Effect of crown seating methods on the remnant cement in the subgingival region of the cement- retained implant crown

Author:

Ji Fanghui1,Hwiseong Oh1,Lee Jeongyol2,Ryu Jae Jun3,Shim Ji Suk2

Affiliation:

1. Korea University Graduate School

2. Korea University Guro Hospital

3. Korea University Anam Hospital

Abstract

Abstract This study aimed to investigate the effects of crown seating speed, crown seating force, quantity of cement used, and type of implant cement on the amount of RCS after cementation. Cement-retained implant crowns were cemented to titanium abutments using the following methods: four types of implant cement (TBN: Temp Bond NE®️, NR: Nexus RMGI, ME: Maxcem Elite, and U200: RelyX U200), three quantities of cement (0.02 ml, 0.04 ml, and 0.06 ml), three crown seating speeds (5 mm/s, 10 mm/s, and 15 mm/s), and two crown seating forces (25 N, 50 N). The surface area and length of the RCS were measured using a 3D intraoral scanner. The total RCS weight was measured using an analytical balance. The RCS increased significantly as the seating speed increased, the seating force increased, and the quantity of cement increased (p < 0.05). The RCS values were the highest for TBN, followed by U200, NR, and ME (p < 0.05). The lower seating speed, smaller quantity of cement used, and smaller seating force applied in cement-retained implant restorations minimized the RCS in cement-retained prostheses. The type of cement is a factor that determines the aspects of the RCS.

Publisher

Research Square Platform LLC

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