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Titlebook: Biodentine™; Properties and Clini Imad About Book 2022 Springer Nature Switzerland AG 2022 Tricalcium silicates.Dentine substitute.Vital pu

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BiodentineTM Microstructure and Composition,in the formation of calcium hydroxide which is necessary for a number of clinical uses. The first clinically available hydraulic calcium silicate cement—mineral trioxide aggregate—exhibited a number of shortcomings. Further materials have been developed aimed at addressing the shortcomings of the or
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BiodentineTM Clinical Applications in Vital Pulp Therapy in Permanent Teeth,hat has been affected by a deep carious lesion, trauma or iatrogenic damage, using indirect and direct pulp capping/protection. It describes the potential advantages and disadvantages of different bioactive/bio-interactive materials and their effects on the dentine-pulp complex tissues. The clinical
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BiodentineTM Applications in Traumatology and Fractures,0). The same is true for the treatment of deep carious lesions in permanent (im)mature molars and permanent (im)mature incisors after traumatic injury where full endodontics was the therapy of choice. In all cases, one should decide for repair or regeneration of dental pulp (Simon et al., J Endod 40
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BiodentineTM Applications in Irreversible Pulpitis Management in Children and Adults,nal therapy being the conventional standard of care. Previously reported negative outcomes for VPT in these teeth were based on data from studies that have used calcium hydroxide (CH) in direct pulp capping and partial and full pulpotomy. The introduction of calcium silicate-based materials with bio
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