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Article

Bone-Preserving Osteotomy Strategies for Narrow Ridges: Comparative In Vitro Analysis of Densifying, Low-Speed Shaping, and Conventional Protocols

by
Fatma Gülfeşan Çanakçi
1,*,
Merve Çakır
2,
Gül Merve Yalçın-Ülker
2 and
Gonca Duygu
3
1
Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Trakya University, Edirne 22030, Türkiye
2
Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Okan University, Istanbul 34959, Türkiye
3
Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Namik Kemal University, Tekirdag 59030, Türkiye
*
Author to whom correspondence should be addressed.
Appl. Sci. 2025, 15(21), 11669; https://doi.org/10.3390/app152111669
Submission received: 26 September 2025 / Revised: 25 October 2025 / Accepted: 30 October 2025 / Published: 31 October 2025
(This article belongs to the Special Issue State-of-the-Art Operative Dentistry)

Abstract

Adequate ridge width and thermal control are critical for predictable implant site preparation. This in vitro study compared conventional osteotomy (CO), osseodensification (OD), and OsseoShaper (OS) protocols in standardized polyurethane foam blocks simulating narrow D2 ridges. A total of 18 osteotomies (n = 6 per group) were prepared under protocol-specific irrigation. Ridge width was measured at 3, 6, and 9 mm apical to the crest before and after osteotomy using a digital caliper, and expansion (ΔW) was calculated. Intraoperative thermal changes (ΔT) were recorded in real time with an infrared thermal camera. OD achieved consistent expansion at all depths (p < 0.05), while OS produced significant widening at the 3 and 6 mm levels; CO yielded only a minor but significant gain at the 3 mm level. At the intergroup level, OS showed significantly greater crestal expansion than CO at 3 mm (p = 0.006). All protocols generated comparable thermal changes (mean ΔT 7.4–8.2 °C), remaining well below the critical 47 °C threshold. Within the limitations of this in vitro model, OD and OS enhanced ridge expansion compared with CO, particularly at the crestal level, where expansion is most critical. All protocols maintained thermally safe profiles, supporting their clinical applicability.
Keywords: osseodensification; OsseoShaper; conventional osteotomy; ridge expansion; thermal changes; narrow alveolar ridge; implant site preparation; bone-preserving osteotomy; infrared thermography; polyurethane bone model osseodensification; OsseoShaper; conventional osteotomy; ridge expansion; thermal changes; narrow alveolar ridge; implant site preparation; bone-preserving osteotomy; infrared thermography; polyurethane bone model

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MDPI and ACS Style

Çanakçi, F.G.; Çakır, M.; Yalçın-Ülker, G.M.; Duygu, G. Bone-Preserving Osteotomy Strategies for Narrow Ridges: Comparative In Vitro Analysis of Densifying, Low-Speed Shaping, and Conventional Protocols. Appl. Sci. 2025, 15, 11669. https://doi.org/10.3390/app152111669

AMA Style

Çanakçi FG, Çakır M, Yalçın-Ülker GM, Duygu G. Bone-Preserving Osteotomy Strategies for Narrow Ridges: Comparative In Vitro Analysis of Densifying, Low-Speed Shaping, and Conventional Protocols. Applied Sciences. 2025; 15(21):11669. https://doi.org/10.3390/app152111669

Chicago/Turabian Style

Çanakçi, Fatma Gülfeşan, Merve Çakır, Gül Merve Yalçın-Ülker, and Gonca Duygu. 2025. "Bone-Preserving Osteotomy Strategies for Narrow Ridges: Comparative In Vitro Analysis of Densifying, Low-Speed Shaping, and Conventional Protocols" Applied Sciences 15, no. 21: 11669. https://doi.org/10.3390/app152111669

APA Style

Çanakçi, F. G., Çakır, M., Yalçın-Ülker, G. M., & Duygu, G. (2025). Bone-Preserving Osteotomy Strategies for Narrow Ridges: Comparative In Vitro Analysis of Densifying, Low-Speed Shaping, and Conventional Protocols. Applied Sciences, 15(21), 11669. https://doi.org/10.3390/app152111669

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