| Literature DB >> 30370030 |
Kyu-Hyung Choi1, KeunBaDa Son2,3, Du-Hyeong Lee1, Kyu-Bok Lee1,2,3.
Abstract
PURPOSE: Cement-retained implant prostheses can lack proper retrievability during repair, and residual cement can cause peri-implantitis. The purpose of this in vitro study was to evaluate the influence of abutment height and convergence angle on the retrievability of cement-retained implant prostheses with lingual slots, known as retrievable cement-type slots (RCS).Entities:
Keywords: Abutment; Cement-retained implant prostheses; Computer-aided design and computer-aided manufacturing (CAD/CAM); Lingual slot; Retrievability
Year: 2018 PMID: 30370030 PMCID: PMC6202427 DOI: 10.4047/jap.2018.10.5.381
Source DB: PubMed Journal: J Adv Prosthodont ISSN: 2005-7806 Impact factor: 1.904
Fig. 1Specimen diagram used in this experiment. (A) Lingual view; (B) Distal view; (C) Occlusal view; Ø: diameter; R: arc diameter; a: abutment height (4 mm and 6 mm); b: convergence angle (8°, 10°, and 12°).
Fig. 2Three-dimensional design of abutment (A) and fabricated titanium abutment (B).
Fig. 3Specimens before (A) and after (B) the fabrication of the retrievable cement-type slot (RCS).
Fig. 4The custom-made device used for measuring removal torque in this experiment.
Removal torque values (N·cm) according to abutment height and convergence angle
| Abutment height (mm) | Convergence angle (°) | |||
|---|---|---|---|---|
| 8 | 10 | 12 | ||
| 4 | 43.2 ± 1.2a,* | 38.1 ± 1.5b,* | 32.7 ± 1.3c,* | .002 |
| 6 | 47.9 ± 2.6A,† | 42.1 ± 0.9B,† | 38.9 ± 1.4C,† | .002 |
| .016 | .008 | .008 | ||
Different superscripted characters within each row (a, b, c) and (A, B, C) and each column (*, †) indicate significant differences by Mann-Whitney U-test (α = .05).
Fig. 5Graphs illustrating the variables obtained through multiple regression analysis. (A) Graph A demonstrates a negative correlation between convergence angle and removal torque (R2 = 0.9719), and (B) Graph B demonstrates a positive correlation between abutment height and removal torque (R2 = 0.9997).