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BDS Periodontology Flashcards

51 question-and-answer cards covering Periodontology as it is examined in BDS. 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.

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24 sample cards from the Periodontology deck

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

  1. What wavelengths do common dental lasers use, and which is well absorbed by water/hydroxyapatite?

    Diode ($810\text{–}980\ \text{nm}$) and Nd:YAG ($1064\ \text{nm}$) are absorbed by pigment/soft tissue; Er:YAG ($2940\ \text{nm}$) and Er,Cr:YSGG ($2780\ \text{nm}$) are highly absorbed by water and hydroxyapatite, allowing hard-tissue/calculus ablation. $\ce{CO2}$ ($10600\ \text{nm}$) is a soft-tissue laser.

  2. What does the LANAP protocol stand for and use?

    Laser-Assisted New Attachment Procedure, an FDA-cleared free-running pulsed Nd:YAG protocol used for regenerative periodontal treatment without conventional flap surgery.

  3. What are claimed advantages of laser therapy in periodontics?

    Bactericidal effect, selective removal of diseased epithelium, hemostasis, reduced bacteremia, minimal anesthesia, and reduced post-operative pain/swelling; adjunctive to scaling and root planing.

  4. What is supportive periodontal therapy (SPT/maintenance) and its typical recall interval?

    Periodic professional care after active therapy to prevent recurrence: reassessment, reinforcement of oral hygiene, and re-instrumentation. Typical recall interval is every $3\ \text{months}$, adjusted to risk.

  5. According to Axelsson & Lindhe, what happens to teeth without maintenance after active periodontal therapy?

    Without regular supportive periodontal therapy, patients experience recurrent disease and significantly greater attachment/tooth loss; maintenance patients retained attachment over 6+ years.

  6. What is the proposed biological link between periodontitis and cardiovascular (atherosclerotic) disease?

    Periodontal pathogens (e.g., P. gingivalis) and their endotoxins enter the circulation, promoting systemic inflammation (raised CRP, IL-6), endothelial dysfunction, and atheroma formation; bacterial DNA has been found in atherosclerotic plaques.

  7. Describe the bidirectional relationship between diabetes mellitus and periodontitis.

    Diabetes (especially poorly controlled) increases risk/severity of periodontitis via advanced glycation end-products (AGEs), impaired neutrophil function, and altered collagen metabolism. Conversely, periodontal inflammation worsens glycemic control (insulin resistance); periodontal therapy can lower HbA1c by roughly $0.3\text{–}0.4\%$.

  8. Why is periodontitis considered the "sixth complication" of diabetes mellitus?

    Loe (1993) described periodontal disease as the sixth complication of diabetes, alongside retinopathy, nephropathy, neuropathy, macrovascular disease, and impaired wound healing, because diabetics show markedly higher prevalence and severity.

  9. What are the periodontal changes seen in pregnancy and their hormonal basis?

    Pregnancy gingivitis and localized pregnancy "epulis" (pyogenic granuloma) due to elevated estrogen and progesterone increasing gingival vascularity, permeability, and favoring anaerobes like Prevotella intermedia. Peaks in the third trimester.

  10. What is the proposed association between maternal periodontitis and adverse pregnancy outcomes?

    Periodontitis is a possible risk factor for preterm birth and low birth weight, via prostaglandin/cytokine (PGE2, TNF-alpha, IL-1beta) mediated effects and possible bacterial translocation, though evidence that treatment improves outcomes is inconclusive.

  11. How is periodontal disease linked to respiratory diseases?

    Oral biofilm is a reservoir for respiratory pathogens; aspiration of periodontal/oral bacteria can cause or aggravate aspiration pneumonia and COPD, especially in ventilated or elderly/institutionalized patients. Oral hygiene reduces nosocomial pneumonia risk.

  12. What is the difference between peri-implant mucositis and peri-implantitis?

    Peri-implant mucositis is reversible inflammation of soft tissue around an implant WITHOUT bone loss (analogous to gingivitis). Peri-implantitis includes progressive supporting BONE loss around an osseointegrated implant (analogous to periodontitis).

  13. Define osseointegration (Branemark).

    A direct structural and functional connection between ordered, living bone and the surface of a load-bearing implant, without intervening fibrous (connective) tissue at the light-microscopic level.

  14. What is the difference between the tooth and implant soft-tissue interface regarding fibers?

    Around teeth, PDL and gingival collagen fibers insert perpendicularly into cementum. Around implants there is no PDL or cementum; supracrestal collagen fibers run parallel/circular to the implant surface, giving a weaker soft-tissue seal.

  15. What minimum inter-implant and implant-to-tooth distances help preserve interproximal bone/papilla?

    Maintain at least $\approx 3\ \text{mm}$ between adjacent implants and $\approx 1.5\text{–}2\ \text{mm}$ between an implant and a natural tooth to minimize crestal bone loss and papilla loss.

  16. What is periodontal plastic (mucogingival) surgery, and name a common indication.

    Surgical procedures to correct defects in morphology, position, and/or amount of gingiva/mucosa around teeth and implants. A common indication is root coverage of gingival recession; others include increasing keratinized tissue, ridge augmentation, and crown lengthening.

  17. What is the Miller classification of gingival recession (Class I–IV)?

    Class I: recession not extending to mucogingival junction (MGJ), no interdental loss (100% coverage expected). Class II: extends to/beyond MGJ, no interdental loss (100% coverage). Class III: interdental bone/soft-tissue loss, partial coverage. Class IV: severe interdental loss, no coverage expected.

  18. What is the gold-standard procedure for root coverage of a single recession defect?

    The subepithelial connective tissue graft (SCTG), typically combined with a coronally advanced flap, because it provides predictable root coverage and good color/blend.

  19. Differentiate a free gingival graft from a connective tissue graft in purpose.

    A free gingival graft (epithelialized palatal graft) is primarily used to INCREASE the width of keratinized/attached gingiva. A connective tissue graft (subepithelial) is preferred for ROOT COVERAGE with superior esthetics.

  20. What is the coronally advanced flap (CAF), and what modification improves esthetics?

    A flap coronally repositioned to cover an exposed root; combining it with a subepithelial connective tissue graft (CAF + SCTG) improves root coverage predictability and long-term stability.

  21. What defines periodontal microsurgery and its main clinical benefit?

    Periodontal surgery performed under magnification (surgical microscope/loupes, typically $\geq 10\times$) with microsurgical instruments and fine sutures ($7\text{-}0$ to $9\text{-}0$). Benefits: improved precision, primary closure, better wound healing, less trauma, and enhanced esthetics/root-coverage outcomes.

  22. How does magnification level relate to microsurgical precision (approximate ranges)?

    Loupes provide about $2\times\text{–}6\times$; the surgical operating microscope provides roughly $4\times\text{–}25\times$. Higher magnification improves visualization of tissue margins and passive, tension-free wound approximation.

  23. What is the periodontal screening index PSR, and what does a code of 3 or 4 indicate?

    Periodontal Screening and Recording uses a WHO probe divided into sextants (codes 0–4). Code 3 indicates a pocket $3.5\text{–}5.5\ \text{mm}$ (colored band partly visible); Code 4 indicates a pocket $>5.5\ \text{mm}$ (colored band disappears), requiring comprehensive assessment.

  24. What is the difference between a suprabony and an infrabony (intrabony) periodontal pocket?

    In a suprabony pocket the base of the pocket is CORONAL to the alveolar crest (horizontal bone loss pattern). In an infrabony pocket the base is APICAL to the crest, lying within a bony defect (vertical/angular bone loss).

What this deck covers

The Periodontology deck follows the BDS Periodontology syllabus — 5 chapters and 17 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 10.2 cards per chapter.

Answers are written to be recallable, not just readable — averaging about 239 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.

Periodontology flashcards FAQ

How many Periodontology flashcards are in this BDS deck?

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

Are these BDS flashcards free?

Yes. The preview here is free to read with no signup, and the full 51-card deck is free inside the Examius app.

What do the Periodontology cards cover?

They follow the BDS Periodontology syllabus — 5 chapters and 17 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.