| Literature DB >> 29554893 |
Mehmet Emre Yurttutan1, Ahmet Keskin2.
Abstract
BACKGROUND: Successful dental implant treatment is directly related to osseointegration. In achieving osseointegration, the surface property of the implant is of great importance. Sandblasting is the most commonly used basic method for modifying the surface. Many companies use different sand particles for surface roughening and claim their sand is the best. This leads clinicians to mix their minds in product selection. In this study, we tried to find the appropriate sand material by working objectively without praising any brand. We believe that the results of the study will help clinicians choose the right dental implant. In this study, machined-surfaced implants and implants sandblasted with Aluminum oxide (Al2O3), Titanium dioxide (TiO2) and Silicon dioxide (SiO2) were compared via biomechanical testing.Entities:
Keywords: Dental implant; Osseointegration; Removal torque test; Resonance frequency analysis; Sandblasting
Mesh:
Substances:
Year: 2018 PMID: 29554893 PMCID: PMC5859722 DOI: 10.1186/s12903-018-0509-3
Source DB: PubMed Journal: BMC Oral Health ISSN: 1472-6831 Impact factor: 2.757
Types of implants and numbers for each animal
| Implant groups sandblasted with | Number of implants used in right tibia | Number of implants used in left tibia | Total |
|---|---|---|---|
| Al2O3 | 2 | 2 | 4 |
| TiO2 | 2 | 2 | 4 |
| SiO2 | 2 | 2 | 4 |
| Control group | 2 | 2 | 4 |
| Total | 8 | 8 | 16 |
Fig. 1Image of prepared implant cavities
Fig. 2Measurement of stability with Osstell Mentor device
Statistical analysis of initial and last ISQ value in 1 month experimental animals
| 1 month experimental animals | Wilcoxon test | Kruskal Wallis test | |||||||
|---|---|---|---|---|---|---|---|---|---|
| n | Mean | Min. | Max. | Med. | Standard deviation | p | p | ||
| Al2O3 | Initial ISQ | 8 | 56.12 | 51 | 60 | 57 | 3.22 | 0.155 | 0.763 |
| 1-month ISQ | 8 | 58.62 | 51 | 68 | 59 | 5.39 | |||
| TiO2 | Initial ISQ | 8 | 55.75 | 48 | 61 | 57 | 4.49 | 0.664 | |
| 1-month ISQ | 8 | 54.37 | 45 | 69 | 55 | 7.44 | |||
| SiO2 | Initial ISQ | 8 | 51.62 | 39 | 59 | 54 | 6.45 | 0.102 | |
| 1-month ISQ | 8 | 53.87 | 39 | 61 | 55.5 | 6.79 | |||
| Control | Initial ISQ | 8 | 53.5 | 43 | 59 | 55 | 5.75 | 0.277 | |
| 1-month ISQ | 8 | 53.62 | 14 | 66 | 57.5 | 16.91 | |||
Statistical analysis of initial and 3-month ISQ value
| 3 months experimental animals | Wilcoxon test | Kruskal Wallis test | |||||||
|---|---|---|---|---|---|---|---|---|---|
| n | Mean | Min | Max | Med | Standard deviation | p | p | ||
| Al2O3 | Initial ISQ | 8 | 55.62 | 44 | 62 | 57 | 5.65 | 0.018 | 0.037 |
| 3-month ISQ | 8 | 62.75 | 56 | 74 | 61.5 | 6.43 | |||
| TiO2 | Initial ISQ | 8 | 58.5 | 55 | 60 | 59 | 1.77 | 0.61 | |
| 3-month ISQ | 8 | 57.87 | 49 | 71 | 57.5 | 7.18 | |||
| SiO2 | Initial ISQ | 8 | 58.12 | 55 | 65 | 56 | 3.44 | 0.131 | |
| 3-month ISQ | 8 | 59.62 | 53 | 63 | 61.5 | 3.37 | |||
| Control | Initial ISQ | 8 | 54.75 | 45 | 61 | 55 | 5.03 | 0.007 | |
| 3-month ISQ | 8 | 58.5 | 48 | 64 | 59.5 | 5.04 | |||
Statistical analysis of 1-month removal torque test data (Newton/cm)
| 1 month experimental animals | Kruskal Walls test | ||||||
|---|---|---|---|---|---|---|---|
| n | Mean | Min. | Max. | Med. | Standard deviation | p | |
| Al2O3 | 8 | 46.11 | 25.76 | 80.89 | 45.5 | 17.4 | 0.656 |
| TiO2 | 8 | 37.95 | 20.58 | 65.47 | 37.52 | 14.10 | |
| SiO2 | 8 | 40.27 | 21.26 | 81.56 | 33.92 | 20.93 | |
| Control | 8 | 42.75 | 20.93 | 77.51 | 40.5 | 17.03 | |
Statistical analysis of 3-month removal torque test data (Newton/cm)
| 3 month experimental animals | Kruskal Walls test | ||||||
|---|---|---|---|---|---|---|---|
| n | Mean | Min. | Max. | Med. | Standard deviation | p | |
| Al2O3 | 8 | 109.06 | 45.67 | 139.16 | 124.03 | 33.36 | 0.107 |
| TiO2 | 8 | 93.79 | 66.15 | 114.07 | 94.73 | 14.03 | |
| SiO2 | 8 | 83.19 | 48.15 | 104.51 | 89.6 | 21.45 | |
| Control | 8 | 82.06 | 59.4 | 124.53 | 76.67 | 21.79 | |
Statistical analysis of 1- and 3-month removal torque test data (Newton/cm)
| n | Mean | Min. | Max. | SD | Mann Whitney testi | ||
|---|---|---|---|---|---|---|---|
| Al2O3 | 1 month | 8 | 46.11 | 25.76 | 80.89 | 17.4 | 0.0027 |
| 3 month | 8 | 109.06 | 45.67 | 139.16 | 33.36 | ||
| TiO2 | 1 month | 8 | 37.95 | 20.58 | 65.47 | 14.10 | 0.0005 |
| 3 month | 8 | 93.79 | 66.15 | 114.07 | 14.03 | ||
| SiO2 | 1 month | 8 | 40.27 | 21.26 | 81.56 | 20.93 | 0.0027 |
| 3 month | 8 | 83.19 | 48.15 | 104.51 | 21.45 | ||
| Control | 1 month | 8 | 42.75 | 20.93 | 77.51 | 17.03 | 0.0023 |
| 3 month | 8 | 82.06 | 59.4 | 124.53 | 21.79 |
Statistical analysis of the correlation between the final ISQ and torque values (Newton/cm)
| Spearmen test | ||||||||
|---|---|---|---|---|---|---|---|---|
| n | Mean | Min. | Max. | SD | p | |||
| Al2O3 | 1 Month | ISQ | 8 | 58.62 | 51 | 68 | 5.39 | 0.933 |
| Torque | 8 | 46.11 | 25.76 | 80.89 | 17.4 | |||
| 3 Month | ISQ | 8 | 62.75 | 56 | 74 | 6.43 | 0.61 | |
| Torque | 8 | 109.06 | 45.67 | 139.16 | 33.36 | |||
| TiO2 | 1 Month | ISQ | 8 | 54.37 | 45 | 69 | 7.44 | 0.799 |
| Torque | 8 | 37.95 | 20.58 | 65.47 | 14.10 | |||
| 3 Month | ISQ | 8 | 57.87 | 49 | 71 | 7.18 | 0.629 | |
| Torque | 8 | 93.79 | 66.15 | 114.07 | 14.03 | |||
| SiO2 | 1 Month | ISQ | 8 | 53.87 | 39 | 61 | 6.79 | 0.456 |
| Torque | 8 | 40.27 | 21.26 | 81.56 | 20.93 | |||
| 3 Month | ISQ | 8 | 59.62 | 53 | 63 | 3.37 | 0.346 | |
| Torque | 8 | 83.19 | 48.15 | 104.51 | 21.45 | |||
| Control | 1 Month | ISQ | 8 | 53.62 | 14 | 66 | 16.91 | 0.713 |
| Torque | 8 | 42.75 | 20.93 | 77.51 | 17.03 | |||
| 3 month | ISQ | 8 | 58.5 | 48 | 64 | 5.04 | 0.385 | |
| Torque | 8 | 82.06 | 59.4 | 124.53 | 21.79 |