Showing posts with label Endodontics. Show all posts
Showing posts with label Endodontics. Show all posts

Saturday, March 24, 2012

Methods for Removal of root filling material in preparation for posts


Methods for Removal of root filling material in preparation for posts

Obturation techniques
Gutta-percha is today the universally accepted core material used for root canal obturation. However, the techniques for placement differ, but all require the use of sealing cement. Obturation techniques include cold lateral compaction of gutta-percha points, compaction of gutta-percha that has been heat softened in the canal and compacted (eg System B), thermoplastisised gutta-percha which is injected into the canal (eg Obtura and UltraFil) and finally compaction of gutta-percha which has been placed in the canal and softened by mechanical means (eg McSpadden compactors). These obturation techniques are unlikely to have an impact on the final apical seal once post space preparation has been carried out. An alternative obturation technique also exists which involves heated gutta-percha surrounding a plastic or metal carrier (eg Thermafil). The carrier ensures that the gutta-percha passes to the correct working length and is left in situ with the gutta-percha. During mechanical gutta-percha removal of this system, there is greater potential to disrupt the apical gutta-percha and a number of dye leakage studies have supported this hypothesis. It would therefore be prudent not to use such obturation techniques if placement of a post is anticipated.

Chemical removal
Solvents such as oil of eucalyptus, oil of turpentine and chloroform have been used to soften gutta-percha for removal, with the latter two being the most effcicient. However, some of these materials and especially chloroform are hazardous to use as they are toxic and potentially carcinogenic. Oil of turpentine is less toxic, but there is concern that solvents in general lead to a dimensional change in the gutta-percha, leading to increased microleakage. This together with the fact that it is difficult to control the depth of softening of the gutta-percha and potential leakage of the solvents into the periradicular tissues should be sufficient to discourage their use for gutta-percha removal for post placement. They are however a necessary adjunct in root canal re-treatment cases.

Thermal removal
A heated instrument such as a lateral compactor can be inserted into the gutta-percha to the desired length to soften and remove the gutta-percha. However, in narrow canals, fine instruments lose their heat quickly and gutta-percha removal can be difficult. A System B spreader is ideal for removal of gutta-percha.
System B with heated plugger (200°C) in foreground, with rubber stop placed at the desired length for gutta-percha removal  
From a pre-operative radiograph a plugger should be chosen of the correct dimensions that is likely to bind at the desired post length and this position should be marked on the plugger with a rubber stop. The tip should be placed in the gutta-percha and with the heat applied driven slowly to the desired post length in about 2–3 seconds. The heat should be removed and the plugger allowed cooling for about 7–10 seconds, twisted and then removed with the coronal gutta-percha. Alternatively, a short burst of heat to the plugger will allow for easy removal. It is important that the plugger is sufficiently hot to completely soften the gutta-percha. If too cool, it will result in the gutta-percha remaining sticky with the risk of dislodging the apical gutta-percha. An instrument such as a Buchanan plugger can then be used to vertically compact the softened gutta-percha. Such a technique is useful in removing old gutta-percha which can become quite hard.
Buchanan plugger  
Some authors would suggest that gutta-percha should be removed with heated techniques as a routine and mechanical removal only used if heat is insufficient.If mechanical removal is used, a heated instrument can be used to soften the most coronal gutta-percha, so that it can be vertically compacted and adapted to the canal walls to create a seal.

Mechanical removal
Mechanical removal of gutta-percha is efficient and probably the most commonly used technique, but it is a technique that can result in the most damage to tooth tissue. If done incorrectly, it can weaken the root unnecessarily, damage the periodontium and in some cases lead to root perforation.
Periapical radiograph showing teeth 13 and 12 used as double abutments for a fixed-fixed conventional bridge 

 Periapical radiograph of tooth 23 with a post that poorly fits the prepared post hole 
A non-end cutting bur such as a Gates-Glidden or Peeso reamer should be used for gutta-percha removal, as these will cut and remove the relatively softer gutta-percha preferentially to the dentine of the canal walls.

The sequence in which the burs are used is important so that a rise in temperature at the root surface, which could damage periodontal cells, is avoided and the risk of preferentially cutting away root dentine to one side of the root canal is reduced.
 Periapical radiograph of root filled central incisor teeth (top left) from which the diameter of the post to be used can be estimated  
Temperature rise on the root surface has been investigated in a number of studies. A Gates-Glidden bur rotating at 8,000 rev min-1 results in a small rise in temperature at the root surface. However, both tapered and parallel-sided post drills produce a significant increase in temperature in excess of 17°C. Peeso reamers also generate significant rises in temperature, higher than that reached with Gates-Glidden burs and Parapost twist drills. To reduce this temperature increase, which could potentially damage cells in the periodontal ligament, it is important that the smaller sized Gates-Glidden burs are used first, working up through the sizes in turn, until no gutta-percha is removed apically. At this stage the smallest post drill can be used, again working up through the size sequence until the final post size is reached.

Friday, November 4, 2011

Root Canal Obturation Techniques



Aims and objectives of obturation
  1. To established barrier to passage of micro-organisms from the oral cavity to the radicular tissue
  2. To entomb and isolate any micro-organisms organisms that may survive the cleaning and shaping process
  3. To prevent leakage into the canal system of potential nutrients that would support the microbial growth
  4. To reduce the risk of bacterial movement or fluid percolation in to the canal system space from the gingival sulcus or periodontal pockets.
Root Canal Obturation Techniques ppt


Saturday, October 15, 2011

Root canal preparation techniques


Objectives of Root canal preparation
  • Remove remaining pulp tissue
  • Eliminate microorganism
  • Remove debris
  • Shape the root canal
  • So that root canal system can be cleaned and filled

Requirements of Root canal preparation
  •  Prepared canal should include the original canal
  • Apical constriction should be maintained
  • Canal should end in an apical narrowing
  • Canal should be tapered from crown to apex
  • Preparation should be undertaken with copious irrigation
  • The final length of the preparation should not be reduce by treatment
Root canal preparation techniques
Apical to coronal
Coronal to  apical
1.Standardized technique
2. Step back technique
3. Balanced forces technique
Apical to coronal

1 Step down technique
2.Double flared technique
3. Crown down pressure less technique
Coronal to  apical


Standardized technique
Standardized technique
  • Can be use for straight tiny canal
  • Unsuitable for curve canals
  • Common problems

                    Ledging
                    Zipping
                    Elbow formation
                    Perforation
                    Loss of working length

Step back technique
Step back technique
  • Overcomes procedural errors of ST
  • Suitable for Slight to moderate curve canals
  • Not suitable for severely curve canals
  • Can be improve by
                    Specific filing technique
                    Non-cutting tip
                    Flexible files
PPT Note on Root Canal Preparation Techniques


download pdf lecture note 

Wednesday, October 12, 2011

Principles of Access Cavity Preparation in Endodontics


Principles of Access Cavity Preparation
Steps in root canal Therapy
1. Patient selection
2. Tooth selection
3. Isolation
4 Access cavity
5. Canal irrigation
6 Working length
7. Canal preparation
8. Trial filling
9. Canal obturation
10. Crown restoration

Access cavity preparation- Rules of thumb
1. To remove the entire roof of the pulp chamber so that the pulp chamber can be cleaned and canal entrance exposed.
2. To enable root canals to be located and instrumented by providing direct-line access to the apical third of the root canals.
3. To avoid damage to floor of the pulp chamber. Natural floor tends to guide an instrument in to the canal orificefloor tends to guide an instrument in to the canal orifice.
4. To enable a temporary seal to be placed.
5. To conserve as much sound tooth tissue as possible compatible with above.

Anatomy of root canal system
Anatomy of Root Apex
Access Cavity of an Upper Central Incisor
Access Cavity of Lower molar tooth
Lower Molar Access Cavity
Access Cavity Preparation PPT


Download the PDF Lecture Note

Sunday, September 11, 2011

INSTRUMENTS USED IN ENDODONTIC TREATMENT

When the pulp suffers irreversible pulpitis, the only way to retain the natural tooth is by 
complete removal of the pulp.



Name
DG16 probe/root canal explorer
Function
Used to probe and detect canal openings within the pulp chamber

Name
Barbed broaches
Functions and precautions
• Finger instruments
• Disposed of in the sharps’ container
•Used to remove the intact pulp
• ‘Barbs’ on the broach snag the pulp to facilitate removal
• They need to be used cautiously as they can bind and break in the canal
Varieties
Available in different sizes and widths

Name
Gates Glidden drills
Function, features and precautions
•To enlarge the coronal third of the canal during endodontic treatment
• Small flame-shaped cutting instrument used in the conventional handpiece
• Different sizes – coded by rings or coloured bands on shank
•Are slightly flexible and will follow the canal shape but can perforate the canal if used too deeply
• Dispose of in sharps’ container
• Should be used only in the straight sections of the canal

Name
Peeso reamer drills
Function, features and precautions
•To remove gutta percha during post preparation
• Small flame-shaped cutting instrument used in the conventional handpiece
• Different sizes – coded by rings or coloured bands on shank
• Peeso reamers are not flexible or adaptable, if not used with care can perforate canal
• Dispose of in sharps’ container


Name
Endodontic K files. Also called: Root canal hand files
Function, features and precaution
• Finger instrument
• Colour coded by size. The 6 colours used most often are: size 15 (white); 20 (yellow); 25 (red); 30 (blue); 35 (green); 40 (black). Also available in size 6 (pink), 8 (grey) and 10 (purple)
• Operator gradually increases the size of the file to smooth, shape and enlarge canal
• The larger the number of the file, the larger the diameter of the working end
• Disposed of in the sharps’ container
Varieties
• Different lengths: 21 mm, 25 mm and 30 mm
• Hedström files, Flexofiles

Name
NiTi (Nickel titanium) rotary instruments
Function, features and directions for use
• Used to clean and shape the canals
• Used with endodontic handpiece and motor 
• NiTi is flexible and instruments follow the canal outline very well
• Several varieties of systems with different sequences of instruments are used
• Important to follow the manufacturer’s recommended speeds and instructions for use
Varieties
Different lengths: 21 mm and 25 mm

Name
Lentulo spiral filler/rotary paste filler
Function and features
• Small flexible instrument used to place materials into the canal
• Fits into the conventional handpiece
• Use with caution as it can be easily broken
• Different sizes available
Many of these finger instruments should be disposed of in the sharps’ container after one use – this is best practice, but would not be done routinely in private surgeries.

Name
Finger spreader
Function, features and precaution
• Used to condense gutta percha into the canal during obturation
• Finger instrument with a smooth, pointed, tapered working end
• Disposed of in the sharps’ container
Varieties
Can be of the hand instrument type (lateral condenser)

Name
Endodontic plugger
Function
Working end is flat to facilitate plugging or condensing the gutta percha after the excess
has been removed by melting off with a heated instrument
Varieties
• Different sizes of working ends are available
•Available as hand or finger instruments

 Name
Absorbent paper points
Functions
•To absorb any moisture in the canal (i.e. blood, pus and saliva)
•To carry medicaments into the canal
Varieties
Can be packaged in unidose (sterile) or bulk packaging (once package is open they are not sterile)

Name
Gutta percha points
Function and features
•Non-soluble, non-irritant points that are condensed into the pulp chamber during obturation
• Standardised type: follows same ISO classification as endodontic files
• Non-standardised: have a greater taper than the standard ISO type
Varieties
• Can be packaged in single dose or bulk packages
• Different sizes with different tapers available



 Name
 Endodontc ring, Endodontic block, Endodontic rulers
Functions
• An endodontic block is a sturdy block used to organise and hold endodontic finger and rotary instruments during procedures; allows easy and accurate measurement of the length of finger instruments (measuring device incorporated)
• Reduces the possibility of percutaneous injuries when handling endodontic finger and rotary instruments
• Special endodontic rulers are available for measuring the length of finger instruments
Varieties
Different varieties available

Name
Apex locator
Functions
• An electronic instrument used to determine the distance to the apical foramen
• The screen allows the operator to visualise the file movement during instrumenta-tion
Varieties
• Different manufacturers provide different varieties
•Available with a pulp tester incorporated in the machine

Name
Electric pulp tester
Function and directions for use
•Used to test the vitality of a tooth using electric stimulus
•Electric stimulus is increased in small increments until the patient can feel the stimulus
•Toothpaste or prophy paste is used to conduct the current from the pulp tester to the tooth
Varieties
•Available with an apex locator incorporated in the machine
• Different manufacturers supply different varieties of pulp testers
• Can use a cold substance to test the vitality of the pulp, i.e. ethyl chloride or Endo Cold Spray

Monday, August 8, 2011

A Note On Rubber Dam Isolation...With Lecture Note And Rubber Dam Placement Videos

Rubber dam
The method which gives the most complete control over moisture in the mouth is the rubber dam. The tooth or teeth to be treated, together with adjacent teeth, are placed through holes in a rubber sheet, leaving the crowns of the teeth on one side and the mouth with its moisture and infection on the other.

The advantages of the rubber dam are as follows:
• Complete isolation of the teeth from saliva, blood, or gingival fluid exudate is possible. This is important with all restorations but particularly so in ‘bonded’ restorations.
• The rubber dam aids isolation from bacteria in saliva and so is indicated when infection for the rest of the month must be excluded, for example in direct and indirect pulp capping and endodontic treatment.
• The rubber dam protects the patient from swallowing or inhaling instruments. Dentine pins, fractured burs, pieces of amalgam, wedges, crowns, inlays, endodontic instruments, flanges from saliva ejectors, and even hand-piece heads have all found their way into the trachea or oesophagus.
• The rubber dam protects the dentist from infection from the patient. Its use is indicated in all patients whose blood and saliva may potentially transmit disease to the dentist or their staff (e.g. carriers of hepatitis B).
• The rubber dam has the effect of psychologically, as well as physically, separating the dentist from the patient. Not only are water, air spray, dust, debris, and the high-velocity sucker on the dentist’s side of the rubber, but patients will frequently remark, with some surprise, that they feel safer with the rubber in position, or that they feel detached from what is going on, almost as if the dentist were not working on them. It is not unusual for a patient to fall asleep with a rubber dam in place.
• Once the rubber dam is in place, operative dentistry is quicker and more efficient. Wet mouths, writhing tongues, contracting lips, and garrulous patients dis-appear behind the rubber dam.
However, the technique has its disadvantages:
• The patient can no longer speak easily. Conversations thus become one-sided and cease.
• A few patients dislike the rubber dam intensely, feeling claustrophobic when it is in position.
• The rubber is held on posterior teeth with clamps, and a tooth which has been clamped may be sensitive for some hours after the clamp has been removed.
• The rubber dam takes time to apply and remove, although the more experienced the dentist is in its use, the less time is taken. Once the rubber is in position, however, operating conditions are improved and there-fore time is saved.

RUBBER DAM EQUIPMENT

1. Rubber dam.
It is supplied in ready-cut 15 cm (6 inches) square sheets. The rubber is resistant to tearing and it grips the teeth well and retracts gingival tissue. A dark colour (green, blue, or black) is preferred because it contrasts well with the teeth, and fragments torn off and left behind are easily seen and removed.
2. Rubber dam punch
The punch must give a clean cut otherwise there will be a weak point at the edge of the hole from which a tear may arise. Some punches have holes of varying diameters: the larger the hole, the easier it is to stretch over a tooth; the smaller the hole, the tighter the grip. It is useful to punch a hole in one corner of the rubber dam – near the edge – to check that the hole is being punched cleanly. A ragged hole in the centre of the sheet wastes a whole sheet. Assuming that you always punch it in the same position, this hole also helps to orientate the rubber dam when it is being stretched over the rubber dam frame.
3. Rubber dam stamp for marking the positions of the holes. This inked rubber stamp produces a series of dots on the rubber corresponding to the average positions of the teeth. When the dam is in position it should reach up to a point just below the patient’s nose, thus covering the mouth but not the nose. To achieve this when applying the rubber to the maxillary teeth or mandibular third molars, the position of the upper central incisors should be stamped about 2.5 cm (1 inch) from the top edge of the rubber sheet. For mandibular teeth the holes should be placed further up the sheet so that the rubber does not cover the nose.
4. Rubber dam clamps

These are metal clips which fit the neck of the tooth and hold the rubber dam in position. In addition, they may occasionally help to provide gingival retraction. The following clamps make a good basic set :
      • BW, JW molar clamps, wingless; used when the clamp is positioned on the tooth before the rubber.
      • K molar clamp, winged; the wings allow the clamp and rubber to be placed simultaneously.
      • GW premolar clamp.
      • EW clamp used on any small tooth.
      • AW molar clamp, wingless; used on partially erupted teeth only. The jaws of this clamp are retentive and point gingivally, thus aiding retention on a tooth whose maximum bulbosity is subgingival.
      • Cervical clamp, Ferrier pattern, for use on anterior teeth where retraction of rubber or gingivae is required to allow access to a cervical cavity.
5. Rubber dam clamp forceps.
    An instrument for placing, adjusting, and removing clamps.
6. Rubber dam lubricant
A water-based gel is supplied for this purpose but brushless shaving cream is  equally suitable. A little lubricant should be applied around the holes in the rubber before sliding it over the teeth.
7. Waxed dental floss or tape
This can be used to carry the rubber past a tight contact point.
8. Rubber dam holder or frame. This holds the free edges of the rubber and prevents them from falling into the mouth or back against the patient’s face. 

Rubber Dam - A Lecture Note

Rubber Dam Placement Videos








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