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🦷 Night Guard / Splint Therapy Simulator

This interactive model illustrates how a night guard (occlusal splint) reduces the load on the joint and chewing muscles during bruxism.

TMJ Disorder (Скронево-нижньощелепний суглоб)2DModerate60 FPS
night-guard-splint-therapy-simulator ↗ Open standalone

Unprotected Bruxism — Direct Tooth-on-Tooth Force Transmission

Nocturnal grinding sends unfiltered clenching force straight through enamel into the jaw joint.

  • 20–40: Bruxism episodes (per night, untreated)
  • ≤250 lb: Peak nocturnal bite force (far above chewing loads)
  • ~8%: Sleep bruxism prevalence (of adults)
  • Elevated: TMJ compressive stress (no cushioning present)

Tooth-on-tooth contact

Enamel surfaces grind directly against each other, no buffer layer.

Force pathway

Clenching force travels straight through the tooth into the joint.

Unbuffered nocturnal force is a leading driver of TMJ overload.

Muscle overactivity

Masseter and temporalis fire well above normal resting tone.

Splint Fitted — A Cushioning Layer Enters the Bite

A custom occlusal splint is placed between the arches, breaking direct contact.

  • Hard acrylic: Splint material (custom-milled or heat-formed)
  • 2–3: Fabrication visits (impression, fit, adjust)
  • 1–4 mm: Thickness range (titrated per patient)
  • Full arch: Arch coverage (even splint contact)

Physical barrier

The splint interposes a rigid layer between upper and lower teeth.

Custom fit

Impressions ensure even contact across every tooth surface.

Thickness selection

Thicker splints cushion more but shift jaw position further.

Splint thickness is tuned per patient to balance comfort and protection.

Force Redistribution — Spreading the Bite Load

The splint surface disperses concentrated bite force across a broader area.

  • ~3×: Contact area increase (vs. bare cusp contact)
  • ≤50%: Peak force reduction (at the tooth surface)
  • Even contact: Occlusal scheme (flat splint plane)
  • Lowered: Pressure per tooth (load shared across arch)

Wider contact plane

Flat splint geometry spreads point loads into a broad surface.

Softened force lines

Force disperses laterally before reaching the joint.

Redistribution alone can roughly halve peak transmitted force.

Thickness scaling

Greater thickness disperses force over a larger splint area.

Reduced Muscle Activity — Calming the Jaw Muscles

Shifting the bite position lowers overactive masseter and temporalis firing.

  • 30–40%: Masseter EMG reduction (with splint in place)
  • +1–3 mm: Vertical dimension change (jaw opens slightly)
  • Reduced: Muscle fatigue (lower sustained tone)
  • Decreased: Morning jaw pain (patient-reported)

Bite position shift

A slightly opened vertical dimension relaxes muscle proprioceptors.

Lower EMG activity

Recorded muscle activity drops noticeably during splint-wear nights.

Calmer muscles mean less sustained clenching force overall.

Fatigue reduction

Muscles spend less of the night in sustained contraction.

Joint Load Reduction — Protecting the TMJ Over Time

Cumulative force, area, and muscle effects lower nightly TMJ compressive stress.

  • ≤70%: TMJ stress reduction (combined splint effect)
  • Improved: Long-term joint protection (with consistent use)
  • Stabilized: Disc position (reduced compressive drift)
  • Majority: Patient-reported relief (report reduced symptoms)

Cumulative protection

Redistribution and calmer muscles together spare the joint.

Sustained benefit

Consistent nightly use compounds protection over months.

Long-term splint use is linked to lower TMJ symptom scores.

Ongoing monitoring

Thickness and fit are periodically reassessed by a dentist.

⚙ Under the hood

This interactive model illustrates how a night guard (occlusal splint) reduces the load on the joint and chewing muscles during bruxism.

CanvasBiomedicine

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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