Effect of implant macro-design on primary stability: a prospective clinical study
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Lozano-Carrascal, Naroa; Salomó-Coll, Oscar; Gilabert-Cerdà, Marta; Farré Pagés, Núria; Gargallo Albiol, Jordi; Hernández-Alfaro, Federico
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Aquest document és un/a article, creat/da en: 2016
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Background: Implant restorations have become a high predictable treatment option. Several caracteristics such as
surgical technique and implant design can influence the treatment outcomes. The aim of the present study was to
evaluate the influence of implant macro-design on primary stability measured with resonance frequency analysis
(RFA) and insertion torque (IT).
Material and Mehods: A total of 47 implants divided in two groups: Test group (TI): 22 Tapered MIS® Seven implants;
Control group (CI): 25 cylindrical Astra® Osseospeed implants. All implants were inserted following the
manufacturers’ standard protocols. Implant primary stability was measured at the moment of implant placement
by registering insertion torque values (ITv) and ISQ values by means of Osstell™ Mentor (ISQv) (Integration
Diagnostic Ltd., Goteborg, Sweden).
Results: In the mandible, mean ISQv for tapered implants (TI) was 71.67±5.16 and for cylindrical implants (CI)
57.15±4.83 (p=0.01). Mean insertion torque was 46.67±6.85 Ncm for TI and 35.77±6.72 Ncm for CI (p=0.01). In
the maxilla, mean ISQ was 67.2±4.42 for tapered implants and 49.17±15.30 for cylindrical implants (p=0.01).
Mean insertion torque for TI was 41.5±6.26 Ncm and for CI 39.17±6.34 Ncm (p>0.05). For tapered implants, no
correlation could be found between implant diameter and primary stability. But for cylindrical implants there was a statistically significant correlation between implant diameter and primary stability: ITv (p=0.03); ISQv (p=0.04).
Conclusions: Within the limits of the present study, tapered shaped implants achieve higher primary stability measured
through ISQ and insertion torque values. Moreover, for cylindrical implants positive correlation has been established
between implant diameter and primary stability
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