RPD Retention Flashcards

1
Q

What is meant by the term ‘direct retention’?

A

Resistance of a denture to VERTICAL displacement

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2
Q

How is direct retention achieved in RPDs?

A
  1. Mechanical (clasps)
  2. Muscular forces (action of musculature on shape of denture)
  3. Physical forces (adhesion, cohesion, pressure, friction = altered path of insertion)
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3
Q

What does the efficiency of a clasp depend on?

A
  1. Material (CoCr, gold, Ti, wrought SS)
  2. Thickness and shape
  3. Length (min. 15mm to engage in 0.25mm undercut for molar)
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4
Q

What is meant by the term ‘indirect retention’?

A

Resistance of a denture to ROTATIONAL displacement

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5
Q

In regards to clasps, what is meant by the term ‘reciprocation’?

A

An opposing element to the retentive clasp which prevents pressure from the retentive clasp acting on the tooth

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6
Q

What is an ideal pattern of retention? (placement of clasps +/- indirect retention)

A

Triangular pattern

BUT…
One clasp on each side of arch sufficient depending on saddle length

DIRECT = 3 clasps
INDIRECT = 2 clasps, 1 indirect retainer
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7
Q

What are the main methods for direct retention of acrylic dentures?

A
  1. Musculature forces

2. Physical forces

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8
Q

What is an ‘RPI system’?

A

Stress relieving clasp system used in free-end saddle designs

Prevents stress on last standing abutment tooth

Usually used in lowers

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9
Q

What components of the RPD can by utilised as an indirect retainer?

A
  • Major connector
  • Minor connects
  • Rests
  • Saddle
  • Denture base
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10
Q

Where should an indirect retainer ideally be placed?

A

As far away from clasp axis as poss

i.e. perpendicular to clasp axis (terminal end of clasps)

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11
Q

How does an RPI system relieve stress on the abutment tooth?

A

Load onto saddle causes rotation at mesial rest -> plate and i-bar rotates downwards + mesially –> disengages tooth –> no stress on tooth

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