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Dental Scope: free interactive 3D dental anatomy

Dental Scope is a free, open-source 3D dental anatomy explorer. Rotate a full skull and both jaws, pick any of the 32 permanent teeth, and dissect a tooth layer by layer, from enamel and dentin down to the pulp and root canals. It runs in the browser with nothing to install.

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What you can do

All 32 permanent teeth

Each link opens the 3D explorer with that tooth selected.

Upper right (FDI quadrant 1)

  1. Maxillary right central incisor FDI 11 · Universal 8 · Palmer UR1
  2. Maxillary right lateral incisor FDI 12 · Universal 7 · Palmer UR2
  3. Maxillary right canine FDI 13 · Universal 6 · Palmer UR3
  4. Maxillary right first premolar FDI 14 · Universal 5 · Palmer UR4
  5. Maxillary right second premolar FDI 15 · Universal 4 · Palmer UR5
  6. Maxillary right first molar FDI 16 · Universal 3 · Palmer UR6
  7. Maxillary right second molar FDI 17 · Universal 2 · Palmer UR7
  8. Maxillary right third molar FDI 18 · Universal 1 · Palmer UR8

Upper left (FDI quadrant 2)

  1. Maxillary left central incisor FDI 21 · Universal 9 · Palmer UL1
  2. Maxillary left lateral incisor FDI 22 · Universal 10 · Palmer UL2
  3. Maxillary left canine FDI 23 · Universal 11 · Palmer UL3
  4. Maxillary left first premolar FDI 24 · Universal 12 · Palmer UL4
  5. Maxillary left second premolar FDI 25 · Universal 13 · Palmer UL5
  6. Maxillary left first molar FDI 26 · Universal 14 · Palmer UL6
  7. Maxillary left second molar FDI 27 · Universal 15 · Palmer UL7
  8. Maxillary left third molar FDI 28 · Universal 16 · Palmer UL8

Lower left (FDI quadrant 3)

  1. Mandibular left central incisor FDI 31 · Universal 24 · Palmer LL1
  2. Mandibular left lateral incisor FDI 32 · Universal 23 · Palmer LL2
  3. Mandibular left canine FDI 33 · Universal 22 · Palmer LL3
  4. Mandibular left first premolar FDI 34 · Universal 21 · Palmer LL4
  5. Mandibular left second premolar FDI 35 · Universal 20 · Palmer LL5
  6. Mandibular left first molar FDI 36 · Universal 19 · Palmer LL6
  7. Mandibular left second molar FDI 37 · Universal 18 · Palmer LL7
  8. Mandibular left third molar FDI 38 · Universal 17 · Palmer LL8

Lower right (FDI quadrant 4)

  1. Mandibular right central incisor FDI 41 · Universal 25 · Palmer LR1
  2. Mandibular right lateral incisor FDI 42 · Universal 26 · Palmer LR2
  3. Mandibular right canine FDI 43 · Universal 27 · Palmer LR3
  4. Mandibular right first premolar FDI 44 · Universal 28 · Palmer LR4
  5. Mandibular right second premolar FDI 45 · Universal 29 · Palmer LR5
  6. Mandibular right first molar FDI 46 · Universal 30 · Palmer LR6
  7. Mandibular right second molar FDI 47 · Universal 31 · Palmer LR7
  8. Mandibular right third molar FDI 48 · Universal 32 · Palmer LR8

Tooth numbering systems

Dentists name teeth with a short code. Dental Scope shows all three systems in common use, so you can learn to read each one. Take the lower left first molar as an example:

SystemHow it worksLower left first molar
FDI (ISO 3950)Two digits: the quadrant (1 upper right, 2 upper left, 3 lower left, 4 lower right), then the position from the midline (1 central incisor to 8 third molar). Used in most of the world.36
Universal (ADA)Numbers 1 to 32, starting at the upper right third molar, running along the upper arch to the upper left, then back along the lower arch from the lower left third molar to the lower right. Used mainly in the United States.#19
PalmerA quadrant symbol with the position number 1 to 8, written here in text form as UR, UL, LL or LR plus the position. Common in the United Kingdom and in orthodontics.LL6

Tooth types

The permanent dentition has eight teeth in each quadrant: two incisors, one canine, two premolars and three molars. Typical textbook values are shown; individual anatomy varies.

Central incisors

Maxillary central incisor (upper)

The most prominent tooth of the smile. A single-rooted incisor with a broad, flat labial surface and a straight incisal edge used for cutting food.

Function. Incising (biting and cutting) food; supports the upper lip, contributes to speech (labiodental and dental sounds) and to facial appearance.

Notes. Frequently involved in dental trauma because of its forward position. Newly erupted incisors may show mamelons (small rounded bumps) on the incisal edge.

Roots
Usually one conical root
Root canals
Usually one canal
Eruption
About 7–8 years

Mandibular central incisor (lower)

The smallest tooth of the permanent dentition: a narrow, symmetrical incisor with a single root that is flattened mesiodistally.

Function. Cutting food against the maxillary incisors.

Notes. Although usually single-rooted, a second (lingual) canal is present in a notable minority.

Roots
One, flattened mesiodistally
Root canals
Usually one, sometimes two
Eruption
About 6–7 years

Lateral incisors

Maxillary lateral incisor (upper)

A smaller incisor beside the central incisor, with a more rounded incisal outline and the greatest variation in form of the anterior teeth.

Function. Cutting food; contributes to the smile and to anterior guidance.

Notes. Common site of developmental variation, including peg-shaped laterals and congenital absence.

Roots
Usually one root
Root canals
Usually one canal
Eruption
About 8–9 years

Canines

Maxillary canine (upper)

A long, single-cusped tooth at the corner of the arch. The maxillary canine usually has the longest root in the dentition.

Function. Grasping and tearing food; guides the jaw in lateral movements (canine guidance); supports the corner of the lip.

Notes. Its long root anchors it well; it is a common site of impaction, usually palatally.

Roots
One long root
Root canals
Usually one canal
Eruption
About 11–12 years

Mandibular canine (lower)

The mandibular cornerstone tooth: a long single-cusped tooth with a long root, narrower than its maxillary counterpart.

Function. Grasping and tearing food; lateral guidance.

Notes. Occasionally has a bifurcated root.

Roots
One, occasionally bifurcated
Root canals
Usually one
Eruption
About 9–10 years

First premolars

Maxillary first premolar (upper)

A two-cusped (buccal and palatal) premolar. It usually has two roots, which distinguishes it from most other premolars.

Function. Transitions from tearing to grinding; holds and crushes food.

Notes. Frequently extracted for orthodontic space. Two canals are typical, so both must be located in endodontic treatment.

Roots
Usually two (buccal and palatal)
Root canals
Usually two
Eruption
About 10–11 years

Mandibular first premolar (lower)

A premolar with a large buccal cusp and a small lingual cusp, giving it a canine-like appearance.

Function. Assists the canine in tearing and begins crushing.

Notes. Usually one canal, but canal anatomy is notably variable.

Roots
One
Root canals
Usually one, sometimes two
Eruption
About 10–12 years

Second premolars

Maxillary second premolar (upper)

A two-cusped premolar similar to the first premolar, with cusps closer in size and usually a single root.

Function. Crushing and grinding food.

Notes. Usually one canal, but two canals occur in a substantial minority.

Roots
Usually one
Root canals
One, sometimes two
Eruption
About 10–12 years

Mandibular second premolar (lower)

A premolar with a better-developed lingual portion than the first premolar, often with two lingual cusps.

Function. Crushing and grinding food.

Notes. The mental foramen commonly lies near the apices of the mandibular premolars — relevant to surgery and anaesthesia.

Roots
One
Root canals
Usually one
Eruption
About 11–12 years

First molars

Maxillary first molar (upper)

The largest tooth of the maxillary arch, with four major cusps and three roots: mesiobuccal, distobuccal and palatal.

Function. Primary grinding tooth; a key determinant of the occlusal relationship between the jaws.

Notes. The mesiobuccal root frequently contains a second canal (MB2), which is easily missed in root canal treatment. Its roots lie close to the floor of the maxillary sinus.

Roots
Three (mesiobuccal, distobuccal, palatal)
Root canals
Three or four — a second mesiobuccal canal (MB2) is frequently present
Eruption
About 6–7 years

Mandibular first molar (lower)

The largest mandibular tooth: five cusps on a broad crown and two well-separated roots, mesial and distal.

Function. Primary grinding tooth of the lower arch.

Notes. Among the teeth most often restored and treated endodontically. The mesial root typically carries two canals (mesiobuccal and mesiolingual); the distal root one, sometimes two.

Roots
Two (mesial and distal)
Root canals
Usually three
Eruption
About 6–7 years

Second molars

Maxillary second molar (upper)

A smaller molar behind the first molar, with three roots that are often closer together.

Function. Grinding food.

Notes. Roots may be partly fused; relationship to the maxillary sinus is clinically relevant.

Roots
Usually three, sometimes fused
Root canals
Usually three
Eruption
About 12–13 years

Mandibular second molar (lower)

A four-cusped molar with two roots that are often closer together than those of the first molar.

Function. Grinding food.

Notes. Roots may converge or fuse; C-shaped canal configurations occur in some populations.

Roots
Two, sometimes fused
Root canals
Usually three
Eruption
About 11–13 years

Third molars

Maxillary third molar (upper)

The wisdom tooth — the last tooth of the arch, with the most variable crown and root form.

Function. Grinding when erupted in function.

Notes. Often impacted or partially erupted; frequently extracted. In Dental Scope this tooth is a derived approximation (see provenance).

Roots
Variable, often fused
Root canals
Variable
Eruption
About 17–21 years, if at all

Mandibular third molar (lower)

The mandibular wisdom tooth, highly variable in form and position.

Function. Grinding when erupted in function.

Notes. Frequently impacted. Its roots may lie close to the inferior alveolar canal, and the lingual nerve runs close to the lingual plate here. In Dental Scope this tooth is a derived approximation (see provenance).

Roots
Two, often fused
Root canals
Variable
Eruption
About 17–21 years, if at all

Dental anatomy glossary

The structures you can select in the 3D model, in short.

Parts of a tooth

Crown
The part of the tooth covered by enamel, above the cementoenamel junction. Forms the working surface of the tooth for cutting, tearing or grinding.
Root
The part of the tooth covered by cementum, embedded in the alveolar bone and attached to it by the periodontal ligament. Anchors the tooth in the jaw and transmits chewing forces to the bone.
Cementoenamel junction (CEJ)
The cementoenamel junction: the line where the enamel of the crown meets the cementum of the root, also called the cervical line.
Apex
The tip of the root.

Tooth tissues

Enamel
The outer covering of the crown and the hardest tissue in the human body, composed mostly of hydroxyapatite crystals. Provides a wear-resistant surface for chewing and protects the underlying dentin.
Dentin
The mineralised tissue that forms the bulk of the tooth, beneath the enamel in the crown and the cementum in the root. Supports the enamel and encloses the pulp. Dentinal tubules connect it with the pulp, making it sensitive.
Cementum
A thin layer of mineralised tissue covering the root dentin. Provides attachment for the fibres of the periodontal ligament that hold the tooth in its socket.
Pulp
The soft connective tissue at the centre of the tooth, containing blood vessels, nerves and the odontoblasts that form dentin. Forms dentin, nourishes the tooth and transmits sensation.
Pulp chamber
The part of the pulp cavity inside the crown and the cervical part of the tooth. Houses the coronal pulp; extensions toward the cusps form the pulp horns.
Pulp horn
An extension of the pulp chamber toward a cusp tip or incisal edge.
Root canals
The part of the pulp cavity that runs through the root(s), from the canal orifices to the apical foramen. Carries the nerves and blood vessels of the pulp between the tooth and the surrounding tissues.
Apical foramen
The opening at or near the root apex through which nerves and vessels enter and leave the pulp.

Periodontium (supporting tissues)

Periodontium
The tissues that support the teeth: gingiva, periodontal ligament, cementum and alveolar bone.
Gingiva
The gums: the part of the oral mucosa that covers the alveolar processes and surrounds the necks of the teeth. Protects the underlying periodontal tissues and forms a seal around each tooth.
Periodontal ligament (PDL)
A thin layer of fibrous connective tissue between the root cementum and the alveolar bone. Suspends the tooth in its socket, absorbs chewing forces and provides sensory (proprioceptive) feedback.
Maxillary alveolar process
The ridge of the maxilla that contains the sockets (alveoli) of the upper teeth. Supports and anchors the teeth via the periodontal ligament.
Mandibular alveolar process
The upper part of the mandibular body containing the sockets of the lower teeth. Supports and anchors the lower teeth.

Jaws and joint

Maxilla
The paired bone forming the upper jaw. It holds the maxillary teeth, forms most of the hard palate and parts of the orbit floor and nasal cavity, and contains the maxillary sinus. Supports the upper dentition and the midface.
Mandible
The lower jaw — the only movable bone of the skull. It consists of a horseshoe-shaped body and two vertical rami ending in the condylar and coronoid processes. Holds the lower teeth and moves at the temporomandibular joints for chewing, speech and swallowing.
Mandibular condyle
The rounded head of the condylar process of the mandible, which articulates with the temporal bone at the temporomandibular joint. Rotates and glides forward during jaw opening.
Temporomandibular joint (TMJ)
The temporomandibular joints connect the mandible to the temporal bones. Each is a synovial joint in which the mandibular condyle articulates with the mandibular fossa and articular eminence, separated by an articular disc. Allows both hinge (rotation) and gliding (translation) movements, so the jaw can open widely and move side to side.
Articular disc
A dense fibrous disc between the mandibular condyle and the temporal bone that divides each joint into upper and lower compartments. Allows smooth rotation and gliding and distributes load across the joint.
Mandibular foramen
The opening on the inner surface of the mandibular ramus where the inferior alveolar nerve and vessels enter the mandibular canal.
Mental foramen
An opening on the outer surface of the mandible, usually near the apices of the premolars, through which the mental nerve and vessels emerge.

Nerves and vessels

Inferior alveolar nerve
A branch of the mandibular division of the trigeminal nerve (V3). It enters the mandibular foramen and runs through the mandibular canal beneath the roots of the lower teeth. Sensation to the mandibular teeth; gives off the mental nerve and continues as the incisive nerve.
Mental nerve
The terminal branch of the inferior alveolar nerve that emerges from the mental foramen. Sensation to the lower lip, chin and the labial gingiva of the anterior mandibular teeth.
Incisive nerve
The continuation of the inferior alveolar nerve within the bone, anterior to the mental foramen. Sensation to the mandibular canine and incisors.
Lingual nerve
A branch of the mandibular division of the trigeminal nerve (V3) that runs forward medial to the ramus, close to the lingual plate near the third molar, to the floor of the mouth and tongue. General sensation to the anterior two-thirds of the tongue, the floor of the mouth and the lingual gingiva; it also carries taste fibres from the chorda tympani.
Infraorbital nerve
The continuation of the maxillary nerve (V2) through the floor of the orbit, emerging onto the face at the infraorbital foramen. Sensation to the lower eyelid, side of the nose and upper lip; gives rise to the anterior (and, when present, middle) superior alveolar nerves.
Posterior superior alveolar nerve
A branch of the maxillary nerve (V2) that enters the back of the maxilla near the tuberosity. Sensation to most maxillary molars and their buccal gingiva.
Middle superior alveolar nerve
A branch of the infraorbital nerve, present in only part of the population. When present, sensation to the maxillary premolars and part of the first molar.
Anterior superior alveolar nerve
A branch of the infraorbital nerve that descends in the anterior wall of the maxilla. Sensation to the maxillary incisors and canine.
Inferior alveolar artery
A branch of the maxillary artery that accompanies the inferior alveolar nerve through the mandibular canal. Blood supply to the mandible and mandibular teeth.

Muscles of mastication and the face

Masseter
A thick quadrilateral muscle from the zygomatic arch to the outer surface of the mandibular angle and ramus. Elevates the mandible (closes the jaw); a powerful muscle of mastication.
Temporalis
A fan-shaped muscle from the side of the skull that inserts on the coronoid process of the mandible. Elevates the mandible; its posterior fibres retract it.
Medial pterygoid
A muscle on the inner side of the mandibular ramus, mirroring the masseter. Elevates the mandible and helps move it forward and to the side.
Lateral pterygoid
A two-headed muscle running forward from the condyle and joint capsule to the sphenoid bone. Protrudes the mandible and helps open the jaw and move it to the opposite side.
Buccinator
The muscle of the cheek, deep in the lateral wall of the oral cavity. Keeps the cheek against the teeth and holds food on the occlusal surfaces during chewing.
Orbicularis oris
The sphincter-like muscle encircling the mouth within the lips. Closes and shapes the lips for speech, eating and expression.
Mentalis
A small muscle of the chin. Raises and protrudes the lower lip and wrinkles the skin of the chin.

Frequently asked questions

What is Dental Scope?

Dental Scope is a free, open-source, interactive 3D model of human dental anatomy that runs in the web browser. You can rotate the skull and jaws, select any of the 32 permanent teeth, peel away enamel and dentin to see the pulp and root canals, and look at the nerves, vessels and muscles around the teeth.

Is Dental Scope free?

Yes. It is free to use with no account or installation, and its source code is open under the MIT licence. The 3D anatomy is derived from BodyParts3D and shared under CC BY-SA 2.1 Japan.

Who is it for?

Dental students, dental hygiene and dental assisting students, teachers who want a 3D model to show in class, and anyone curious about how teeth are built and numbered.

Which tooth numbering systems does it support?

All three common systems. The FDI World Dental Federation system (ISO 3950) uses two digits: quadrant then position, so the lower left first molar is 36. The Universal system used in the United States numbers the teeth 1 to 32, making the same tooth #19. Palmer notation writes the quadrant and position, here LL6. Switch between them with the FDI, UNI and PAL buttons.

Can I see inside a tooth?

Yes. Select a tooth and open Dissect anatomy to separate it into enamel, dentin, cementum, periodontal ligament, pulp chamber and root canals, or use the Section tool to cut through the model.

Does it work on phones and tablets?

Yes, in any current version of Chrome, Edge, Firefox or Safari with WebGL, on desktop, tablet or phone.

Which languages is it available in?

English, Swedish, German, Spanish and Latin. The whole explorer, including the anatomical names and descriptions, is translated; choose a language with the flags at the top.

Can Dental Scope be used for diagnosis?

No. Dental Scope is an educational reference only. Internal tooth tissues are modeled with simplified proportions and nerves and vessels follow an anatomy atlas rather than measurements of one person, so it must not be used for diagnosis, treatment planning or clinical decisions.

Credits and licence

Made by Yoseph. The source code is on GitHub. The jaws, teeth, skull and muscles come from BodyParts3D, © The Database Center for Life Science, licensed under CC Attribution-Share Alike 2.1 Japan. Third molars, gums, alveolar bone and the joint are derived from those meshes; enamel, dentin, cementum, periodontal ligament, pulp and canals are modeled with simplified proportions. Most nerves and vessels follow the Z-Anatomy atlas (CC BY-SA 4.0), fitted onto these jaws; the superior alveolar nerves, the inferior alveolar vein and the pterygoid plexus are schematic.

Dental Scope is an educational reference. It is not intended for diagnosis, treatment planning or clinical decisions.