Operative dentistry aje qualtrough, jd satterthwaite la morrow, pa brunton
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Principles of Operative Dentistry.compressed
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- Filling techniques
Gutta-percha
Gutta-percha has been used for more than 100 years. It is a form of rubber mixed with zinc oxide and other agents. Although not ideal, 76 Chapter 3 POOC03 02/18/2005 04:33PM Page 76 Principles of endodontics 77 its advantages are that it is inert, is dimensionally stable, is non- allergenic, antibacterial, non-staining, radiopaque, compactable, may be softened by heat and organic solvents and may be removed from the canal. Filling techniques There are various techniques. These may be divided into: • Solid gutta-percha techniques • Softened gutta-percha techniques Gutta-percha may be softened using either heat or solvents Solid core techniques Solid core techniques may utilise a single cone of gutta-percha or may employ lateral condensation of multiple cones of gutta-percha. For these methods, a gutta-percha cone is selected to match the size of the apical preparation, i.e. a master cone of the same size as the master apical file is chosen. Although a master cone is selected to match the size of the master apical file, the apical preparation may be larger than the nominal size due to the filing action of the file. Therefore, the selected master cone may, in fact, be a loose fit. In order to achieve a good friction fit (termed ‘tug-back’), the tapered master cone is shortened slightly so that it has a slightly larger diameter at its end. Several trial fits may be necessary to obtain the required tug-back at the correct length. In the single cone method, the gutta-percha cone is selected to match the canal preparation dimension. Although this is a quick technique, the main disadvantage is that only canals of circular dimension may be adequately filled and this rarely represents the true clinical situation. Should this method be used in non-circular canals, there will not be a three-dimensional fill. In the lateral condensation technique (the favoured method for solid core techniques), a master gutta-percha cone, corresponding to the apical preparation dimension, is placed in position, alongside which are condensed additional accessory gutta-percha points. The advantage is that the canal may be filled in all dimensions, the final material being a mass of gutta-percha points joined by a thin layer of sealant material. This is, however, a technique-sensitive method, it can be time consuming and is not appropriate in cases of internal resorption, for example. It must also be remembered that filling of lateral canals by sealant cannot be guaranteed. POOC03 02/18/2005 04:33PM Page 77 A gutta-percha point of the same size as the master apical file should wedge slightly at 0.5–1.0 mm short of the full working length and a ‘dry run’ root filling radiograph is useful to confirm its position. Measurement of a spreader (a tapered, blank, pointed instrument used to push the gutta-percha to one side) to 2 mm short of the work- ing length ensures that apically directed pressure will not result in overextension of the gutta-percha. The walls of the canal to 2 mm short of the apex should be coated with an even, thin film of sealant and this also facilitates placement of the master gutta-percha point by acting as a lubricant. Controlled placement of the coated master cone allows extrusion of excess sealer in a coronal direction before it is seated with firm pressure and a twisting action. Insertion of either a hand or finger spreader to the depth indicated by the stop, alongside the master cone, pushing it to one side and oscillating and withdrawing the spreader results in creation of space for the placement of additional wedging or lateral cones. When excess filling material at the base of the pulp chamber has been seared off using a hot ‘plastic’ instrument to the level of the canal orifice, a check root filling radiograph should be carefully assessed to confirm that the root has been adequately obturated. Download 0.95 Mb. Do'stlaringiz bilan baham: |
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