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NEET MDS Oral Embryology Flashcards

53 question-and-answer cards covering Oral Embryology as it is examined in NEET MDS. 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.

53Cards in deck
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19Syllabus topics
~180Chars per answer
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24 sample cards from the Oral Embryology deck

Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.

  1. What are dentinal tubules and Tomes' fibers?

    Dentinal tubules are channels housing the odontoblast processes (Tomes' fibers/dentinal fibers) that run from the pulp toward the dentinoenamel junction, giving dentin its sensitivity.

  2. What is cementum and what cells form it?

    Cementum is the mineralized, bone-like tissue covering the tooth root; it is formed by cementoblasts derived from the dental follicle.

  3. Differentiate acellular (primary) and cellular (secondary) cementum.

    Acellular cementum covers the cervical/coronal two-thirds of the root, forms slowly, has no cementocytes, and anchors Sharpey's fibers; cellular cementum covers the apical third and furcations, forms faster, and contains cementocytes.

  4. What are Sharpey's fibers?

    The terminal portions of periodontal ligament collagen fibers that are embedded in and anchored to both cementum and alveolar bone.

  5. What is the periodontal ligament and from what does it develop?

    The PDL is the fibrous connective tissue connecting cementum to alveolar bone; it develops from the dental follicle (ectomesenchyme of the tooth germ).

  6. Name the principal fiber groups of the periodontal ligament.

    Alveolar crest, horizontal, oblique (most numerous, resist masticatory forces), apical, and interradicular fiber groups.

  7. What are the main types of oral mucosa?

    Masticatory mucosa (keratinized — gingiva and hard palate), lining mucosa (non-keratinized — cheeks, lips, floor of mouth, soft palate), and specialized mucosa (dorsum of tongue with papillae).

  8. From which embryonic layers does oral mucosa derive?

    The epithelium derives from ectoderm (anteriorly) and endoderm (posteriorly), while the lamina propria derives from neural-crest-derived ectomesenchyme/mesoderm.

  9. What are the pharyngeal (branchial) arches?

    Six paired (5th rudimentary) mesenchymal bars in the wall of the embryonic pharynx, each with a cartilage, muscle, nerve, and artery, that contribute to head and neck structures.

  10. What does the first pharyngeal arch form, and its cartilage and nerve?

    The first (mandibular) arch forms the maxillary and mandibular processes; its cartilage is Meckel's cartilage, and its nerve is the trigeminal (V) — mandibular and maxillary divisions.

  11. What does the second pharyngeal arch (and its cartilage/nerve) form?

    The second (hyoid) arch's Reichert's cartilage forms the stapes, styloid process, lesser horn and upper hyoid; muscles of facial expression; its nerve is the facial (VII).

  12. Which nerves are associated with the 3rd, 4th, and 6th pharyngeal arches?

    3rd arch — glossopharyngeal (IX); 4th and 6th arches — vagus (X) (superior laryngeal from 4th, recurrent laryngeal from 6th).

  13. How does the anterior two-thirds of the tongue develop?

    From two lateral lingual swellings and the median tuberculum impar of the first pharyngeal arch; general sensation is via the trigeminal (lingual) nerve.

  14. How do the major salivary glands develop?

    As epithelial buds (parotid and submandibular from oral ectoderm, sublingual from endoderm) that proliferate into the underlying mesenchyme and branch into a duct-acinar system.

  15. Name the three pairs of major salivary glands and their primary secretion type.

    Parotid (purely serous), submandibular (mixed, predominantly serous), and sublingual (mixed, predominantly mucous).

  16. What and where are the minor salivary glands?

    Numerous small glands (labial, buccal, palatal, lingual, glossopalatine) distributed throughout the oral mucosa and submucosa; mostly mucous in secretion (von Ebner's glands of the tongue are serous).

  17. Which key genes/signaling pathways regulate early tooth development?

    Reciprocal epithelial-mesenchymal signaling via Shh, Wnt, BMP, and FGF pathways, with transcription factors such as Pax9, Msx1, Pitx2, and Lef1 controlling tooth initiation and morphogenesis.

  18. What signaling molecule controls tooth identity (incisor vs molar) along the jaw?

    BMP4 induces distal (incisor) genes (e.g., Msx1) while FGF8 induces proximal (molar) genes (e.g., Barx1), establishing the 'odontogenic homeobox code' that patterns tooth type.

  19. What is the etiology and timing of cleft lip?

    Cleft lip results from failure of fusion of the maxillary process with the medial nasal process (around week 6–7); it is multifactorial (genetic + environmental) and may be unilateral or bilateral.

  20. What is the etiology of cleft palate and which classification is commonly used?

    Cleft palate results from failure of fusion of the palatal shelves with each other/nasal septum (after week 8); it is classified by the Veau classification (Class I soft palate only; II soft + hard palate; III complete unilateral involving lip/alveolus; IV complete bilateral).

  21. Name common developmental dental anomalies of number and size.

    Anomalies of number: hypodontia/anodontia (too few) and hyperdontia/supernumerary teeth (too many, e.g., mesiodens); anomalies of size: microdontia and macrodontia.

  22. What are amelogenesis imperfecta and dentinogenesis imperfecta?

    Amelogenesis imperfecta is a hereditary defect of enamel formation (hypoplastic/hypomineralized enamel); dentinogenesis imperfecta is a hereditary defect of dentin (opalescent teeth, bulbous crowns, obliterated pulp chambers), associated with mutations in DSPP.

  23. What diagnostic techniques are used to study/assess developmental dental and oral tissues?

    Histology (ground sections and decalcified sections), radiography/CBCT for hard tissues, scanning/transmission electron microscopy, immunohistochemistry, and molecular genetic testing for hereditary conditions.

  24. What is the general management approach for cleft lip and palate?

    A multidisciplinary, staged approach: cleft lip repair around 3 months ('rule of 10s'), palate repair around 9–18 months, followed by speech therapy, orthodontics, alveolar bone grafting, and orthognathic surgery as the child grows.

What this deck covers

The Oral Embryology deck follows the NEET MDS Oral Embryology syllabus — 8 chapters and 19 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 6.6 cards per chapter.

Answers are written to be recallable, not just readable — averaging about 180 characters, which is long enough to carry the reasoning and short enough to say out loud.

A deck like this earns its keep on the second and third pass. Read the syllabus first so you know the shape of the subject, then use the cards to find the specific facts that have not stuck.

Oral Embryology flashcards FAQ

How many Oral Embryology flashcards are in this NEET MDS deck?

53 cards. This page previews 24 of them, sampled evenly across the deck so you can judge the difficulty before installing anything.

Are these NEET MDS flashcards free?

Yes. The preview here is free to read with no signup, and the full 53-card deck is free inside the Examius app.

What do the Oral Embryology cards cover?

They follow the NEET MDS Oral Embryology syllabus — 8 chapters and 19 topics — so the questions track what is actually examinable.

How should I use these flashcards?

Read the syllabus first so you know the shape of the subject, then drill the deck. Examius schedules each card with spaced repetition, so cards you keep missing come back sooner and ones you know drift further apart.