Clinical examination and diagnosis
A comprehensive diagnostic assessment was conducted. This included intra-oral and extra-oral photographic documentation, clinical examination of the hard and soft tissue, periodontal evaluation, occlusal analysis and assessment of the existing restorations.
The existing composite veneers exhibited marginal discoloration, surface roughness, chipping and inadequate anatomical form. No secondary caries or pulpal pathology was detected. The periodontal tissue was healthy, probing depths were normal and there were no signs of inflammation.
Occlusal analysis confirmed stable intercuspation and the absence of premature contacts. Temporomandibular joint function was considered to be within normal limits, and the patient reported no history of pain or dysfunction. Based on these findings, the case was considered suitable for conservative veneer replacement using a digital workflow.
Treatment planning
After the diagnostic phase, a detailed treatment plan was formulated. The main objectives in replacing the old composite veneers were to preserve as much enamel as possible, improve aesthetics and surface texture, maintain functional occlusion and complete the treatment in a single visit.
Several restorative options were discussed with the patient, including conventional laboratory-fabricated ceramic veneers and chairside digital restorations. After reviewing the advantages, limitations, treatment duration and costs, the patient opted for a chairside digital approach using 3D printing. Informed consent was obtained, and expectations regarding shade, shape and the final outcome were discussed in detail.
Tooth preparation
The existing composite veneers were carefully removed using fine-grit diamond burs under magnification. Minimal preparation was performed in accordance with enamel-preserving principles. The preparation design included light facial reduction of 0.3–0.5 mm, rounded line angles and light chamfer finishing lines. The preparation was limited primarily to the previously restored areas. The aim was to maximise the enamel bonding surface and thereby support long-term adhesion and clinical longevity.
Digital impression and smile design
After tooth preparation, the teeth were cleaned and isolated. A digital impression was acquired using an intra-oral scanner, producing high-resolution digital models and eliminating the need for conventional impression materials. The digital files were transferred to smile design software, where planning was performed. Tooth proportions, incisal edge position, smile line, midline alignment, buccal corridor, gingival symmetry and facial harmony were evaluated and optimised.
A digital smile design and virtual restorative design were generated to simulate the proposed restorations (Figs. 2a & b). The virtual preview was presented to the patient to visualise the anticipated outcome. Minor modifications were incorporated based on the patient’s feedback, particularly regarding tooth length and contour. This collaborative approach increased patient involvement and improved treatment predictability.
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