class i and ii composite restorations principles & techniques
DESCRIPTION
Lesion - Specific Restorations. Class I and II Composite Restorations Principles & Techniques. Dr. Ignatius Lee. G.V. Black Classification. Classes of Cavitated Lesions Class I - pits and fissures Class II - proximal surfaces of posterior teeth. Restorative Materials. Amalgam. - PowerPoint PPT PresentationTRANSCRIPT
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Class I and II Composite Restorations
Principles & Techniques
Dr. Ignatius Lee
Lesion - Specific Restorations
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G.V. Black Classification
Classes of Cavitated Lesions
Class I - pits and fissures
Class II - proximal surfaces of posterior teeth
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Restorative Materials
Amalgam
Composite
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Lesion-Specific Restorationvs
Material Specific Restoration
Material-Specific» E.g. The use of
amalgam to restore Class I and II caries lesion
» Cavity form is based on the physical properties and the technique used for placing the material
Lesion-Specific» E.g. The use of
composite resin to restore Class I and II caries lesion
» Cavity form is based on the location and size of the lesion
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Contraindications
Unable to establish ABSOLUTE isolation Establish ideal proximal contour/contact Location of caries/defect - out of reach of
the curing light Cavosurface margins that are not all in
enamel Occlusal contacts for the tooth solely on
the restoration; wide isthmus width
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Advantages (vs amalgam)
Conservation of tooth structure - overall a stronger restored tooth
More esthetic
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Disadvantages (vs amalgam)
Cost Extremely technique sensitive
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Lesion-Specific Restoration
Cavity Preparation
PRINCIPLE
The outline form/extension of the preparation should be dictated by the size and the location of the lesion.
Cavosurface margin and all internal surfaces are smooth
RATIONALE
Conservation of tooth structure
Viscous composite material will not adapt well into rough or irregular surface
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Lesion-Specific Restoration
Cavity Preparation
PRINCIPLE
No sharp internal line angles
All “loose” enamel at the cavosurface margin should be removed
RATIONALE
Sharp internal line angle serve as stress concentration area where fracture can initiate
Prevent breaking of enamel during polymerization shrinkage
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Lesion-Specific Restoration
Cavity Preparation
PRINCIPLE
All aspects of the preparation should be accessible to the curing light
The preparation should be free of foreign debris
RATIONALE
Direct light contact is required for polymerization of the resin
Allow for optimal bonding
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Pits and Fissures Caries (Class I)
Cavity Preparation
Locate lesions (diagnosis of lesions)
Use of an appropriate bur (about the size of the lesion) to gain access to the lesion through the groove/pit
Remove lesion and loose enamel
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Histopathology of Pits and Fissures Caries
Enamel
Dentin
Demineralization around the wall and bottom of the pits
Once demineralization reach the DEJ, it begins spreading laterally
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Diagnosis of Pits and Fissures Lesions
Radiographs - limited usefulness except for deep lesions
Explorer - limited usefulness (wedging effect)
Visual - primary diagnostic tool
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Diagnosis of Pits and Fissures Lesions
Use an explorer to remove plaque and food debris from the fissure orificeUnder good lighting,
isolation (dry) and magnification; visually inspect for any damage to the enamel Look for any subtle
color changes around the pits and fissures
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Diagnosis of Pits and Fissures Lesions
Enamel is low in opacity, thus any changes in color (e.g. caries dentin) in the underlying dentin will show through the enamel
Look for a gray shadow or opaque area around the pits and fissures - a “halo”
Ignore the color change within the pits and fissures
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Accessing the lesion through the groove/pit
245 fissure bur
Enamel
DEJ
Dentin
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Enamel
DEJ
Dentin
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Enamel
DEJ
Dentin
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Direct visual access to the lesion
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Caries removal using a round bur on a slow
speed handpiece
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Unable to remove all the lesion due to limited access
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Increase access - remove remaining
lesion
Enlarge the access area until you are able to visually inspect the DEJ;
Because caries start spreading laterally at the DEJ, any discoloration at DEJ is an indication of the presence of caries
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Class I Cavity Preparation
Pre-Op
Preparation
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Preventive Resin Restoration (PRR)
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Proximal Caries (Class II)
Cavity Preparation
Locate lesion Approach lesion from the marginal ridge Penetrate, find and remove caries lesion with
#245 bur on a high speed handpiece - handpiece parallel to the long axis of the tooth
Remove loose enamel Examine buccal and lingual proximal walls to
ensure complete removal of caries
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Diagnosis of Proximal Caries
Primary diagnostic tool - bitewing radiographs
Secondary diagnostic tool - visual (looking for changes in the optical properities of the marginal ridge under bright light)
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Proximal Caries (Class II) Cavity Preparation
Proximal caries lesion is usually located lingual and gingival to the proximal contact
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Locating Proximal Lesion
Reference point = proximal contact
Lesion = gingival and lingual to the proximal contact
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Class II Composite RestorationCavity Preparation
• Approach lesion from the marginal ridge; • handpiece parallel to the long axis of the tooth;• Starting point: lingual half of the contact; start of the lingual embrasure
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Class II Composite RestorationCavity Preparation
Penetrate through the marginal ridge until you reach the lesion, then extend buccally, gingivally and lingually (as needed) to remove the lesion
Initially leave a thin layer of enamel at the proximal area to prevent accidental damaging of the neighboring tooth
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Class II Composite RestorationCavity Preparation
Due to the shape of the bur, there will be “loose” enamel at the margin (buccal and lingual proximal)
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Class II Composite RestorationCavity Preparation
Following the complete removal of the caries lesion, remove loose enamel (buccal and lingual proximal margin) using a hatchet
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Class II Composite RestorationCavity Preparation
Evaluate buccal and lingual proximal wall for complete caries removal
Loose enamel removed
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Class II Composite RestorationCavity Preparation
Typical cavity preparation
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Matrix
.0015 or .0010 toffelmire band (ho-band)
Wood wedge placed at gingival embrasure (control gingival excess, restoring proximal contact)
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Matrix
Toffelmire matrix system » Dr. Hildebrandt’s manual pp. 3.C.24 - 3.C.26» .0015 or .001 (ho-band)» Good wedging is vital to getting good proximal
contact (if lesion dictate the complete removal of the proximal contact area)
» Well burnished
Other matrix systems» Palodent System - Bitine ring
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Tofflemire Matrix System
Instruction - Dr. Hildebrandt’s manual pp. 3.C.24
Burnish the band using an egg burnisher on a 2x2 gauze (at least 3 layers)
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Tofflemire Matrix System
Burnished band - resulting in a more convex proximal surface
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Placement Techniques for Posterior Composite
Etch (clinically)/sandblast (in lab), application of bonding agent
Fill with multiple increments - first increment should be in the neighborhood of 1/2 mm thick; subsequent increment should be about 1 mm
Using the Super Plugger and applying light pressure, adapt the resin into the preparation
Avoid direct operatory light Remove excess resin before curing Cure for 20 - 40 seconds (follow curing instruction)
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Plugger - for placing posterior composite
SuperPlugger
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Using an explorer, remove excess from the embrasure area before curing. Avoid direct operatory light.
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Minimize the excess material presence in the embrasure area
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Build to “slightly overcontour”
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Establish occlusal embrasure
Using the Half-Hollenbeck
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After curing of the final increment, ready to remove the tofflemire band
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Finishing/Polishing Techniques
Finishing burs
» Needle shape finishing bur (7902) for bulk removal of excess composite at the embrasures (buccal, lingual and occlusal)
» Egg shape finishing bur (7404) for creating occlusal anatomy and adjusting occlusal contact
#12 Bard-Parker blade for removing gingival overhang and excesses at the buccal and lingual embrasures
Soflex disks for final finishing and polishing at the embrasures (buccal, occlusal, lingual)
Enhance/PoGo composite finishing system (occlusal surface)
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Enhance/PoGo Composite Finishing System
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Soflex Disks
For finishing and polishing Course, medium, fine and
superfine Course and medium -
finishing Fine - finishing/polishing Superfine - polishing Extra-thin series -
excellent for finishing/polishig embrasures areaPlastic backed; extra
thin series
Paper backed; thicker series
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After removal of matrix band
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#7404 finishing bur for occlusal anatomy and adjustment
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#7902 finishing bur for gross removal of excesses on bu, li and occl embrasures
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#12 Bard-Parker blade for removing gingival overhang and excesses on buccal/lingual embrasure area
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Alternative instruments to #12 Bard-Parker
2-3 Knife
Contour 1-2
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Solflex disks to finish the embrasures/margin area; in a SLOW/continuously moving motion
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Initial access to the lesion through the marginal ridge
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Lesion becoming accessible/visible
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Removal of lesion
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Removing loose enamel using a hatchet
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Finished Preparation
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Toffelmire Matrix
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Total Etching
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Placement (adapting) composite into the preparation
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Remove excess adhesive/composite
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Occlusal adjustment using #7404 finishing bur
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Using #7902 finishing bur for gross removal of excess on bu, li and occlusal
embrasures
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Using the solfex disk for final finishing and polishing
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Final Restoration
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Problems with posterior composite
Wear» Should not be a great concern with the latest
generation of composites. Most hybrid composite should has a wear rate of less than 10 micron per year
Secondary caries» Due to incomplete polymerization or lack of
adhesion at the gingival margin» Use of the proper adhesive technique and the
incremental placement method should minimize the problem
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Problems with posterior composite
Post-operative sensitivity» Most common reasons:
– Polymerization shrinkage– Incomplete polymerization– Bond failure
Polymerization shrinkage» Material characteristic, out of our control
Incomplete polymerization» 1/2 mm first layer
Bond failure» Follow the proper adhesive technique
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Laboratory exercise
Distal composite on tooth #20 Box form Buccal extension
» Buccal wall still in contact Gingival extension
» 1/2 mm clearance from adjacent tooth
Buccal-lingual dimension» 3 mm » Lingual wall clear contact
Mesial-distal dimension» 1 to 11/4 mm axial depth