viscera

15
Organ Systems Covered

Comprehensive systems: skeletal, muscular, circulatory, nervous, and endocrine

3,432
FMA Ontological Concepts

Mapped directly to the Foundational Model of Anatomy and TA2 standards

100%
Client-Side WebGL Privacy

No native plugins or installs; all 3D computation stays in your local browser

Comparative Analysis: 2D Textbooks vs Cadaver Dissection vs AnatomyVista 3D Atlas

Evaluating the three primary pedagogical modalities in medical anatomy: flat diagrams, physical dissection, and interactive 3D spatial models.

Evaluation DimensionTraditional 2D TextbookCadaveric DissectionAnatomyVista 3D Atlas
Spatial Dimension & DepthStatic 2D projections lacking true depth and spatial orientationReal physical space, but altered by formalin tissue shrinkage and discolorationTrue 3D coordinates with seamless 360° orbital rotation, pitch, and zoom
Layer Peeling & DecompositionRequires flipping across static plates without dynamic transparencyDestructive and irreversible: cutting superficial muscles destroys intact layersReal-time Exploded View slider allowing reversible, non-destructive layer isolation
Multi-System Cross-CorrelationSystems are illustrated in separate chapters, hindering mental synthesisDelicate neurovascular bundles are fragile and frequently damaged in dissectionModular system toggles (e.g., overlay skeletal + arterial + peripheral nervous)
Cost, Ethics & AccessibilityExpensive heavy atlas tomes with slow reprint update cyclesProhibitive laboratory maintenance, toxic formalin vapors, and donor scarcityOpen-access BodyParts3D dataset, zero cost, accessible anywhere on web & mobile
Step-by-Step Walkthrough

Interactive 3D Atlas User Guide & Navigation Controls

Master spatial orbits, volumetric layer explosion, and cross-system correlation in four straightforward steps.

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Step 1: Spatial Orbit & Freeform Navigation

Click and drag (or single-finger swipe on touch devices) to orbit freely in 3D space. Scroll the mouse wheel or pinch to zoom. Right-click or Shift+drag to pan.

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Step 2: Exploded View Volumetric Deconstruction

Adjust the Exploded View slider in the top toolbar. Anatomical components separate radially along anatomical vectors, revealing deep-seated viscera shielded by bone.

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Step 3: Multi-System Multi-Layer Stacking

Open the left Systems drawer to combine any of the 15 anatomical systems. Toggling Skeletal + Arterial reveals femoral triangle vessel runs over pelvic landmarks.

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Step 4: Structure Isolation & Clinical Integration

Click any anatomical structure to reveal its Terminologia Anatomica Latin taxonomy, parent system, and physiological summary. Launch POCUS and clinical puncture stations.

Topical System Index

Explore All 15 Anatomical Systems in Detail

Skeleton

Bones form the supporting framework of the body, protect organs, and provide attachment points for muscles. Their internal tissue also stores minerals and produces blood cells.

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Muscles

Skeletal muscles generate movement by pulling on their attachments. Together with tendons, they move joints, stabilize posture, and produce heat.

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Heart

The heart is a muscular pump with four chambers. Its valves direct blood forward through the pulmonary and systemic circuits.

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Sensory organs

These structures contribute to special senses, including sight, hearing, and balance. Their specialized tissues detect stimuli and work with the nervous system to convey information.

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Arteries

The heart drives blood through the circulation. Arteries carry blood away from the heart to supply tissues or, in the pulmonary circuit, to the lungs.

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Veins

Veins return blood toward the heart. Superficial and deep networks collect blood from the tissues; the pulmonary veins bring oxygenated blood back from the lungs.

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Nervous system

The brain, spinal cord, and peripheral nerves carry and process signals. They support sensation, movement, coordination, and automatic regulation of body functions.

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Respiratory

The airways conduct air to the lungs, where oxygen and carbon dioxide move between air and blood. Breathing depends on pressure changes produced by respiratory muscles.

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Digestive

The digestive tract breaks down food, absorbs nutrients and water, and moves waste onward. Accessory organs contribute bile and digestive enzymes.

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Urinary

The kidneys filter blood and regulate fluid, electrolyte, and acid–base balance. Urine travels through the ureters to the bladder and exits through the urethra.

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Lymphatic

Lymphatic vessels return excess tissue fluid to the circulation. Lymph nodes and other lymphoid organs support immune surveillance and responses.

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Endocrine

Endocrine organs release hormones into the blood to coordinate processes such as metabolism, growth, stress responses, and reproduction.

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Reproductive

The male reproductive structures represented here contribute to sperm production, maturation, transport, and the production of sex hormones.

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Body surface

The body surface provides an outer anatomical reference. The integumentary system forms a protective barrier and contributes to sensation and temperature regulation.

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Connective tissue

Cartilage, ligaments, and other connective tissues support, connect, and separate structures. Their roles include stabilizing joints and distributing mechanical loads.

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Scientific Provenance & Citations: Geometric data is derived from the BodyParts3D 4.0 project developed by the Database Center for Life Science (DBCLS), University of Tokyo, and RIKEN, licensed under Creative Commons Attribution-ShareAlike 2.1 Japan. Anatomical terminology complies with Terminologia Anatomica 2 (TA2) by FIPAT and the Foundational Model of Anatomy (FMA) standard.